首页 | 本学科首页   官方微博 | 高级检索  
     检索      

利用分子标记辅助选择育种(MAS)技术改良水稻恢复系粤恢826
引用本文:刘维,何秀英,廖耀平,程永盛,卢东柏,陆展华,陈钊明,陈粤汉.利用分子标记辅助选择育种(MAS)技术改良水稻恢复系粤恢826[J].南方农业学报,2017,48(10):1748-1754.
作者姓名:刘维  何秀英  廖耀平  程永盛  卢东柏  陆展华  陈钊明  陈粤汉
作者单位:广东省农业科学院 水稻研究所/广东省水稻育种新技术重点实验室,广州,510640
基金项目:广东省科技计划项目,广东省农业科学院院长基金项目
摘    要:目的]改良杂交稻恢复系粤恢826,以提高其稻瘟病和白叶枯病抗性,改良米质,为选育抗病、优质的杂交稻组合提供良好亲本材料.方法]以含稻瘟病抗性基因Pi1和Pi2、白叶枯病抗病基因Xa23及蜡质基因Wx的中间材料Z1103为供体亲本,杂交水稻强恢复系粤恢826为受体亲本,利用分子标记辅助选择(MAS)技术和系谱选育方法,聚合4个外源基因以改良粤恢826的抗病性和米质,并进行稻瘟病和白叶枯病抗性及米质鉴定.结果]经SSR分子标记检测、田间抗病性及米质鉴定,获得以粤恢826为遗传背景且含有目标基因的6个改良株系,通过农艺性状筛选与恢复力测试,优选到一个含有Pi1、Xa23和Wx基因的纯合株系,其恢复力好,农艺性状优良,2014年早造定名为粤恢88,其田间鉴定稻瘟病抗性3级,白叶枯病抗性1级,米质为软米.2014年晚造与两系不育系Y58S配制杂交稻组合Y两优88,其在品比试验中产量达6543 kg/ha,比对照深两优58香油占增产4.97%,未达显著水平(P>0.05),且抗稻瘟病,中抗白叶枯病,米质鉴定为国优3级和省优3级.结论]MAS技术可有效聚合多基因(Pi1、Xa23和Wx基因),使粤恢826的稻瘟病和白叶枯病抗性及米质明显改良,获得抗稻瘟病、高抗白叶枯病、米质为软米的新恢复系粤恢88,为选育抗病优质的杂交稻组合提供良好亲本材料.

关 键 词:水稻    稻瘟病    白叶枯病    米质    基因    分子标记辅助选择育种(MAS)

Improving rice restorer line Yuehui 826 by marker-assisted selection(MSA)breeding technology
LIU Wei,HE Xiu-ying,LIAO Yao-ping,CHENG Yong-sheng,LU Dong-bo,LU Zhan-hua,CHEN Zhao-ming,CHEN Yue-han.Improving rice restorer line Yuehui 826 by marker-assisted selection(MSA)breeding technology[J].Journal of Southern Agriculture,2017,48(10):1748-1754.
Authors:LIU Wei  HE Xiu-ying  LIAO Yao-ping  CHENG Yong-sheng  LU Dong-bo  LU Zhan-hua  CHEN Zhao-ming  CHEN Yue-han
Abstract:Objective]Hybrid rice restorer line Yuehui 826 was improved to increase its resistance to rice blast and bacterial blight and enhance the rice quality in order to provide parent for hybrid rice combination with disease resistance.Method]Material Z1103 with rice blast resistant genes Pi1 and Pi2,bacterial blight resistant genes Xa23 and waxy gene Wx was donor parent,and hybrid rice restorer line Yuehui 826 was receptor parent. Molecular marker assisted selection technique and pedigree breeding were combined to improve disease resistance and rice quality of Yuehui 826 with four exogenous genes. The resistance to rice blast and bacterial blight,and rice quality were also detected.Result]Through SSR molecular marker detection,rice quality analysis and field resistance identification,six improved inbred lines with Yuehui 826 as genetic background containing target genes were obtained. Through the further agronomic traits screening and restoring ability test,a soft rice strain containing genes Pi1,Xa23 and Wx was selected and named Yuehui 88 in the early season of 2014. Its restoring ability and agronomic traits were excellent. Its identified resistance to rice blast was grade 3 and bacterial blight grade 1 in field. In the late season of 2014,Yuehui 88 crossed with two-line sterility line Y58S and obtained hybrid rice combination Y Liangyou 88,which was resistant to rice blast and moderately resistant to bacterial blight. Its yield in trial reached 6543 t/ha,increased by 4.97%compared with control Shenliangyou 58 xiangyou-zhan,but the difference was insignificant(P>0.05). The rice quality was identified as national quality grade 3 and provin-cial quality grade 3.Conclusion]MAS technology can effectively realize multi-gene polymerization(genes Pi1,Xa23 and Wx),improve resistance of Yuehui 826 to rice blast and bacterial blight and optimize rice quality. Moreover,the new restorer Yuehui 88 is obtained to provide parent materials for quality hybrid combination which are resistant to diseases. Yuehui 88 is soft rice with resistance to rice blast and strong resistance to bacterial blight.
Keywords:rice  rice blast  bacterial blight  rice quality  gene  marker-assisted selection(MAS)
本文献已被 CNKI 万方数据 等数据库收录!
点击此处可从《南方农业学报》浏览原始摘要信息
点击此处可从《南方农业学报》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号