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通过基因的分子标记辅助导入培育对稻瘟病具有持久广谱抗性的水稻品种

Development of Rice Variety With Durable and Broad-Spectrum Resistance to Blast Disease Through Marker-Assisted Introduction of Gene.

作者信息

Feng Zhiming, Li Mingyou, Xu Zhiwen, Gao Peng, Wu Yunyu, Wu Keting, Zhao Jianhua, Wang Xiaoqiu, Wang Jianan, Li Mengchen, Hu Keming, Chen Hongqi, Deng Yiwen, Li Aihong, Chen Zongxiang, Zuo Shimin

机构信息

Key Laboratory of Plant Functional Genomics of the Ministry of Education/Jiangsu Key Laboratory of Crop Genomics and Molecular Breeding, Agricultural College of Yangzhou University, Yangzhou, China.

Co-innovation Center for Modern Production Technology of Grain Crops of Jiangsu Province/Key Laboratory of Crop Genetics and Physiology of Jiangsu Province, Yangzhou University, Yangzhou, China.

出版信息

Front Plant Sci. 2022 Jul 22;13:937767. doi: 10.3389/fpls.2022.937767. eCollection 2022.

Abstract

Rice blast, caused by (), is one of the most destructive diseases threatening rice production worldwide. Development of resistant cultivars using broad-spectrum resistance () genes with high breeding value is the most effective and economical approach to control this disease. In this study, the breeding potential of gene in / rice breeding practice in Jiangsu province was comprehensively evaluated. Through backcross and marker-assisted selection (MAS), was introduced into two rice cultivars (Wuyungeng 32/WYG32 and Huageng 8/HG8). In each genetic background, five advanced backcross lines with (ABLs) and the same genotypes as the respective recurrent parent in the other 13 known gene loci were developed. Compared with the corresponding recurrent parent, all these ABLs exhibited stronger resistance in seedling inoculation assay using 184 isolates collected from rice growing regions of the lower region of the Yangtze River. With respect to panicle blast resistance, all ABLs reached a high resistance level to blast disease in tests conducted in three consecutive years with the inoculation of seven mixed conidial suspensions collected from different regions of Jiangsu province. In natural field nursery assays, the ABLs showed significantly higher resistance than the recurrent parents. No common change on importantly morphological traits and yield-associated components was found among the ABLs, demonstrating the introduction of had no tightly linked undesirable effect on rice economically important traits and its associated grain weight reduction effect could be probably offset by others grain weight genes or at least in the background of the aforementioned two varieties. Notably, one rice line with , designated as Yangnonggeng 3091, had been authorized as a new variety in Jiangsu province in 2021, showing excellent performance on both grain yield and quality, as well as the blast resistance. Together, these results suggest that the gene has a high breeding value in developing rice varieties with durable and broad-spectrum resistance to blast disease.

摘要

稻瘟病由()引起,是全球威胁水稻生产的最具破坏性的病害之一。利用具有高育种价值的广谱抗性()基因培育抗病品种是控制该病最有效且经济的方法。本研究全面评估了基因在江苏省/水稻育种实践中的育种潜力。通过回交和标记辅助选择(MAS),将基因导入两个水稻品种(武运粳32号/WYG32和华粳8号/HG8)。在每个遗传背景下,培育出了五个携带(ABLs)且在其他13个已知基因位点上与各自轮回亲本基因型相同的高代回交系。与相应的轮回亲本相比,所有这些ABLs在使用从长江下游水稻种植区收集的184个分离株进行的苗期接种试验中表现出更强的抗性。在穗颈瘟抗性方面,在连续三年用从江苏省不同地区收集的七种混合分生孢子悬浮液进行接种的试验中,所有ABLs对稻瘟病均达到高抗水平。在自然田间苗圃试验中,ABLs表现出比轮回亲本显著更高的抗性。在ABLs中未发现重要形态性状和产量相关成分有共同变化,这表明基因的导入对水稻经济重要性状没有紧密连锁的不良影响,其相关的粒重降低效应可能被其他粒重基因抵消,或者至少在上述两个品种的背景下是这样。值得注意的是,一个携带基因的水稻品系,命名为扬农粳3091,于2021年在江苏省被审定为新品种,在产量、品质以及稻瘟病抗性方面均表现优异。总之,这些结果表明基因在培育对稻瘟病具有持久广谱抗性的水稻品种方面具有很高的育种价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/380b/9354813/dc1475ab83ba/fpls-13-937767-g001.jpg

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