首页> 外文期刊>Genes >Genetic Dissection of Azuki Bean Weevil ( Callosobruchus chinensis L.) Resistance in Moth Bean ( Vigna aconitifolia [Jaqc.] Maréchal)
【24h】

Genetic Dissection of Azuki Bean Weevil ( Callosobruchus chinensis L.) Resistance in Moth Bean ( Vigna aconitifolia [Jaqc.] Maréchal)

机译:蛾豆(Vigna aconitifolia [Jaqc。]Maréchal)抗性的小豆甲象鼻虫(Callosobruchus chinensis L.)的遗传解剖

获取原文
           

摘要

The azuki bean weevil ( Callosobruchus chinensis L.) is an insect pest responsible for serious postharvest seed loss in leguminous crops. In this study, we performed quantitative trait locus (QTL) mapping of seed resistance to C. chinensis in moth bean ( Vigna aconitifolia [Jaqc.] Maréchal). An F 2 population of 188 plants developed by crossing resistant accession ‘TN67’ (wild type from India; male parent) and susceptible accession ‘IPCMO056’ (cultivated type from India; female parent) was used for mapping. Seeds of the F 2 population from 2014 and F 2:3 populations from 2016 and 2017 were bioassayed with C. chinensis , and the percentage of damaged seeds and progress of infestation severity were measured. Segregation analysis suggested that C. chinensis resistance in TN176 is controlled by a single dominant gene, designated as Rcc . QTL analysis revealed one principal and one modifying QTL for the resistance, named qVacBrc2.1 and qVacBrc5.1 , respectively. qVacBrc2.1 was located on linkage group 2 between simple sequence repeat markers CEDG261 and DMB-SSR160 and accounted for 50.41% to 64.23% of resistance-related traits, depending on the trait and population. Comparative genomic analysis suggested that qVacBrc2.1 is the same as QTL Brc2.1 conferring C. chinensis resistance in wild azuki bean ( V. nepalensis Tateishi and Maxted). Markers CEDG261 and DMB-SSR160 should be useful for marker-assisted selection for C. chinensis resistance in moth bean.
机译:z豆象鼻虫(Callosobruchus chinensis L.)是一种害虫,可导致豆类作物收获后种子严重损失。在这项研究中,我们对蛾豆(Vigna aconitifolia [Jaqc。]Maréchal)种子对中华绒螯蟹的抗性进行了数量性状基因座(QTL)作图。通过杂交抗性品种“ TN67”(印度的野生型;雄性亲本)和易感品种“ IPCMO056”(印度的培养型;雌性亲本)而发育的188株F 2种群用于作图。用中华梭菌对2014年F 2种群和2016年和2017年F 2:3种群的种子进行生物分析,并测量了受损种子的百分比和侵染程度。分离分析表明,TN176中的中华棉。抗性受单个显性基因(称为Rcc)控制。 QTL分析显示该抗性的一个主要原理和一个修饰的QTL,分别称为qVacBrc2.1和qVacBrc5.1。 qVacBrc2.1位于简单序列重复标记CEDG261和DMB-SSR160之间的连锁组2上,取决于性状和种群,其占抗性相关性状的50.41%至64.23%。比较基因组学分析表明,qVacBrc2.1与赋予野生小豆(V. nepalensis Tateishi和Maxted)抗中华梭菌的QTL Brc2.1相同。标记CEDG261和DMB-SSR160可用于标记辅助选择,以防蛀豆中的C. chinensis。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号