百合根系分泌物对几种观赏植物的化感作用
详细信息    本馆镜像全文|  推荐本文 |  |   获取CNKI官网全文
摘要
百合是世界主要的商品花卉之一,深受消费者的喜欢。但百合在栽培中忌重茬,研究百合根系分泌物对观赏植物的化感作用,将为百合产业化生产中选择后茬作物,构建合理的栽培制度提供理论依据。本试验以波利安娜和白狐百合为供体材料,以莴苣、满天星、千日红、金鱼草为受体材料,采用水培、滤纸培和组织培养三种方法为研究手段,通过生物测定,探讨了百合根系分泌物的化感效应,并比较了三种研究方法的优缺点。主要研究结果如下:
     (1)利用水培的方法收集百合根系分泌物,对四种受体植物进行生物测定,结果表明,波利安娜根系分泌物对莴苣和满天星的化感抑制作用不强,都未达显著水平,甚至对有的指标起促进作用;而对千日红和金鱼草的发芽率和发芽指数表现显著的抑制作用。白狐根系分泌物对满天星苗高起促进作用,对其他指标均表现抑制作用,但差异不显著;而对其他3种受体植物则表现较强的化感抑制作用。因此认为莴苣和满天星可作为波利安娜百合的后茬作物,满天星可作为白狐百合的后茬作物。
     (2)采用滤纸培的方法收集百合根系分泌物,同样对四种受试植物进行生物测定。结果表明,波利安娜根系分泌物对莴苣和满天星的根长和侧根数的抑制作用达到显著水平(可能是根与化感物质直接接触的原因),但对这2种受体植物的其他指标的抑制作用均未达显著水平;对金鱼草的化感抑制作用除发芽率和根鲜重未达显著水平外,其他指标均达显著水平;对千日红的化感抑制作用除根鲜重外,其余指标均达显著水平;白狐根系分泌物对4种园艺植物的化感作用,总体上表现为抑制作用大于促进作用。因此认为莴苣和满天星可作为玻璃安娜百合的后茬作物,而四种受试植物均不适合作白狐百合的后茬作物。
     (3)为了排除微生物的影响,本试验还采用了组织培养的方法收集百合根系分泌物,研究了根系分泌物对受体植物发芽及幼苗生长的影响,并对化感机理进行了初步探讨。波利安娜根系分泌物对满天星的形态指标(除地上部鲜重)均表现化感抑制作用,但差异不显著,对根系活力表现的抑制作用也不显著,虽然对SOD活性有明显的降低,但MDA含量却减少了,说明植物并没有受到太大伤害;对其他3种受体作物的抑制作用大于促进作用。白狐百合根系分泌物对四种受体植物的化感作用,总体上表现为抑制作用大于促进作用。因此认为满天星可作为波利安娜百合的后茬作物,而四种受试植物均不适合作白狐百合的后茬作物。
     (4)三种方法收集得到的百合根系分泌物对受体植物的发芽率和发芽指数均表现出化感抑制作用,而对幼苗生长表现出的化感作用不尽相同。其原因可能是受体植物幼苗生长条件、根际环境不同以及不同方法收集到的化感物质数量和质量不同。三个试验研究结果一致表明,白狐百合根系分泌物对受体植物的化感抑制作用大于波利安娜百合根系分泌物。水培收集法简单、方便、易于作进一步的分析。滤纸培收集法更具直接性、真实性等优点。组培收集法可不受季节、环境条件的限制,还可以排除病、虫害和土壤及土壤微生物的干扰。
Lily is one of the main commodity flowers and deeply favored by customer. In planting, lily should be avoided continuing in the same terra, accordingly, the allelopathy effects of supplier plant lily root exudates on four receiver ornamental plants were studied to provide a theory basis about forming reasonable cultivate system. Pollyanna and White fox as supplier plants, lettuce(Lactuca sativa), snapdragon(Antirrhinum majus), gomphrena(Gomphrena globosa)and starriness(Gypsophila elegans)as receiver plants, the study using hydroponic culture, filter paper culture, tissue culture methods to collect root exudates discussed the allelopathy effects of root exudates and compared merits and demerits of the three methods. The main results were as follows.
     (1) The hydroponic culture method was used to collect lily root exudates. Allelopathy of two lily cultivars root exudates were researched by biological testing. The results showed that lily cv. Pollyanna have a inapparent inhibit effect on some targets of lettuce and starriness, even have a promote effect on other targets of those, but have a significantly inhibited on germination rate and germination index of gomphrena and snapdragon. The shoot height of starriness were promoted by the root exudates of lily cv. White fox, and the other targets were not significantly inhibited. Lettuce, snapdragon, gomphrena were significantly inhibited by lily cv. White fox. So lettuce and starrines were the tolerant letter crops of Pollyanna. Starrines was the tolerant letter crops of White fox.
     (2) The filter culture method was used to collect lily root exudates. Allelopathy of two lily cultivars root exudates were researched by biological testing. The root length and the number of lateral root of lettuce and starriness were significantly inhibited by the root exudates of lily cv. Pollyanna, and the other targets were not significantly inhibited. The germination rate and root fresh mass of snapdragon were not significantly inhibited by the root exudates of lily cv. Pollyanna, and the other targets were significantly inhibited. The gomphrena were significantly inhibited by the root exudates of lily cv. Pollyanna excepting the root fresh mass. The root exudates of White fox on four receiver plants, the inhibitory action was bigger than the promoter action. Lettuce and starriness were the tolerant letter crops of Pollyanna. The four receiver plants were not suitable as the latter crops of White fox.
     (3) To eliminate disturbance of microorganism, the filter culture method was used to collect lily root exudates. Allelopathy of two lily cultivars root exudates and mechanism were researched. The modality targets of starriness(except the top fresh mass) were not significantly inhibited by lily cv. Pollyanna, and TTC reduction was not significantly inhibited, SOD activity was fell, but MDA contents was reduced, which shows the plant was not injured. The lily cv. Pollyanna on the others, the inhibitory action was bigger than promoter action. The root exudates of White fox on four receiver plants, the inhibitory action was bigger than the promoter action. So starriness was the tolerant letter crops of Pollyanna. The four receiver plants were not suitable as the latter crops of White fox.
     (4) Root exudates collected by three methods consistently exhibit inhibitory action on germination rate and germination index of the four receiver plants, but have a incompletely consistent effect on seedling growth of the four receiver plants. Perhaps, the reason is that there are some difference in growth condition, rhizosphere environment, and the quantity and quality of allelochemicals. Besides, the three studies showed conformably that the allelopathic inhibitory action of root exudates of white fox was bigger than those of Pollyanna. The water culture method is simpleness, convenience and prone to do more analysis. The filter culture method can collect root exudates directly and veritably. The tissue culture method is not restricted by season and environment, and can eliminate influence of plant diseases and insect pests and microorganism.
引文
[1] Miller DA. Allelopathy in forage crop systems[J]. Agronomy Journal, 1996, 88: 854-859.
    [2] 林文雄,何华勤,郭玉春.水稻化感作用及其生理生态特征[J].应用生态学报,2001,12(6):871-875.
    [3] 陈孝泉.植物化学分类[M].北京:高等教育出版社,1990.
    [4] 孔垂华,胡飞.植物化感(相生相克)作用及其应用[M].北京:中国农业出版社,2001.
    [5] Kimber RWL. Phytotoxicity from plant residues III the relative effect of toxins and nitrogen immobilization on the germination and growth of wheat[J]. Plant Soil, 1973,38: 347-361.
    [6] Kruse M, Strandberg B. Ecological effects of allelopathic plants-A review. National Environmental Research Insititute, Silk Borg, Denmark[R]. NERI Technical Report No.315.
    [7] Schmidt SK. Degradation of jug lone by soil bacteria[J].Journal of Chemical Ecology, 1998,37:1213-1216. 1996,88:876-885.
    [8] David S S.Chemistry and mechanisms of Allelopathic interactions[J].Agronomy Journal,1996,88:876 -885.
    [9] 孔垂华. 植物化感作用研究中应注意的问题[J].1998,9(3):332-336.
    [10] 江贵波,曾任森. 艾的挥发性物质化感作用研究[J].生态科学,2006,(2).106-108.
    [11] 王晗光,张健,杨婉身等. 气相色谱-质谱法分析巨桉叶的挥发性化感成分[J].四川农业大学学报,2006, (1).51-54.
    [12] 马瑞君,王明理,朱学泰等. 黄帚橐吾挥发物的化感作用及其主要成分分析[J].应用生态学报, 2005,(10).1826-1829.
    [13] 张正竹,宛晓春. 茶园中以挥发物糖苷为载体的化感作用[J].中国农学通报,2005,(10).53-56.
    [14] 于凤兰,马茂华,孔令韶. 油蒿挥发油的化感作用研究[J].植物生态学报,1999,(4)345-350.
    [15] 刘建新,赵国林. 多裂骆驼蓬对食荚豌豆的化感作用研究[J].中国生态农业学报,2007,(1).12-15.
    [16] 姜丽,孙玉文,刘景安. 分葱对黄瓜、萝卜和白菜的化感作用[J].中国农学通报,2007,(2).263-266
    [17] Hao Z P, Wang Q, Christie P, et al. Allelopathic potential of watermelon tissues and root exudates. Scientia Horticulturae, 2007,112(3):1673-1679.
    [18] 由海霞,梁银丽,吕文等. 不同作物根系分泌物对黄瓜的化感作用[J].西北农林科技大学学报(自然科学版),2006,(6).101-105.
    [19] 杨瑞吉. 油菜根系分泌物对不同作物幼苗生长的化感效应[J].生态环境,2006,(5).1062-1066.
    [20] 王茹华,周宝利,张启发等. 茄子根系分泌物中香草醛和肉桂酸对黄萎菌的化感效应[J].生态学报, 2006,(9).3152-3155.
    [21] 李明,马永清,税军峰. 南瓜组培根根系分泌物的化感效应研究[J].应用生态学报,2005,(4).744- 749.
    [22] Yu JQ. Autotoxic potential of vegetable crops. In:Narualssed.Allelopathy Update-Basic and Applied Aspects[M]. New Hampshire: Science Publishers Inc. 1999, 159-162.
    [23] 侯永侠,周宝利,吴晓玲等. 辣椒秸秆腐解物化感作用的研究[J].应用生态报,2006,17(4).699-702.
    [24] Viator R P, Johnson R M, Grimm C C, et al. Allelopathic, Autotoxic, and Hormetic Effects of Postharvest Sugarcane Residue[J]. Agronomy Journal, 2006,98:1526-1531.
    [25] 梁文举,张晓珂,姜勇等.根分泌的化感物质及其对土壤生物产生的影响[J].地球科学进展,2005,20(3).330-335.
    [26] Rovira,A.D.et al.Plant root exudates[J].Bot Rev.,1969,35-57.
    [27] Vancura,V.Root exudates of plants[J].Plant and soil,1964,21:231-248.
    [28] 切尔诺布里维卡,C.H.植物分泌物的生物学作用和间作中的种间相互关系[M].北京:科学出版社,1961.
    [29] 孔垂华,徐效华.有机物的分离和结构鉴定[M].北京:化学工业出版社,2003.
    [30] 陈龙池,廖利平,汪思龙等.根系分泌物生态学研究[J].生态学杂志,2002,21(6):57-62.
    [31] 王彬,徐卫红,郭俊云等.根系分泌物及其在植物营养中的作用[J].绿色大世界,43-44.
    [32] 张福锁.根分泌物与禾本科植物对缺 Fe 胁迫的适应机理[J].植物营养与肥料学报,1995,1(1):17-23.
    [33] Materechera ,S.A. et al. Formation of aggregates by plant root in homogenised soils[J] . Plant and Soil ,1992 ,142:69~79.
    [34] Oades,J.M.Mucilages at the root surface[J]. J. Soil Sci.,1978,29:1-16.
    [35] 徐秋芳.马尾松根际土壤化学性质分析[J].浙江林学院学报,1998,15(2):122-126.
    [36] 陆文龙 , 王敬国 , 曹一平等 . 低分子量 有机酸对土壤磷释放动力学的影响 [J]. 土壤学报,1998,35(4):493-500.
    [37] 涂书新,孙锦荷,郭智芬等.植物根系分泌物与根际营养关系评述[J].土壤与环境,2000,9(1):64-67.
    [38] Roshchina V V,Roshchina V D. The excretory function of higher plant [A]. New York:Spinger-verlag.1993:213-215.
    [39] 刘秀芬,胡晓军.化感物质阿魏酸对小麦幼苗内源激素水平的影响[J].中国农业生态学报,2001,9(1):86-88.
    [40] Cruz R,Anaya A L,Hernandez B E,et al Effects of allelochemical stress produced by sicyos deppei on seedling root ultrastructure of Phaselus vulgaris and Cucurbita ficifolia[J].J Chem Ecol,1998,24(12):2039-2057.
    [41] Lyu S W,Blum U.Effects of ferulic acid and allelopathic compound,on net P,K and water up take by cucumber seedlings in a split-root system[J].J Chem Ecol,1990,16(8):2429-2439.
    [42] Yu J Q,Matsui Y.Effect of rot exudates of cucumber and allelopathicals on the ion up take by cucumber seedling[J].J Chem Ecol,1996,6:817-834.
    [43] 吕卫光,张春兰.化感物质抑制连作黄瓜生长的作用机制[J].中国农业科学,2002,35(1):106-109.
    [44] 刘素萍.根系分泌物[J].生态农业研究,1998,6(2):34-36.
    [45] 刘芷宇,施卫明,李良模主编. 根际研究法[M].南京:江苏科技出版社,1997.
    [46] Chen P K, Leather G R. Plant growth regulatory activities of artemisinin and its related compounds[J]. Journal of Chemical Ecology,1990,16(6):1867-1876.
    [47] Tang C S, Yang C C. Collection and identification of allelopathic compounds from the undisturbed root system of biganlta limpograss (Hemarthria altissima) [J].Plant Physiology,1982,69(1):155- 160.
    [48] 张凤丽,周宝利,王茹华等. 嫁接茄子根系分泌物的化感效应[J].应用生态学报,2005,(4).750-753.
    [49] 苗玉新. 大田作物根系研究法概述[J].黑龙江农业科学,2005,(3):50-52.
    [50] Marscher H. Mineral in High Plant[M]. London; Academic Press,1995.23-50.
    [51] 曾任森,林象联,骆世明等.蟛蜞菊的生化他感作用及生化他感作用物的分离鉴定[J].生态学报, 1996,16(1):20-27.
    [52] Ma J F, Zheng S J, Matsumoto H. Specific secretion of citric acid induced by Al stress in Cassia tora L. [J].Plant Cell Physiology,1997,38(9):1019-1025.
    [53] Shen H. Isolation and identification of specific root exudates in elephant grass (Pennis lium L.) in response to aluminum-and iron-bound phosphates [J]. Journal of Plant Nutrition, 2001,24(7): 1131- 1144.
    [54] Pronin V A. The technique for investigation of root exudates of higher plants [J]. Fiziologiya- Rastenii, 1973,20(1):210-214.
    [55] 刘秀芬,马瑞霞,袁光林等. 根际他感化学物质的分离、鉴定与生物活性的研究[J].生态学报, 1996, 16(1):1-10.
    [56] Lipton D S, Blanchar R W, Blevins D G. Citrate, malate and succinate concentration in exudates from P-sufficient and P-stressed Medicago sativa L seedlings[J]. Plant physiology, 1987,85 (2): 315-317.
    [57] 贾黎明,冯菊芬,文学军等. 循环水根系分泌物收集技术的研究及应用[J].北京林业大学学报, 2003,(6).6-10.
    [58] 孔垂华,徐效华,梁文举等. 水稻化感品种根分泌物中非酚酸类化感物质的鉴定与抑草活性[J]. 生态学报,2004,(7):1317-1322.
    [59] 田中民. 缺磷白羽扇豆排根与非排根区根尖分泌物有机酸的比较[J].物生理学报,2000, (4): 317-322.
    [60] Neumann G, Massonneau A, Martinoia E. Physiological adaptations to phosphorus deficiency during proteoid root development in white lupin [J]. Planta, 1999,208(3):373-382.
    [61] 姜培坤. 利用 14C 研究檫树苗根系分泌物[J].福建林学院学报,2000,(4):313-316.
    [62] Mehary A. A Novel of quantifying root exudation in presence of soil microflora [J].Plant and Soil, 1991,133:111-116.
    [63] Bienfait H F, Lubberding H J, Heutink P, et al. Rhizosphere acidification by iron deficient bean plants: the role of trace amounts of divalent metallons. A study on roots of intact plants with the use 11C-and 31P-NMR [J]. Plant Physiology,1989,90(1):359-364.
    [64] Johnson J F, Allan D L, Vance C P, et al. Root carbon dioxide fixation by phosphorus-deficient Lupinus albus(contribution to organic acid exudation by proteoid roots)[J]. Plant Physiology, 1996,112(1):19-30.
    [65] Johnson J F, Vance C P, Allan D L. Phosphorus deficiency in Lupinus albusL. Altered lateral root development and enhanced expression of phosphoenolpyruvate carboxylase [J]. Plant Physiology, 1996,112(1):31-41 .
    [66] Whitehead D C, Bound phenolic compounds in wheat extracts of soil, plant roots and leaf litter [J]. Soil Biol & Biochem,1983,15(2):133-136 .
    [67] 郜红建,常江,张自立等. 研究植物根系分泌物的方法[J].植物生理学通讯, 2003, 39(1):56-60.
    [68] 王大力,祝心如. 豚草的化感作用研究[J].生态学报,1996,16(1):11-19.
    [69] 马瑞霞,刘秀芬,袁光林等. 小麦根区微生物分解小麦残体产生的化感物质及其生物活性的研究[J].生态学报,1996,16(6):632-639.
    [70] Vance G F, Mokma D L,.Boyd S A. Phenolic compounds in soils of hydrosequences and developmental sequences of spodosols[J].Soil Science Society America Journal,1986,50:992-996
    [71] 方会群. 仪器分析原理[M].南京:南京大学出版社,1996,219-306.
    [72] 王立清.柳条的浸出液可以替代生长素[J].园林,1986,(6):28-29.
    [73] 阎飞,杨振明,韩丽梅. 植物化感作用(Allelopathy)及其作用物的研究方法[J].生态学报, 2000, 20(4):692-696.
    [74] 曾任森. 化感作用研究中的生物测定方法综述[J].应用生态学报,1999,10(1):123-126.
    [75] Leather G R, Einhellig F A. Bioassay in the study of allelopathy[A]. In: Putnam A R and Tang C S(ed). The Science of Allelopathy[C]. New York:John Willy and Sons,1986,133-145.
    [76] Mortley D G, Loretan P A, Hill W A ,et al. Biocompatibility of sweetpotato and peanut in a hydroponic system. Hortscience. 1998,33(7):1147-1149.
    [77] 沈 宏 , 严 小 龙 . 根 分 泌 物 研 究 现 状 及 其 在 农 业 与 环 境 领 域 的 应 用 [J]. 农 村 生 态 环境,2000,16(3):51-54.
    [78] Cochran,D.N.et al.1977.The prduction of phytotoxins from surface crop residues.Soil Sci.Soc.Amer.Proc.,41:903-908.
    [79] Anderson,R.C.and Loucks,O.L.1966.Osmotic pressure influence in germination test for antibiosis.Science,152:771-773.
    [80] 曾任森,骆世明.香茅、胜红蓟和三叶鬼针草植物他感作用的研究[J].华南农业大学学报,1993,16(4):69-72.
    [81] 穆 鼎.观赏百合[M].北京:中国农业出版社,2005:157.
    [82] 樊金萍,车代弟.百合切花生产现状及市场前景[J].北方园艺,2003(3):48-49.
    [83] 王燕.我们百合产业现状及其发展对策[J].湖南农业科学,2007,(5):150-152,156.
    [84] 张国军.关于沈阳地区东方百合生产现状及发展的探讨[J].中国农村小康科技,2006(7):53.
    [85] 刘润萍,王保福.兰州市百合产业发展现状与对策[J].中国农学通报,2004,20(4):219-222.
    [86] 郭志刚,张伟编著.切花生产技术丛书—球根类[M].北京:清华大学出版社,1999.
    [87] 穆鼎.我国百合花生产的技术问题[J].花卉园艺:31-33.
    [88] 刘利初,周新华,李强等.百合生产中存在的问题与对策[J].中国农技推广,2005(10):38-39.
    [89] 易先正.园林植物配植中应充分重视生化他感作用的影响[J].
    [90] 杨湘,赵兰枝,牛秀艳等.月季水提物对月季幼苗生长的影响[J].山东林业科技,2007(6):51-52.
    [91] Bais H P,Vepachedu R,Gilroys,et al.Alleopathy and exotic plant invasion:from molecules and genes to species interactions[J].Science,2003,301:1377-1380.
    [92] Karin,K.and K.Kaul.Autotoxicity in Tagetes erecta L.on its own germination and seedling growth[J].Allelopathy Journal,2000,7(1):109-113.
    [93] Maruthi,V.and N.Sankaran.Allelopathic effects of sunflower-review[J].Agricultural reviews,2001,22 (1):57-60
    [94] 董沁方,程智慧.百合地上部分水浸液的化感效应研究[J].西北农业学报,2006,15(2):144-147,151.
    [95] 耿广东.辣椒(Capsicum annuum L.)化感作用及其机理研究[D].西北农林科技大学博士学位论文.陕西杨凌:西北农林科技大学,2005.
    [96] Williamson GB.Bioassays for allelopathy measuring treatment responses with independent controls[J].J Chem Ecol.1988,14(1):181-187.
    [97] 韩丽梅 , 王树起 , 鞠会艳 . 大 豆根分泌 物的鉴定 及其化感 作用的初步研究 [J]. 大豆科学,2000,19(2):119-125.
    [98] 江贵波,曾任森.化感物质及其收集方法综述[J].河南农业科学,2006,6:21-27.
    [99] 戚建华,梁银丽,梁宗锁.农业生态系统中化感作用研究综述[J].西北农业学报,2004,13(2):115-118.
    [100] 曾任森.化感作用研究中的生物测定方法综述[J].应用生态学报,1999,10(1)∶123- 126.
    [101] 北京农业大学植保系植物生态病理教研室.植物根际生态学与根病生物防治进展[M]北京:中国人民大学出版社, 1991:44-95.
    [102] 张学文,刘亦学,刘万学,万方浩,张 惟,杨秀荣.植物化感物质及其释放途径[J].中国农学通报,2007,23(7): 295-297.
    [103] 阎秀峰,王 洋,李一蒙.植物次生代谢及其与环境的关系[J].生态学报,2007,27(6):2554-2561.
    [104] 胡飞,孔垂华.胜红蓟化感作用研究 Ⅰ.水溶物的化感作用及其化感物质分离鉴定[J]1997,8(3),: 304-308.
    [105] Wu H, Pratley J, LemerleD, et al. Crop cultivarswith allelopathy capacity. Weed Research, 1999, 39: 171-180.
    [106] 董沁方.百合植株水浸液及根系分泌物的化感作用研究[D].西北农林科技大学硕士学位论文.陕西杨凌:西北农林科技大学,2006.
    [107] 程 爱 芳 . 百 合 (Lilium spp) 的 组 培 快 速 繁 殖 技 术 研 究 [J]. 武 汉 生 物 功 能 陈 学 院 学报,2006,2(1):27-29.
    [108] 王爱勤,何龙飞,温庆兰等.百合组培中鳞片处理及其颜色变化与鳞茎形成的关系[J].园艺学报,2004,31(1):117-119.
    [109] 汉晓红.百合种球组培快繁技术[J].甘肃农业科技,2000(11):42.
    [110] 张行峰.使用农化分析[M].北京:化学工业出版社,2005.
    [111] 邹帮基译.栽培植物营养诊断分析测定法[M].北京:农业出版社,1984.
    [112] 高俊凤.植物生理学实验技术[M].西安:世界图书出版社,2000.
    [113] 童富淡,胡家恕,陈进红等.不同育秧方式对旱稻叶片 SOD 活性、电解质渗透率和发根力的影响[J].浙江农业大学学报,1997,23(6):682-686.
    [114] 中科院上海植物生理研究所编.现代植物生理学实验指南[M].北京:科学出版社,1999.
    [115] 刘鸿先,曾韶西,王以柔等.低温对不同耐寒力的黄瓜幼苗子叶各细胞器中 SOD 的影响[J].植物生理学报,1985,11(1):48-57.
    [116] 杨广超,吕卫光,朱静等.西瓜根、茎、叶水浸提液对西瓜种子萌发及幼苗中酶活性的影响[J].西北农业学报,2005,14(1):46-51.
    [117] 王峥,车淑红,李小娟等.油菜中过氧化物酶及相关生化指标的研究[J].河南师范大学学报(自然科学版),2007,35(1):167-169.
    [118] 王林嵩,车淑红,李小娟等.外源过氧化物酶对黄瓜果实抗氧化酶体系的影响[J].西北农业学 报,2007,16(6):159-163.
    [119] 王林嵩,车淑红,李小娟等.3 种十字花科植物花期若干生化指标的比较[J].河南农业科学,2007(11):91-94.
    [120] 杜英君,靳月华.连作大豆植株化感作用的模拟研究[J].应用生态学报,1999,10(2):209-212.
    [121] 甄文超 , 曹克强 , 代丽等 . 连作草莓根系分泌物自毒作用的模拟研究 [J]. 植物生态学报,2004,28(6):828-832.
    [122] 高志华,张学英,葛会波等.草莓根系分泌物障碍效应的模拟研究[J].植物营养与肥料学报,2008,14(1):189-193.
    [123] 周艳利,程智慧,孟焕文等.大蒜根系分泌物对不同受体蔬菜的化感作用[J].应用生态学报,2007,18(1):81-86.
    [124] 杨瑞吉.油菜根系分泌物对不同作物幼苗生长的化感效应[J].生态环境,2006,15(5):1062-1066.
    [125] 赵红梅,杨顺义,郭鸿儒等.黄花蒿等.黄花蒿对 4 种受体植物的化感作用研究[J].西北植物学报,2007,27(11):2292-2297.
    [126] 齐泽民,卿东红.根系分泌物及其生态效应[J].内江师范学院学报,2005,20(2):68-74.
    [127] 王玉萍,赵杨景,邵迪等.西洋参根系分泌物的初步研究[J].中国中药杂志,2005,30(3):229-231.
    [128] 柴强,黄高宝,黄鹏等.鹰咀豆根系分泌物的分离鉴定及典型分泌物苯甲醛的化感效应[J].草业学报,2005,14(1):106-111.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700