高品质棉纤维品质形成特点及关键栽培技术调优研究
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摘要
本文在分析棉纤维品质的现状及主要存在问题、纤维品质的可调性、产量与纤维品质、关键栽培技术与纤维品质、区域温光因子和纤维品质、棉纤维品质形成、内源激素诱导及源库关系和纤维品质的基础上,通过2003-2004年试验,观察了高品质棉陆地棉渝棉1号和科棉1号的纤维发育及品质形成特点,研究了关键栽培技术如密度、氮磷钾配比和缩节安化控等对高品质棉科棉1号纤维品质的调节效应,分析了氮磷钾配比对伏前桃、伏桃、早秋桃和晚秋桃纤维品质形成的影响,探讨了氮磷钾配比影响纤维品质形成的生理机制,比较了江苏不同生态区温、光因子对纤维品质的影响效应,提出了高品质棉纤维品质调优的关键栽培技术。
     1.以一般品质棉花品种苏棉16为对照,研究了高品质棉渝棉1号、高品质Bt棉科棉1号的纤维品质形成特点及内源激素的诱导。结果表明,与苏棉16相比,科棉1号和渝棉1号纤维快速伸长期略长,快速伸长期内的日增长速率较高;比强度快速增长期较短,但在快速增长期内的日增长速率较高;科棉1号较早进入单位长度纤维重量快速增重期,在快速增重前期的增重速率较高,在快速增重后期的增重速率较低,渝棉1号在整个快速增重期内的增重速率较高;纤维素含量随着花后
Based on the systematic analyses of the current situations and the main problems of cotton fiber quality in China, the significance of developing high-quality cotton production, the feasibility of optimizing cotton fiber quality, the effects of main cultivating measures and meteorological factors on cotton fiber quality, the differentiation and development of cotton fiber as well as the induction of plant hormones on fiber development, the experiments carried out in crop year 2003 and 2004 mainly observed the characteristics of fiber quality development in high quality upland cotton (G. hirsutum L) Yumian 1 and Kemian 1, investigated the effects of different cultivating measures (planting density, the ratio of N:P2O5:K2O, and mepiquat chemical regulation) on cotton fiber quality, studied the effects of N:P2O5:K2O on fiber quality development, discussed the relationship between physiological characteristics in subtending leaves, boll walls as well as fiber and cotton fiber development, analyzed the effects of heat and light factors in different latitudes in Jiangsu province on cotton fiber quality. The main results were as follows.
     1. With Sumian 16 (conventional cotton, average fiber quality) as the control, the characteristics of fiber quality development and endogenous hormones in high quality cotton (G. hirsutum L.) Kemian 1 (Bt. transgenic cotton, high fiber quality) and Yumian 1 (conventional cotton, high fiber quality) were studied. Compared with Sumian 16, rapid
引文
1. 1999 年中华人民共和国农业部公告,1999 年棉花主栽品种纤维品质测试结果
    2. 2000 年中华人民共和国农业部公告,2000 年棉花主栽品种纤维品质测试结果
    3. 2001 年中华人民共和国农业部公告,2001 年棉花主栽品种纤维品质测试结果
    4. 2002 年中华人民共和国农业部公告,2002 年棉花主栽品种纤维品质测试结果
    5. 2003 年中华人民共和国农业部公告,2003 年棉花主栽品种纤维品质测试结果
    6. 2004 年中华人民共和国农业部公告,2004 年棉花主栽品种纤维品质测试结果
    7. 柏长青,徐楚年,贾君镇. 棉胚珠培养的研究[J]. 北京农业大学学报,1992(增刊):122-128.
    8. 曹一平,陆景陵. 高等植物的矿质营养[M]. 北京农业大学出版社,1991 年
    9. 陈德华,夏金华,戴敬,吴云康. 高品质棉花新品种科棉 1 号的生育特性及配套栽培技术[J]. 江苏农业科学,2003,3:13-14
    10. 陈庆生,王国平,丁同华,何永垠,顾桂华. 高品质棉科棉 1 号的生育特性及栽培技术[J]. 作物杂志,2003,6:36
    11. 陈宇晖. 钾与作物品质[J]. 荆州师专学报 (自然科学版 ),1998,21(5):87-91
    12. 戴敬,徐俊兵,夏莉莉. 科棉 1 号的高产优质特性及栽培技术. 作物研究,2003,17(3):147
    13. 邓天宏,朱自玺. 土壤水分对棉花蕾铃脱落和纤维品质的影响[J]. 中国农业气象,1998,19(3):8-13
    14. 刁操铨. 作物栽培学各论(南方本)[M]. 北京:中国农业出版社,1994
    15. 董合忠,申贵芳. 陆地棉与海岛棉纤维伸长中过氧化酶活性的比较[J].植物生理学通讯, 1997,33(3):188-190.
    16. 范术丽,许玉璋,张朝军. 氮磷钾对棉花伏桃发育的影响[J].1999,11(1):24-30
    17. 郭香墨,刘正德,罗云佳. 我国面向 21 世纪棉花纤维品质改良对策 [J] 棉花学报 , 1999, 11( 6) :321-325
    18. 过兴先,曾伟. 新疆棉区气温对棉纤维发育的影响[J]. 新疆农业科学,1991,6:253-256
    19. 海江波,王方成,范术丽,申让平,许玉璋. 氮磷钾对棉铃干物质积累及纤维品质的影响[J]. 西北农业学报,1998,7(4):49-52
    20. 海江波,许玉璋,申让平. 氮磷钾配合对棉铃经济性状空间分布的影响[J]. 西北农业大学学报,1999,27(6):23-27
    21. 韩慧君. 气象因素对棉花产量和纤维品质的影响[J]. 中国农业科学,1991,24(5):23-29
    22. 何旭平,冷苏凤,季春梅,承泓良. 试论江苏省高品质棉的产业化开发[J]. 中国棉花,2001,28(8):6-8
    23. 何旭平,冷苏凤,承泓良. 高品质棉花品种——渝棉 1 号[J]. 江苏农业学报 :203
    24. 胡国祥,贺玉贵,黄健,胡钰. 棉花纤维内在品质构成分析,江西棉花,2000,22(5):28-30
    25. 胡尚钦,杨晓,唐时嘉,罗有芳,张建辉. 紫色土壤施氮对棉花产量品质的影响[J]. 棉花学报,2001,13(1):36-41
    26. 蒋光华. 低温和棉株生理年龄对棉纤维加厚发育及纤维比强度的影响[J]. 南京农业大学硕士论文,2005 年
    27. 李俊义. 棉花平衡施肥与营养诊断[M]. 中国农业科技出版社,1992 年
    28. 李迎春,杨伯祥,王小平. 氮磷钾对低酚棉产量和纤维品质的影响[J]. 中国棉花,1997,24(5):11-12
    29. 刘建江,王永芳,管信山,顾海伟. 抗虫杂交棉科棉 1 号高产栽培技术途径研究[J]. 江西棉花,2002,24(1):25-29
    30. 刘康,张天真,潘家驹. 棉纤维初始发育过程中过氧化物酶和吲哚乙酸氧化酶的活性[J]. 植物生理学通讯,1998,34(3):175-178.
    31. 刘武定,皮美美,吴礼树. 棉花硼钾营养相互关系的研究[J]. 土壤学报, 1987, 24( 1) :43-45
    32. 马建华,田新珍,文如镜,娄春恒,谢迪佳. 不同生育期棉纤维的红外吸收特征及结晶规律研究[J]. 中国棉花,1991,5:13-15
    33. 马淑萍,蔡派,熊宗伟,项时康. 中国棉花品质现状及其国际地位(续)[J]. 中国棉花,2002,20(11):24-28
    34. 马淑萍,蔡派,熊宗伟,项时康. 中国棉花品质现状及其国际地位[J]. 中国棉花,2002,20(10):12-19
    35. 全国棉花质量检验人员执业资格考试专家委员会. 棉花质量检验[M]. 中国计量出版社,2001 年.
    36. 束林华,冷苏凤,季春梅. 试论江苏省高品质棉的发展前景[J]. 江苏农业科学,2002(1):20-22
    37. 唐淑荣,杨付新,周关印,余楠,熊宗伟,褚平,侯爱玲. 黄河流域棉区棉纤维品质区域分布特征[J]. 中国棉花,1997,24(6):11-12
    38. 王国平,何永根,龙庆海,谢永发,鲁永华. 科棉 1 号特点及高产栽培配套技术[J]. 农业科技通讯,2005,5:19
    39. 王水平,沈曾佑,张志良. 棉纤维伸长生长与过氧化物酶和 IAA 氧化酶的关系[J].植物生理学报, 1985,11(4):409-417.
    40. 王小龙. 影响棉纤维强度因素分析及解决途径[J]. 河南职业技术师范学报, 1999,27(2):9-11.
    41. 王秀珍,肖汉如,来源,马建华. 棉纤维品质形成与气象条件的研究[J]. 中国农业气象,1994,15(2):8-11
    42. 武耀廷, 张恒木, 刘进元. 棉纤维细胞发育过程中纤维素的生物合成[J]. 棉花学报,2003,15(3):174-179
    43. 夏敬源. 实行棉花品质区划种植势在必行[J]. 中国棉花,2001,28(5):31-36
    44. 项时康,余楠,胡育昌,唐淑荣,熊宗伟,杨伟华. 论我国棉花质量现状[J]. 棉花学报,1999,11(1) :1- 10
    45. 肖松华,狄佳春,刘剑光,许乃银,陈旭升. 我国棉花品种纤维品质的现状及发展对策[J]. 江西棉花,2002,24(6):7-13
    46. 谢德意. 我国棉花品质的现状和对策[J]. 河南农业科学,2000,6:15-17
    47. 邢朝柱,王海林,靖深蓉,袁有禄,刘少林. 缩节安对杂交棉生长及其产量品质影响[J]. 中国棉花,1996,1:23-24
    48. 辛承松,姬书皋,徐惠纯. 棉花苗床喷施缩节安对生长发育及产量、品质的影响[J]. 山东农业科学,2000,3:28
    49. 徐楚年,寿元,林庆文,贾君镇. 棉花纤维发育研究[J]. 中国棉花学会第四次代表大会暨第九次学术讨论会论文,1992
    50. 徐楚年.温度对棉纤维发育效应的研究.中国棉花学会第十次学术研讨会论文集,1992
    51. 徐立华. 从江苏省棉花生产的发展谈高产优质棉花综合栽培技术研究思路[J]. 江苏农业科学,2003,2:19-21
    52. 徐立华,李国锋,何循宏,杨德银. 高品质棉“科棉 1 号”的源库特征[J]. 中国棉花,高品质棉“科棉 1 号”的源库特征,2003,30(11):14-16
    53. 杨可胜,易成新,朱延成,杨金龙. 棉花应用 DPC 化调效果及施用方法[J]. 安徽农业科学,1995,23(2):142-143
    54. 杨立江. 棉花钾肥施用技术初探[J]. 新疆农垦科技,1997,31:88-91
    55. 杨伟华,项时康,唐淑荣,熊宗伟,胡育昌. 20 年来我国自育棉花品种纤维品质分析[J]. 棉花学报,2001,13(6):337-384
    56. 杨文钰,屠乃美主编. 作物栽培学各论[M]. 北京:中国农业出版社,2003 年
    57. 杨佑明,贾君镇,徐楚年,李海燕. 郭玉海. 棉花纤维细胞起始及温度、植物生长物质对其影响[J]. 中国农业大学学报,1999,4(3):15-22.
    58. Yang Youming, Xu Chunian, Jia Junzhen. A system of ovule subculture for cotton fiber development [J]. 作物学报,2001, 27(6): 694-703 (In English with Chinese abstract)
    59. 姚穆. 纺织材料学[M]. 北京:纺织工业出版杜,1988.
    60. 余隆新,唐仕芳,王少华. 湖北省棉纤维品质生态区划及研究[J]. 棉花学报,1993,5 (2):15-20
    61. 喻树迅. 棉花品种改良[J]. 中国种业,2002,11:1-3
    62. 张福锁. 钾素营养与植物抗逆性. 环境胁迫与植物营养[M]. 北京:北京农业大学出版社,1993:148- 179
    63. 张天真,孙敬.陆地棉无絮棉突变体纤维初始发育的体外诱导[J]. 棉花学报,1992,4(2):84.
    64. 赵振勇,田长彦,马英杰. 高密度对陆地棉产量及品质的影响[J]. 干旱区研究,2003,20(4):292-295
    65. 中国农业科学院棉花研究所. 中国棉花栽培学[M]. 上海科学技术出版社,1983 年
    66. 中华人民共和国国家标准. 棉花细绒棉 GB1103-1999
    67. 周关印,杨付新,付小琼,王秀玲. 长江流域气候差异对棉花产量和纤维品质的影响[J].中国棉花,1996,23(10):15-18
    68. 周治国,孟亚利,施培等,棉麦两熟棉纤维强度与铃期气象因子关系研究[J]. 棉花学报,1999,11(3):134-140.
    69. 周治国,孟亚利,施培等. 麦棉两熟棉铃铃重与铃期气象因子关系研究[J]. 棉花学报,2000,12(3):122-126.
    70. 朱明华. 科棉 1 号的主要特性及其栽培技术[J]. 江西棉花,2002,24(6):24-25
    71. 朱振亚,赵翔,王承华,陈向阳,张晓娉,梅燕. 棉花施钾效应研究[J]. 新疆农业科学,2000,1:24-26
    72. 竺可桢. 论我国气候的几个特点及其与粮食作物的关系[J]. 科学通报,1964,(3):189-199
    73. Aguillard W, Boquet D J, and Schilling P E. Effects of planting dates and cultivars on cotton yield, lint percentage, and fiber quality. Bull. 727. 1980 Louisiana State Univ. Agric. Exp. Stn., Baton Rouge.
    74. Baker S H. Response of cotton to row patterns and plant population. Agron. J, 1976, 68: 85-88
    75. Bauer P J, Busscher W J. Winter cover and tillage influences on coast cotton production. J. Prod. Agric. 1996, 9:50-54.
    76. Bauer P J, Frederick J R, Busscher W J, Bradow J M. Effect of tillage and surface residues on cotton fiber properties. Conservation tillage systems for cotton, 1995: 14–17.
    77. Behery H M. Short-fiber content and uniformity index in cotton. International Cotton Advisory Committee review article on cotton production research, 1993: 40
    78. Benedict C R. In corporation of 14 C-Photosynthate into developing cotton bolls. Crop Science. 1973, 3: 88–91.
    79. Boman, R K, Westerman R L. Nitrogen and mepiquat chloride effects on the production of nonrank, irrigated, short-season cotton. J. Prod. Agric. 1994, 7: 70-75.
    80. Bradow J M, Bauer P J, Hinojosa O, Sassenrath-Cole G F. Quantitation of cotton fibre-quality variations arising from boll and plant growth environments. Eur. J. Agron. 1997, 6:191–204.
    81. Bradow J M, Bauer P J, Sassenrath-Cole G F, Johnson R M. Modulations of fiber properties by growth environment that persist as variation of fiber and yarn quality. Proc. Beltwide Cotton Conf., 1997:1351–1360.
    82. Bradow J M, Gayle H. Davidonis. Quantitation of Fiber Quality and the Cotton Production Processing Interface: A Physiologist's Perspective. The Journal of Cotton Science, 2000 (4): 34-64
    83. Bradow J M, Hinojosa O, Wartelle L H, Davidonis G H, Sassenrath-Cole G F, and Bauer P J. Applications of AFIS fineness and maturity module and X-ray fluorescence spectroscopy infiber maturity evaluation. Text. Res. J. 1996: 66:545–554.
    84. Bradow J M, Johnson R M, Bauer P J, Sadler E J. Site-specific management of cotton fiber quality. Precision agriculture Cotton Counc., 1999: 677–686.
    85. Bradow J M, Johnson R M, Bauer P J, Sadler E J. Zoned management of cotton fiber yield and quality. In Precision Agriculture Proceedings of the 5th International Conference, 2000, 13.
    86. Bradow J M, Wartelle L H, Bauer P J, and Sassenrath-Cole G F. Small-sample cotton fiber quality quantitation. J. Cot. Sci. 1997, 1:48–58.
    87. Bradow, J M, and Bauer P J. Fiber quality variation related to cotton planting date and temperature. Proc. Beltwide Cotton Conf., 1997: 1491–1495
    88. Bradow, J M, G H Davidonis, Hinojosa O, Wartelle L H, Pratt K J, Pusateri K, Bauer P J, Fisher B, Sassenrath-Cole G F, Dastoor P H, Landivar J A, Locke D, Moseley D. Environmentally induced variations in cotton fiber maturity and related yarn and dyed knit defects. Proc. Beltwide Cotton Conf., 1996: 1279–1284.
    89. Bradow, J M, Sassenrath-Cole G F, Hinojosa O, and Wartelle L H. Cotton fiber physical and physiological maturity variation in response to genotype and environment. Proc. Beltwide Cotton Conf., 1996: 1251–1254.
    90. Bridge R R, Meredith W R, Chism J F. Influence of planting method and plant population on cotton (Gossypium hirsutum L.) .Agron. J.,65:104-109
    91. Buxon D R, Briggs R E, Patterson L L, Watkins S D. Canopy characteristics of narrow-row cotton as affected by plant density. Agron. J., 1977, 69: 929-933
    92. Cassman, K G, Kerby T A, Roberts B A, Bryant D C, Higashi S L. Potassium nutrition effects on lint yield and fiber quality of Acala cotton. Crop Sci. 1990, 30: 672-677
    93. Chanda S V, Singh Y D. Changes peroxidase and IAA oxidase activities during wheat grain development. Plant Physiol biochem,1997, 35(3):245–250.
    94. Culp T W and Harrel D C. Influence of lint percentage, boll size, and seed size on lint yield of upland cotton with high fiber strength. Crop Sci. 1975, 15: 741-746
    95. Culp TW, Harrel D C, Kerr T. Some genetic implication in the transfer of high fiber strength to upland cotton. Crop Sci. 1979, 19: 481-484
    96. Dasani S H, Thaker V S. Role of abscisic acid in cotton fiber development. Russian Journal of Plant Physiology, 2006, 53(1): 68-74
    97. Davidonis G H, Johnson A, Landivar J, Hinojosa O. Influence of low-weight seeds and motes on the fiber properties of other cotton seeds. Field Crops Res. 1996, 48:141-153.
    98. Davidonis G H, Johnson A. Effects of flowering date, irrigation and mepiquat chloride on cotton fiber properties. Field Crops Res. 1994, 46: 141-153
    99. Davidonis, G H, Hinojosa O. Influence of seed location on cotton fiber development in planta and in vitro. Plant Sci. 1994, 203:107-113
    100. Delanghe E A. Lint development. In JRMauney and J M Stewart Cotton Physiology. Cotton Foundation, Memphis,TN, 1986: 325-349.
    101. Delmer D P, Amor Y. Cellulose synthesis. Plant cell, 1995, 7:987-1000
    102. Eaton F M, Ergle D R.. Effects of shade and partial defoliation on carbohydrate levels and the growth, fruiting, and fiber properties of cotton plants. Plant Physiol. 1954, 29: 39-49.
    103. Ebelhar M W, Meredith W R Jr., and Welch R A. Nitrogen and Pix management on yield and quality of cotton in pooh the Mississippi Delta. Proc. Beltwide Cotton Conf., 1992: 1180-1185.
    104. Ebelhar M W, Meredith W R Jr., Welch R A. Interaction of nitrogen rates and mepiquat chloride effects on yield and quality. Proc. Beltwide Cotton Conf., 1994: 1577-1580.
    105. Ferguson D L, Turley R B. Comparison of protein profiles during cotton Gossypium hirsutuml fiber cell development with partial sequences of two proteins. Agric Food Chem, 1996, 44: 4022-4027
    106. Galadima A, Husman S H, Silvertooth J C. Plant population effect on yield and fiber quality of three upland cotton varieties at Maricopa Agricultural Center, Arizona Cotton Report, The University of Arizona College of Agriculture and Life, 2003
    107. Gipson J R, and Joham H E. Influence of night temperature on growth and development of cotton Gossypium hirsutum L.) III. Fiber elongation. Crop Sci. 1969, 9:127-129.
    108. Gokani S J,Kumar R,THAKER V S. Potential role of abscisic acid in cotton fiber and ovule development [J]. Plant Growth Regul. 1998,17:1-5.
    109. Gormus O, Yucel C. Different planting date and potassium fertility effects on cotton yield and fiber properties in the Cukurova region, Turkey .Field Crop Res 2002, 78 (2-3): 141-149
    110. Green C C, Culp T W. Simultaneous improvement of yield, fiber quality, and yarn strength in upland cotton. Crop Sci. 1990, 30: 66-69
    111. Green C C, and Culp T W. Simultaneous improvements of yield, fiber quality, and yarn strength in upland cotton. Crop Sci., 1990 (30): 66-69.
    112. Grimes D W, Yamada H, Dickens W L. Functions of cotton (Gossypium hirsutum L.) production from irrigation and nitrogen fertilization variables. I. Yield and evapo-transpiration. Agron. J. 1969, 61: 769-773
    113. Grimes D W, Yamada H. Relation of cotton growth and yield to minimum leaf water potential. Crop Sci. 1982, 22: 134-139.
    114. Haigler C H, Taylor J G, Martin L K. Temperature dependence of fiber cellulosebiosynthesis: impact on fiber maturity and strength. Proc. biochemistry of cotton workshop, 1994: 95-100.
    115. Hanson R G, Ewing E C. Effect of environmental factors on fiber properties and yield of Deltapine cottons. Agron. J. 1956, 48: 546-581.
    116. Harrel D C, Culp T W. Effects of yield components on lint yield of upland cotton with high fiber strength . Crop Sci., 1976,1 6: 205-208
    117. Hawkins B S, Peacock H A. Response of Atlas cotton to variations in plant per hill and within-row spacings. Agron. J., 1973, 63: 47-51
    118. Hearn A B. Response of cotton to nitrogen and water in a tropical environment. III. Fibre quality. J. Agric. Sci. (Camb.) 1976, 84: 257-269.
    119. Hearn A B. The principles of cotton water relations and their application in management. In G.A. Constable and N.W. Forrester (ed.) Challenging the Future. Proc. World Cotton Conf., Brisbane, Australia. CSIRO, Australia, 1994: 66-92.
    120. Heitholt J J. Floral bud removal from specific fruiting positions in cotton: yield and fiber quality. Crop Sci. 1997, 37: 826-832.
    121. Husman S H, McCloskey W B, Teegerstrom T, Clay P A. Agronimic and economic evaluation of ultra narrow row cotton production in Arizona,1999: 245-251
    122. Johnson R M, Bradow J M, Bauer P J, Sadler E J. Spatial variability of cotton fiber yield and quality in relation to soil variability. Proc., 4th Intl. Conf. on Precision Agric, 1999: 487-497.
    123. Johnson R M, Sassenrath-Cole G F, Bradow J M. Prediction of cotton fiber maturity from environmental parameters. Proc. Beltwide Cotton Conf., 1997: 1454-1455.
    124. Jones M A, Wells R, Guthrie D S. Cotton response to seasonal patterns of flower removal: I. Yield and fiber quality. Crop Sci. 1996, 36: 633-638.
    125. Jones M A, Wells R. Field yield and quality of cotton grown at two divergent population densities. Crop Sci. 1997, 37: 1190-1195.
    126. Joshi P A, Stewart J M, Graham E T. Localization of β-glycerophosphatase activity in cotton fiber during differentiation. Protoplasma, 1985, 125:75-85.
    127. Kasperbauer M J. Cotton plant size and fiber development responses to FR/R ration reflected from the soil surface. Physiol. Plant. 1994, 91:317-321.
    128. Kel, Ley J C, Carr P H. Elongation of the cotton fiber. In:W. Loomis ed. Growth and differentiation in plants,1953: 55-68.
    129. Lee J A. Cotton as a world crop. In R.J. Kohel and C.F. Lewis (ed.) Cotton. ASA, Madison, WI. 1984: 1-25.
    130. Loomis R S, Gerakis P A. Productivity of Agricultural Ecosystems. IBP3. Cam. Univ. Press,1975, 145~172
    131. Loomis R S, Williams W A. Maximum Crop Productivity: an Estimate. Crop Sci. 1963, (3): 67~72
    132. Marani A., Amirav A. Effects of soil moisture stress on two varieties of upland cotton in Israel. I. The Coastal Plain region. Exp. Agric. 1971, 7: 213-224.
    133. Marx-Finigi M. Comparison of the biosynthesis of cellulose in vitro and in vivo cotton boll. Nature, 1966, 210:754-755.
    134. Matocha J E, Coker D L, Hopper F L. Potassium fertilization effects on cotton yields and fiber properties. In Proc. Beltwide Cotton Conf., San Diego, CA. 5-8 Jan. 1994. Natl. Cotton Counc. Am., Memphis, TN. 1994: 1597-1600.
    135. Maureen M C, Delemer D P. Change in biochemical composition of the cell wall of the cotton fiber during development. Plant Physiology, 1997, 59: 1088-1097.
    136. May O L. Genetic variation in fiber quality. In A.S. Basra (ed.) Cotton fibers, Food Products Press, New York, NY. 1999: 183-229.
    137. Meredith W R Jr., Bridge R R. Heterosis and gene action in cotton, Gossypium hirsutum L. Crop Sci. 1972, 12: 304-310.
    138. Michael A J, Wells R. Fiber yield and quality of cotton grown at two divergent population densities.Crop Sci., 1998(38): 1190-1195
    139. Miller P A, William J C, Robinson H F Jr, Comstock R E. Estimates of genotypic and environmental variance and convariances in upland cotton and their implications in selection. Agon. J. 1958, 50: 126-131
    140. Minton E B, Ebelhar M W. Potassium and aldicarb-disulfoton effects on verticillium wilt, yield, and quality of cotton. Crop Sci. 1991,31: 209-212.
    141. Murray A K, Brown J. Glycoconjugate analysis of developing cotton fibers from several varieties grown on the same site. Proc. Beltwide Cotton Conf., 1996: 1205-1209.
    142. Murray A K, Brown J. Glycoconjugate profiles of developing fibers from different fruiting branches on the same plant. In Proc. Beltwide Cotton Conf., New Orleans, LA. 7-10 Jan. 1997. Natl. Cotton Counc. Am., Memphis, TN. 1997: 1496-1499.
    143. Pettigrew W T. Source-to-sink manipulation effects on cotton lint yield and yield components. Agron. J. 1994, 86: 731-735.
    144. Pettigrew W T, Heitholt J J, Meredith W R Jr. Early season floral bud removal and cotton growth, yield, and fiber quality. Agron. J. 1992, 84:209-214.
    145. Pettigrew W T, Heitholt J J, Meredith W R Jr. Genotypic interactions with potassium and nitrogen in cotton of varied maturity. Agron. J. 1996, 88: 89-93.
    146. Pettigrew W T. Low light conditions compromise the quality of fiber produced. In Proc.Beltwide Cotton Conf., Nashville, TN. 9-12 Jan. 1996, Natl. Cotton Counc. Am., Memphis, TN. 1996: 1238-1239.
    147. Pettigrew W T. Source-to-sink manipulation effects on fiber quality. Agron. J. 1995, 87: 947-952.
    148. Phene C J, Baker D N, Lambert J R, Parson J E, McKinion J M. SPAR - a soil-plant-atmosphere-research system. Trans. ASAE 1978, 21: 924-930.
    149. Porter, P M, Sullivan M J, Harvey L H. Cotton cultivar response to planting date on the southeastern coastal plain. J. Prod. Agric1996, 9:223-227.
    150. Pre-harvest Environmental Effect on Cotton Fiber Quality. 美国农业部网站资料
    151. Radin J W, Reaves L L, Mauney J R, French O F. Yield enhancement by frequent irrigation during fruiting. Agron. J. 1992, 54: 551-557.
    152. Ramey H H. Jr. Stress influences on fiber development. In J.R. Mauney and J. McD. Stewart (ed.) Cotton physiology. The Cotton Found., Memphis, TN. 1986: 315-359.
    153. Ramsey J C, Ber Lin J D. Ultrastructural spects of early stages in cotton fiber elongation. Amer J Bot, 1976, 63(6):868–876.
    154. Ramsey J C, Ber Lin J D. Ultrastructure of early stages of cotton fiber differentiation. Bot Gaz, 1976, 137(1):11–19.
    155. Reddy K R, Hodges H F, Reddy V R. Temperature effects on cotton fruit retention. Agron. J. 1992, 84:26-30.
    156. Reddy V R, Baker D N, Hodges H F. Temperature effects on cotton canopy growth, photosynthesis, and respiration. Agron. J. 1991, 83: 699-704.
    157. Reddy V R, Baker D N, and Hodges H F.. Temperature and mepiquat effects on cotton canopy architecture. Agron. J. 1990, 82:190-195
    158. Reddy V R, K R Reddy, and B Acock. Carbon dioxide and temperature interactions on stem extension, node initiation, and fruiting in cotton. Agric. Ecosyst. Environ. 1995, 55: 17-28.
    159. Sassenrath-Cole G F, Hedin P A. Cotton fiber development: growth and energy content of developing cotton fruits. Proc. Beltwide Cotton Conf., 1996: 1247-1249.
    160. Sassenrath-Cole G F. Dependence of canopy light distribution on leaf and canopy structure for two cotton (Gossypium) species. Agric. For. Meteorol. 1995, 77: 55-72.
    161. Scholl RL and Miller P A. Genetic association between yield and fiber strength in upland cotton. Crop Sci.,1976,16: 780-783
    162. Schuber A M, Benedict C R. Cotton fiber development kinetics of cell elongation and secondary wall thickening. Crop Science,1973, 13: 704-709.
    163. Schuber A M, Benedict C R.Cotton fiber development kinetics of cell elongation and secondary wall thickening. Crop Science,1973,13:704-709.
    164. Shimishi D, Marani A.. Effects of soil moisture stress on two varieties of upland cotton in Israel. II. The northern Negev region. Exp. Agric. 197, 7:225-239.
    165. Singh R P, Bhan S.. Yield, quality, and economics of summer cotton (Gossypium species) as influenced by frequency of irrigation and moisture-conservation practices. Indian J. Agron. 1993, 33: 439-442.
    166. Smith C W, Coyle G G. Association of fiber quality parameters and within-boll yield components in upland cotton. Crop Sci.,1997(37):1775-177
    167. Smith C W, Waddle B A, Ramey H H. Planting spacings with irrigated cotton. Agron. J.,71:858-860
    168. Spooner A E, Caviness C E, Spurgeon W I. Influence of timing of irrigation on yield, quality, and fruiting of upland cotton. Agron. J. 1958, 50: 74-77.
    169. Stichler C R, Landivar J A. Using Mepiquat Chloride on the Texas Coast to Reduce Cotton Plant Height.
    170. Tewolde H, Fernandez C F. Fiber quality response of Pima cotton to nitrogen and phosphorus deficiency. Journal of Plant Nutrition. 2003, 26: 223-235
    171. Thaker V S,Saroop S,Vaishnav P P,Singh Y D. Role of peroxidase and esterase activities during cotton fiber development. Journal of Plant Growth Regul., 1986, 5 (1):17-27.
    172. Thaker, V S, S. Saroop, Vaishnav P P, Singh Y E. Genotypic variations and influence of diurnal temperature on cotton fiber development. Field Crops Res. 1989, 22:1-13.
    173. USDA, AMS. Fiber Quality Res. DeLanghe, T. Fransen, and L. Verschraege. Cotton fibers are uniform in length under natural conditions, 1985: 2-4.
    174. Usherwood N R The Influence of potassium on cotton quality. Agri-Briefs, Agronomic news items, 2000, 8: 12-17
    175. Usherwood N R. Effects of rate and time of potassium application on cotton yield and quality in turkey.J Agron Crop Sci 2002,188 (6): 382-388
    176. Usherwood N R. The role of potassium in crop quality. Potassium Agriculture, American Society of Agronomy, 985:489-514 Schubert A M. Cotton fiber development-kinetics of cell elongation and secondary wall thickening. Crop Science. 1973,3: 704–709.
    177. Westafer J M, Brown R M. Electron microscopy of the cotton fiber. New observations on cell wall formation. Cytobios, 1976, 15: 111-138.
    178. Willision H M. Cell wall biosynthesis in the cotton fiber in 176th ACS National Meeting. Cellulose, Paper and Textile Chemistry Division, American chemical Society. 1978.
    1. 徐楚年,余炳义,张 仪. 棉花四个栽培种纤维发育的比较研究[J]. 北京农业大学学报,1988,14(2):113-119
    2. Robert W S, Vito O, Kim M, et al. Cotton fiber development 2: Changes in cell diameter and wall brief-fringence. The Journal of Cotton Sciences, 2000, 4: 97-104.
    3. Delanghe E. Lint development. Cotton Physiology[M]. The Cotton Foundation, Memphis, 1996,325-349.
    4. 刘 新,陶灵虎,阮锡根. 棉纤维品质性状差异形成机制的研究[J].生物物理学报,1999,15(4):621-626.
    5. 单世华,王明林,汪建民,等. 不同开花期 IAA、GA3 和 POD 对棉花伸长发育的影响[J]. 棉花学报,2001,13(2):100-104.
    6. 何钟佩. 棉铃发育过程中内源激素变化及化学调控效应研究[J]. 中国农业大学学报(增刊),1997:450.
    7. 商慧琛,丁静. 内源吲哚乙酸、脱落酸和赤霉素与棉铃发育及脱落的关系[J].植物生理学报,1986,12(2):178-186.
    8. 沈新莲,周宝良,顾立美,等. 棉纤维发育过程中内源激素动态变化的研究[J]. 江苏农业学报,1998,14(4):204-206.
    9. 何旭平,冷苏凤,承泓良. 高品质棉花新品种――渝棉 1 号[J]. 江苏农业学报,2000,4:203.
    10. 刘建江,王永芳,管信山,等. 抗虫杂交棉科棉 1 号高产栽培技术途径研究[J].江西棉花,2002,1:25-29.
    11. Updergraff D M. Semi-micro determination of cellulose in biological materials. Anal. Biochem. 1969, 32: 420-424.
    12. Joshi P A, Stewart J M, Graham E T. Localization of β-glycerophosphatase activity in cotton fiber during differentiation. Protoplasma, 1985, 125:75-85.
    13. Delanghe E A. Lint development. In J R Mauney and J M Stewart Cotton Physiology. Cotton Foundation, Memphis,TN,1986, 325-349.
    14. Schuber A M, Benedict C R. Cotton fiber development kinetics of cell elongation and secondary wall thickening. Crop Science,1973, 13:704-709.
    15. Meinert M C, Delmer D P. Changes in biochemical composition of the cell wall in cotton fiber during development. Plant Physiology, 1977, 59: 1088-1097.
    16. 杨文钰,屠乃美. 作物栽培学各论[M]. 中国农业出版社,2003 年
    17. 刘继华,尹承佾,于凤英,孙清荣,王永民,贾景农,边栋材,陈学留. 棉花纤维强度的形成机理与改良途径[J].中国农业科学,1994,27(5):10-16.
    18. Davis L A,Ting I P. The effects of plant growth substances on in vitro fiber development from fertilized cotton ovule[J].Amer J Bot. 1973,60:120-139.
    19. Gokani S J,Kumar R,THAKER V S. Potential role of abscisic acid in cotton fiber and ovule development [J]. Plant Growth Regul. 1998,17:1-5.
    20. Dhindsar R S,Beasley C A,Ting I P. Effect of abscisic acid on in vitro growth of cotton fiber[J]. Planta, 1976, 130:197-201
    21. Yang Youming, Xu Chunian, Jia Junzhen. A system of ovule subculture for cotton fiber development [J]. 作物学报,2001, 27(6): 694-703 (In English with Chinese abstract)
    1. 范术丽,许玉璋,张朝军. 氮磷钾对棉花伏桃发育的影响[J]. 棉花学报,1999,11(1):24-30
    2. 海江波,王方成,范术丽,申让平,许玉璋. 氮磷钾对棉铃干物质积累及纤维品质的影响[J]. 西北农业学报,1998,7(4):49-52
    3. 海江波,许玉璋,申让平. 氮磷钾配合对棉铃经济性状空间分布的影响[J]. 西北农业大学学报,1999,27(6):23-27
    4. 胡尚钦,杨晓,唐时嘉,罗有芳,张建辉. 紫色土壤施氮对棉花产量品质的影响[J]. 棉花学报,2001,13(1):36-41
    5. 李迎春,杨伯祥,王小平. 氮磷钾对低酚棉产量和纤维品质的影响[J]. 中国棉花,1997,24(5):11-12
    6. 杨可胜,易成新,朱延成,杨金龙. 棉花应用 DPC 化调效果及施用方法[J]. 安徽农业科学,1995,23(2):142-143
    7. 赵振勇,田长彦,马英杰. 高密度对陆地棉产量及品质的影响[J]. 干旱区研究,2003,20(4):292-295
    8. 冯忠新,余渝,邓福军. 新疆棉区棉花密度的初步研究[J], 新疆农业科学,2002,39(4):210-213
    9. Aguillard W, Boquet D J, Schilling P E. Effects of planting dates and cultivars on cotton yield, lint percentage, and fiber quality. Bull. 727. Louisiana State Univ. Agric. Exp. Stn., Baton Rouge. 1980.
    10. Baker S H. Response of cotton to row patterns and plant population. Agron. J,1976, 68: 85-88
    11. Boman, R K, Westerman R L Nitrogen and mepiquat chloride effects on the production of nonrank, irrigated, short-season cotton. J. Prod. Agric. 1994, 7:70-75.
    12. Bradow J M., Davidonis G H. Quantitation of Fiber Quality and the Cotton Production Processing Interface: A Physiologist's Perspective. The Journal of Cotton Science, 2000 (4):34-64
    13. Bridge R R, Meredith W R. and Chism J F. Influence of planting method and plant population on cotton (Gossypium hirsutum L.) .Agron. J.,65:104-109
    14. Cassman, K G, Kerby T A, Roberts B A, Bryant D C, Higashi SL. Potassium nutrition effects on lint yield and fiber quality of Acala cotton. Crop Sci. 1990, 30:672-677
    15. Davidonis G H. Effects of flowering date, irrigation and mepiquat chloride on cotton fiber properties.
    16. Ebelhar M W, Welch R A, and Meredith W R Jr. Nitrogen rates and mepiquat chloride effects on cotton lint yield and quality. Proc. Beltwide Cotton Conf., 1996:1373-1378.
    17. Galadima A, Husman S H, Silvertooth J C. Plant population effect on yield and fiber quality of three upland cotton varieties at Maricopa Agricultural Center, 2002
    18. Gormus O, Yucel C. Different planting date and potassium fertility effects on cotton yield and fiber properties in the Cukurova region, Turkey .Field Crop Res 2002, 78 (2-3): 141-149
    19. Husman S H, McCloskey W B, Teegerstrom T, Clay P A. Agronimic and economic evaluation of ultra narrow row cotton production in Arizona,1999: 245-251
    20. Jones, M A, and Wells R. Field yield and quality of cotton grown at two divergent population densities. Crop Sci. 1997,37:1190-1195.
    21. Landivar J A, Perkins R, Johnson A, Davidonis G H. Texas coastal plains cotton , motes and fiber quality II: Effects of pix (mepiquat chloride)
    22. Matocha J E, Coker D L, Hopper F L. Potassium fertilization effects on cotton yields and fiber properties. p. 1597-1600. In Proc. Beltwide Cotton Conf., San Diego, CA. 5-8 Jan. 1994. Natl. Cotton Counc. Am., Memphis, TN.
    23. Michael A J, Wells R. Fiber yield and quality of cotton grown at two divergent population densities.Crop Sci., 1998(38): 1190-1195
    24. Minton E B, Ebelhar M W. Potassium and aldicarb-disulfoton effects on verticillium wilt, yield, and quality of cotton. Crop Sci. 1991, 31:209-212.
    25. Usherwood.N R. Effects of rate and time of potassium application on cotton yield and quality in turkey.J Agron Crop Sci. 2002,188 (6): 382-388
    1. 杨文钰,屠乃美. 作物栽培学各论[M]. 中国农业出版社,2003 年
    2. 王宏凯,周广业,丁宁平,尚来宾,方社会. 不同肥力土壤的供磷能力和磷肥肥效研究,土壤通报,1999,30(1):31-34
    3. UPDEGRAFF D M. Semi-micro determination of cellulose in biological materials[J]. Anal. Biochem. 1969,32: 420-424.
    4. 徐楚年,余炳义,张 仪. 棉花四个栽培种纤维发育的比较研究[J].北京农业大学学报,1988,14(2):113-119
    5. 徐楚年.温度对棉纤维发育效应的研究.中国棉花学会第十次学术研讨会论文集,1992,7.
    6. 刘 新,陶灵虎,阮锡根. 棉纤维品质性状差异形成机制的研究[J].生物物理学报,1999,15(4):621-626.
    7. 单世华,王明林,汪建民,等. 不同开花期 IAA、GA3 和 POD 对棉花伸长发育的影响[J]. 棉花学报,2001,13(2):100-104.
    8. 何钟佩, 棉铃发育过程中内源激素变化及化学调控效应研究[J]. 中国农业大学学报(增刊),1997:450.
    9. 商慧琛,丁静. 内源吲哚乙酸、脱落酸和赤霉素与棉铃发育及脱落的关系[J].植物生理学报,1986,12(2):178-186.
    10. 沈新莲,周宝良,顾立美,等. 棉纤维发育过程中内源激素动态变化的研究[J]. 江苏农业学报,1998,14(4):204-206.
    11. Minton, E.B., and M.W. Ebelhar. Potassium and aldicarb-disulfoton effects on verticillium wilt, yield, and quality of cotton. Crop Sci. 1991,31:209-212.
    12. Cassman, K.G., T.A. Kerby, B.A. Roberts, D.C. Bryant, and S.L. Higashi. 1990. Potassium nutrition effects on lint yield and fiber quality of Acala cotton. Crop Sci. 30:672-677
    13. Pettigrew, W.T., J.J. Heitholt, and W.R. Meredith Jr. 1996. Genotypic interactions with potassium and nitrogen in cotton of varied maturity. Agron. J. 88:89-93.
    14. 刘继华,尹承佾.棉花纤维素沉积与高强纤维形成.核农学报,1991:6(4):205–209.
    15. 刘继华,于凤英,尹承佾.棉花成熟纤维强度差异机制的研究.棉花学报,1994,6(4):11-16.
    16. 单世华,孙学振,周治国,等.温度对棉纤维强度和超分子结构的影响,作物学报,2000,26,667-672
    17. 单世华,孙学振,周治国,等. 温度对棉纤维品质的影响,华北农学报,2000,15(4):120-125
    18. 蒋光华. 低温和棉株生理年龄对棉纤维加后发育及纤维比强度的影响,南京农业大学硕士论文,2005 年.
    19. 蒋光华,孟亚利,陈冰林,卞海云,周治国. 低温对棉纤维比强度形成的生理机制影响,植物生态学报,2006,30(2):335-34
    1. 徐楚年,余炳义,张 仪. 棉花四个栽培种纤维发育的比较研究[J].北京农业大学学报,1988,14(2):113-119
    2. Robert W Seagull, VITO Oliveri, KIM Murphy, et al. Cotton fiber development 2: Changes in cell diameter and wall brieffringence. The Journal of Cotton Sciences, 2000, 4:97-104.
    3. Delanghe E. Lint development. Cotton Physiology[M]. The Cotton Foundation, Memphis, 1996,325-349.
    4. 刘 新,陶灵虎,阮锡根. 棉纤维品质性状差异形成机制的研究[J].生物物理学报,1999,15(4):621-626.
    5. 单世华,王明林,汪建民,施培. 不同开花期 IAA、GA3 和 POD 对棉花伸长发育的影响[J]. 棉花学报,2001,13(2):100-104.
    6. 何钟佩, 棉铃发育过程中内源激素变化及化学调控效应研究[J]. 中国农业大学学报(增刊),1997:450.
    7. 商慧琛,丁静. 内源吲哚乙酸、脱落酸和赤霉素与棉铃发育及脱落的关系[J].植物生理学报,1986,12(2):178-186.
    8. 沈新莲,周宝良,顾立美,陈松. 棉纤维发育过程中内源激素动态变化的研究[J]. 江苏农业学报,1998,14(4):204-206.
    9. 张宪政. 作物生理研究法[M]. 北京:农业出版社,1992 年.
    10. 华东师范大学主编,植物生理学实验指导[M]. 北京:高等教育出版社,1988 年
    11. 张志良. 植物生理学实验指导[M]. 北京:高等教育出版社,1990
    12. 梁建生,曹显祖,徐生,朱庆森,宋平. 水稻籽粒库强与其淀粉积累间关系的研究[J]. 作物学报,1994,20(6):686-691
    13. 何之常,徐乃瑜. IAA-氧化酶活性及同工酶分析方法的改进[J]. 植物生理学通讯,1993,29(6):440-443
    14. Updergraff D M. Semi-micro determination of cellulose in biological materials[J]. Anal. Biochem. 1969,32: 420-424.
    15. Jean- Pierre Jaquet, Antony J. Buchala, Hans Meir. Changes in the non-structural carbohydrate content of cotton (Gossypium spp.) fibers at different stages of development. Planta, 1982, 156: 481-486
    16. W. T. Pettigrew. Environmental effects on cotton fiber carbohydrate concentration and quality. Crop Science, 2001, 41: 1108-1113
    17. 孙红春,李存东,王文新,谢志霞,朱继杰. 初花期源库比变化对棉花下部“铃-叶系统”生理特征的影响[J]. 棉花学报,2004,16(5):286-290
    18. 范术丽,许玉璋,张朝军. 氮磷钾对棉花伏桃发育的影响[J]. 棉花学报,199,11(1):24-30
    19. Chanda S V, Singh Y D. Changes peroxidase and IAA oxidase activities during wheat graindevelopment. Plant Physiol biochem,1997, 35(3):245–250.
    20. Thaker V S,Saroop S,Vaishnav P P,Singh Y D. Role of peroxidase and esterase activities during cotton fiber development. Journal of Plant Growth Regul., 1986, 5 (1):17-27.
    21. 王水平,沈曾佑,张志良. 棉纤维伸长生长与过氧化物酶和 IAA 氧化酶的关系[J].植物生理学报, 1985,11(4):409-417.
    22. 董合忠,申贵芳. 陆地棉与海岛棉纤维伸长中过氧化酶活性的比较[J].植物生理学通讯, 1997,33(3):188-190.
    23. 刘康,张天真,潘家驹. 棉纤维初始发育过程中过氧化物酶和吲哚乙酸氧化酶的活性[J]. 植物生理学通讯,1998,34(3):175-178.
    24. Carpita N C, Delmer D P. Concentration and metabolic turnover of UDP-Glucose in developing cotton fibers. Journal of Biological Chemistry, 1981, 25(6): 308-315.
    25. Davis L A,TING I P. The effects of plant growth substances on in vitro fiber development from fertilized cotton ovule[J].Amer J Bot. 1973,60:120-139.
    26. Dasani S H, Thaker V S. Role of abscisic acid in cotton fiber development. Russian Journal of Plant Physiology, 2006, 53(1): 68-74
    27. Gokani S J,Kumar R,Thaker V S. Potential role of abscisic acid in cotton fiber and ovule development [J]. Plant Growth Regul. 1998,17:1-5.
    28. Dhindsa R S,Beasley C A, TING I P. Effect of abscisic acid on in vitro growth of cotton fibre[J]. Planta, 1976, 130:197-201
    1. 过兴先,曾伟. 新疆棉区气温对棉纤维发育的影响[J]. 新疆农业科学,1991,6:256-256
    2. 韩慧君. 气象因素对棉花产量和纤维品质的影响[J]. 中国农业科学,1991,24(5):23-29
    3. 胡国祥,贺玉贵,黄健,胡钰. 棉花纤维内在品质构成分析,江西棉花,2000,22(5):28-30
    4. 刘静,翟朝勋,张淑琴.棉花产量及品质与气象条件的关系[J]. 新疆气象,1998,21(5):32-33
    5. 唐淑荣,杨付新,周关印,余楠,熊宗伟,褚平,侯爱玲. 黄河流域棉区棉纤维品质区域分布特征[J]. 中国棉花,1997,24(6):11-12
    6. 王小龙. 影响棉纤维强度因素分析及解决途径[J]. 河南职技师范学报, 1999,27(2):9-11
    7. 杨佑明,贾君镇,徐楚年等,棉花纤维细胞起始及温度、植物生长物质对其影响[J]. 中国农业大学学报,1999,4(3):15-22.
    8. 余隆新,唐仕芳,王少华. 湖北省棉纤维品质生态区划及研究[J]. 棉花学报,1993,5(2):15-20
    9. 周关印,杨付新,付小琼,王秀玲. 长江流域气候差异对棉花产量和纤维品质的影响[J]. 中国棉花,1996,23(10):15-18
    10. 周治国,孟亚利,施培,沈煜清. 棉麦两熟棉纤维强度与铃期气象因子关系研究[J]. 棉花学报,1999,11(3):134-140.
    11. Bradow J M, Bauer P J. Fiber quality variation related to cotton planting date and temperature. Proc. Beltwide Cotton Conf. 1997: 1491–1495
    12. Bradow J M, Sassenrath-Cole G F, Hinojosa O, Wartelle L H.. Cotton fiber physical and physiological maturity variation in response to genotype and environment. Proc. Beltwide Cotton Conf., 1996: 1251–1254.
    13. Bradow, J M, Davidonis G H, Hinojosa O, Wartelle L H, Pratt K J, Pusateri K, Bauer P J, Fisher B, Sassenrath-Cole G F, Dastoor P H, Landivar J A, Locke D, Moseley D. Environmentally induced variations in cotton fiber maturity and related yarn and dyed knit defects. Proc. Beltwide Cotton Conf., 1996: 1279–1284.
    14. Haigler C H, Taylor J G, Martin L K. Temperature dependence of fiber cellulose biosynthesis: impact on fiber maturity and strength. Proc. biochemistry of cotton workshop, 1994: 95-100.
    15. Haigler C H, Rao N R, Roberts E M, Huang J-Y, Upchurch D R, Trolinder N L. Cultured ovules as models for cotton fiber development under low temperature. Plant Physiol.1995:88-96.
    16. Hanson R G, Ewing E C. Effect of environmental factors on fiber properties and yield of Deltapine cottons. Agron. J. 1956, 48:546-581.
    17. http://www.cnradio.com/zgnc/zf/t20060314_504179488.html,高品质棉的概念
    18. Thaker V S, Saroop S, Vaishnav P P, Singh Y E. Genotypic variations and influence of diurnal temperature on cotton fiber development. Field Crops Res. 1989, 22:1-13.
    19. USDA, AMS. Fiber Quality Research, Cotton Incorporated. Classing Week Ending - January 02, 2003
    20. Usherwood N R. The role of potassium in crop quality. Potassium Agriculture, American Society of Agronomy, 985:489-514
    21. Vincke H, DeLanghe E, Fransen T, Verschraege L. Cotton fibers are uniform in length under natural conditions, 1985: 2-4.
    22. Xie W, Trolinder N L, Haigler C H. Cool temperature effects on cotton fiber initiation and elongation clarified using in vitro cultures. Crop Sci. 1993, 33: 1258-1264
    1. 徐楚年,寿元,林庆文,贾君镇. 棉花纤维发育研究[J]. 中国棉花学会第四次代表大会暨第九次学术讨论会论文,1992
    2. 董合忠,徐楚年,余炳生. 陆地棉和海岛棉纤维发育的比较研究. I. 棉纤维的分化 [J]. 北京农业大学学报,1989,15(4):377-381
    3. 董合忠,徐楚年,余炳生. 陆地棉和海岛棉纤维发育的比较研究 II. 棉纤维的伸长、加厚和纤维品质[J]. 北京农业大学学报,1990,16(2):137-141
    4. 朱永歌,余全胜,孙天曙. 高品质棉渝棉 1 号生育特性和栽培技术研究[J]. 中国棉花,2003,30(3):17-19
    5. 杨伯祥,王治斌. 高品质棉主要经济性状[J]. 中国棉花,2002,29(2):14-16
    6. 唐淑荣,杨付新,周关印,余楠,熊宗伟,褚平,侯爱玲. 黄河流域棉区棉纤维品质区域分布特征[J]. 中国棉花,1997,24(6):11-12
    7. 余隆新,唐仕芳,王少华. 湖北省棉纤维品质生态区划及研究[J]. 棉花学报,1993,5 (2):15-20
    8. 周关印,杨付新,付小琼,王秀玲. 长江流域气候差异对棉花产量和纤维品质的影响[J]. 中国棉花,1996,23(10):15-18
    9. Eaton F M, Ergle D R.. Effects of shade and partial defoliation on carbohydrate levels and the growth, fruiting, and fiber properties of cotton plants. Plant Physiol. 1954, 29: 39-49.
    10. Husman S H, McCloskey W B, Teegerstrom T, Clay P A. Agronimic and economic evaluation ofultra narrow row cotton production in Arizona,1999: 245-251
    11. 范术丽,许玉璋,张朝军. 氮磷钾对棉花伏桃发育的影响[J].1999,11(1):24-30
    12. 朱振亚,赵翔,王承华,陈向阳,张晓娉,梅燕. 棉花施钾效应研究[J]. 新疆农业科学,2000,1:24-26
    13. Galadima A, Husman S H, Silvertooth J C. Plant population effect on yield and fiber quality of three upland cotton varieties at Maricopa Agricultural Center, Arizona Cotton Report, The University of Arizona College of Agriculture and Life, 2003
    14. Bradow, J M, G H Davidonis, Hinojosa O, Wartelle L H, Pratt K J, Pusateri K, Bauer P J, Fisher B, Sassenrath-Cole G F, Dastoor P H, Landivar J A, Locke D, Moseley D. Environmentally induced variations in cotton fiber maturity and related yarn and dyed knit defects. Proc. Beltwide Cotton Conf., 1996: 1279–1284.
    15. Bradow J M, Bauer P J, Hinojosa O, Sassenrath-Cole G F. Quantitation of cotton fibre-quality variations arising from boll and plant growth environments. Eur. J. Agron. 1997, 6:191–204.
    16. 戴敬,徐俊兵,夏莉莉. 科棉 1 号的高产优质特性及栽培技术. 作物研究,2003,17(3):147
    17. 陈德华,夏金华,戴敬,吴云康. 高品质棉花新品种科棉 1 号的生育特性及配套栽培技术[J]. 江苏农业科学,2003,3:13-14
    18. 陈庆生,王国平,丁同华,何永垠,顾桂华. 高品质棉科棉 1 号的生育特性及栽培技术[J]. 作物杂志,2003,6:36
    19. 刘建江,王永芳,管信山,顾海伟. 抗虫杂交棉科棉 1 号高产栽培技术途径研究[J]. 江西棉花,2002,24(1):25-29
    20. 王国平,何永根,龙庆海,谢永发,鲁永华. 科棉 1 号特点及高产栽培配套技术[J]. 农业科技通讯,2005,5:19
    21. 徐立华,李国锋,何循宏,杨德银. 高品质棉“科棉 1 号”的源库特征[J]. 中国棉花,高品质棉“科棉 1 号”的源库特征,2003,30(11):14-16
    22. 朱明华. 科棉 1 号的主要特性及其栽培技术[J]. 江西棉花,2002,24(6):24-25
    23. 单世华,王明林,汪建民,施培. 不同开花期 IAA、GA3 和 POD 对棉花伸长发育的影响[J]. 棉花学报,2001,13(2):100-104.
    24. 何钟佩, 棉铃发育过程中内源激素变化及化学调控效应研究[J]. 中国农业大学学报(增刊),1997:450.
    25. 商慧琛,丁静. 内源吲哚乙酸、脱落酸和赤霉素与棉铃发育及脱落的关系[J].植物生理学报,1986,12(2):178-186.
    26. 沈新莲,周宝良,顾立美,陈松. 棉纤维发育过程中内源激素动态变化的研究[J]. 江苏农业学报,1998,14(4):204-206.
    27. 王水平,沈曾佑,张志良. 棉纤维伸长生长与过氧化物酶和 IAA 氧化酶的关系[J].植物生理学报, 1985,11(4):409-417.
    28. 董合忠,申贵芳. 陆地棉与海岛棉纤维伸长中过氧化酶活性的比较[J].植物生理学通讯, 1997,33(3):188-190.
    29. 刘康,张天真,潘家驹. 棉纤维初始发育过程中过氧化物酶和吲哚乙酸氧化酶的活性[J]. 植物生理学通讯,1998,34(3):175-178.
    30. Dasani S H, Thaker V S. Role of abscisic acid in cotton fiber development. Russian Journal of Plant Physiology, 2006, 53(1): 68-74
    31. Gokani S J,Kumar R,Thaker V S. Potential role of abscisic acid in cotton fiber and ovule development [J]. Plant Growth Regul. 1998,17:1-5.
    32. Pettigrew W T. Environmental effects on cotton fiber carbohydrate concentration and quality. Crop Science, 2001, 41: 1108-1113
    33. 孙红春,李存东,王文新,谢志霞,朱继杰. 初花期源库比变化对棉花下部“铃-叶系统”生理特征的影响[J]. 棉花学报,2004,16(5):286-290

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