Molecular mapping of resistance gene to the English grain aphid, Sitobion avenae, in a Chinese wheat line XN98-10-35
详细信息    查看全文
  • 作者:Chunping Wang ; Kun Luo ; Liming Wang ; Huiyan Zhao ; Gaisheng Zhang
  • 关键词:Triticum aestivum L. ; Sitobion avenae ; Simple sequence repeat (SSR) marker
  • 刊名:Molecular Breeding
  • 出版年:2015
  • 出版时间:November 2015
  • 年:2015
  • 卷:35
  • 期:11
  • 全文大小:640 KB
  • 参考文献:Alkhedir H, Karlovsky P, Vidal S (2010) Effect of light intensity on colour morph formation and performance of the grain aphid Sitobion avenae F. (Homoptera: Aphididae). J Insect Physiol 56:1999鈥?005CrossRef PubMed
    Burd JD, Porter DR (2006) Biotypic diversity in greenbug (Hemiptera: Aphididae): characterizing new virulence and host associations. J Econ Entomol 99:959鈥?65CrossRef PubMed
    Crespo-Herrera LA, Akhunov E, Garkava-Gustavsson L, Jordan KW, Smith CM, Singh RP, 脜hman I (2014) Mapping resistance to the bird cherry-oat aphid and the greenbug in wheat using sequence-based genotyping. Theor Appl Genet 127:1963鈥?973CrossRef PubMed
    Dai XM, Zhang QQ (1997) Utilization of the wheat breeding in Ae. squarrosa and Ae. ventricosa. Tritical Crops 4:1鈥?
    Delp G, Gradin T, 脜hman I, Jonsson LMV (2009) Microarray analysis of the interaction between the aphid Rhopalosiphum padi and host plants reveals both differences and similarities between susceptible and partially resistant barley lines. Mol Genet Genomics 281:233鈥?48CrossRef PubMed
    Dogimont C, Bendahmane A, Chovelon V, Boissot N (2010) Host plant resistance to the wheat grain aphid in cultivated crops: genetic and molecular bases, and interactions with aphid populations. CR Biol 333:566鈥?73CrossRef
    Duan CX, Wang XM, Zhu ZD (2006) Screening and evaluation of wheat germplasm for resistance to the aphid (Sitobion avenae). J Plant Genet Res 7:297鈥?00
    Fu J, Zhang SH, Wen SM, Yang XJ (2008) SSR markers linked to a wheat aphid resistance gene. J Agric Univ Hebei 31(5):1鈥?
    Hou L (2008) Genetic analysis and SSR mapping of stripe rust resistance of Triticum aestivum Hayaldia villosa translocation lines. Northwest A&F University, Yangling
    Hu BF (2009) Localization of spring wheat resistance to Sitobion avenae. Gansu Agricultural University, Lanzhou
    Hu XS, Zhao HY, Heimbach U, Thomas T, Li J, Zhang YH, Liu BM, Li DH, Hu ZQ (2004) Study on cereal aphid resistance on three winter wheat cultivars introduced into China. Acta Bot Boreal Occident Sin 24:1221鈥?226
    Joukhadar R, El-Bouhssini M, Jighly A, Ogbonnaya FC (2013) Genome-wide association mapping for five major pest resistances in wheat. Mol Breeding 32:943鈥?60CrossRef
    Kosambi D (1943) The estimation of map distances from recombination values. Ann Eugen 12:172鈥?75CrossRef
    Li H, Ye G, Wang J (2007) A modified algorithm for the improvement of composite interval mapping. Genetics 175:361鈥?74PubMed Central CrossRef PubMed
    Liu XL, Yang XF, Wang CY, Wang YJ, Zhang H, Ji WQ (2012) Molecular mapping of resistance gene to English grain aphid (Sitobion avenae F.) in Triticum durum wheat line C273. Theor Appl Genet 124:287鈥?93CrossRef PubMed
    Meng L, Li HH, Zhang LY, Wang JK (2015) QTL IciMapping: Integrated software for genetic linkage map construction and quantitative trait locus mapping in biparental populations. Crop J 3:269鈥?83CrossRef
    Michelmore R, Paran I, Kesseli R (1991) Identification of markers linked to disease-resistance genes by bulked segregant analysis: a rapid method to detect markers in specific genomic regions by using segregating populations. Proc Natl Acad Sci USA 88:9828鈥?832PubMed Central CrossRef PubMed
    Miller CAA, Lapitan A, Nora L (2001) A microsatellite marker for tagging, a wheat gene conferring resistance to the Russian wheat aphid. Crop Sci 41:1584鈥?589CrossRef
    Ogbonnaya FC, Abdalla O, Mujeeb-Kazi A, Kazi AG, Xu SS, Gosman N, Lagudah ES, Bonnett D, Sorrells ME, Tsujimoto H (2013) Synthetic hexaploids: harnessing species of the primary gene pool for wheat improvement. Plant Breed Rev 37:35鈥?22
    脰zder N (2002) Development and fecundity of Sitobion avenae on some wheat cultivars under laboratory conditions. Phytoparasitica 30:434鈥?36CrossRef
    Painter RH (1958) Resistance of plants to insects. Ann Rev Entomol 3:267鈥?90CrossRef
    Pan JK, Zhang GS, Niu N, Ma LB (2008) Effects of different types of Aegilops cytoplasm on pentosan content in wheat kernels. J Triticeae Crops 28:745鈥?48
    Razmjou J, Ramazani S, Naseri B, Ganbalani GN, Dastjerdi HR (2011) Resistance and susceptibility of various wheat varieties to Sitobion avenae (Hemiptera: Aphididae) in Iran. Appl Entomol Zool 46:455鈥?61CrossRef
    R枚der MS, Korzun V, Wendehake K, Plaschke J, Tixier MH, Leroy P, Ganal MW (1998) A microsatellite map of wheat. Genetics 149:2007鈥?023PubMed Central PubMed
    Sharp PJ, Kreis M, Shewry PR, Gale MD (1988) Location of 尾-amylase sequence in wheat and its relatives. Theor Appl Genet 75:286鈥?90CrossRef
    Singh RP, William HM, Huerta-Espino J, Rosewarne G (2004) Wheat rust in Asia: meeting the challenges with old and new technologies. In: Proceedings of the 4th international crop science congress, 26 Sep鈥? Oct, 2004, Brisbane, Australia
    Somers DJ, Isaac P, Edwards K (2004) A high density microsatellite consensus map for bread wheat (Triticum aestivum L.). Theor Appl Genet 109:1105鈥?114CrossRef PubMed
    Sourdille P, Singh S, Cadalen T, Gina L, Guedira B, Gay G, Bikram Qi LL, Gill S (2004) Microsatellite-based deletion bin system for the establishment of genetic-physical map relationships in wheat (Triticum aestivum L.). Funct Integr Genomics 4:12鈥?5CrossRef PubMed
    van Emden HF, Harrington R (2007) Aphids as crop pests. CAB International, Oxfordshire, pp 1鈥?9CrossRef
    Wang CP, Luo K, Zhao HY, Zhang GS, Li D, Gao HH, Deng M, Lan L (2011) Genetic diversity of wheat germplasm resistance to the aphid (Sitobion avenae F.) by SSR markers. JNAS 5:0639鈥?644
    Zhang YJ, Jiang YY, Feng XD, Xia B, Zeng J, Liu Y (2009) Occurring trends of major crop pests in national significances in 2009. China Plant Prot 29:33鈥?5
  • 作者单位:Chunping Wang (1)
    Kun Luo (2)
    Liming Wang (1)
    Huiyan Zhao (2)
    Gaisheng Zhang (2)

    1. College of Agronomy, Henan University of Science and Technology, 70 Tianjing Road, Luoyang, 471003, Henan, China
    2. State Key Laboratory of Crop Stress Biology in Arid Areas, Northwest A&F University, Yangling, 712100, Shaanxi, China
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Life Sciences
    Plant Sciences
  • 出版者:Springer Netherlands
  • ISSN:1572-9788
文摘
The English grain aphid, Sitobion avenae (F.), is a destructive pest in common wheat (Triticum aestivum L.), and it appears in wheat production regions of China and other areas worldwide. Breeding resistant varieties are considered the most effective, economical and environmentally friendly approach to control S. avenae. The synthetic hexaploid wheat line XN98-10-35 showed resistant to S. avenae at all growth stages. To study the genetic control of the aphid resistance, XN98-10-35 was crossed with the susceptible line XN1376. A single dominant resistance gene was detected in BC1, F2, F2:3 and F3:4 genetic populations, temporarily designated as Sa2. By testing 180 F2 plants, 71 F2:3 lines and 16 BC1 plants, the resistance gene in XN98-10-35 was found to be closely linked to the simple sequence repeat markers Xgwm350 and Xbarc70 on wheat chromosome 7DS (deletion line 7DS-5) at genetic distances of 4.7 and 8.9 cM, respectively. It is concluded that Sa2 is a new resistance gene to S. avenae. Our study suggested that the two markers linked to Sa2 can be used in marker-assisted selection to develop new cultivars with resistance to S. avenae. Keywords Triticum aestivum L. Sitobion avenae Simple sequence repeat (SSR) marker

© 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