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首页> 外文期刊>Genetical Research >A novel bacterial blight resistance gene from Oryza nivara mapped to 38 kb region on chromosome 4L and transferred to Oryza sativa L
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A novel bacterial blight resistance gene from Oryza nivara mapped to 38 kb region on chromosome 4L and transferred to Oryza sativa L

机译:水稻新的抗白叶枯病基因定位到4L染色体38 kb区域并转移至水稻

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Bacterial blight (BB) of rice caused by Xanthomonas oryzae pv oryzae (Xoo) is one of the major constraints to productivity in South-East Asia. The strategy of using major genes, singly or in combination, continues to be the most effective approach for BB management. Currently, more than two dozen genes have been designated but not all the known genes are effective against all the prevalent pathotypes. The challenge, therefore, is to continue to expand the gene pool of effective and potentially durable resistance genes. Wild species constitute an important reservoir of the resistance genes including BB. An accession of Oryza nivara (IRGC 81825) was found to be resistant to all the seven Xoo pathotypes prevalent in northern states of India. Inheritance and mapping of resistance in O. nivara was studied by using F2, BC2F2, BC3F1 and BC3F2 progenies of the cross involving Oryza sativa cv PR114 and the O. nivara acc. 81825 using the most virulent Xoo pathotype. Genetic analysis of the segregating progenies revealed that the BB resistance in O. nivara was conditioned by a single dominant gene. Bulked segregant analysis (BSA) of F2 population using 191 polymorphic SSR markers identified a approximately 35 centiMorgans (cM) chromosomal region on 4L, bracketed by RM317 and RM562, to be associated with BB resistance. Screening of BC3F1 and BC2F2 progenies and their genotyping with more than 30 polymorphic SSR markers in the region, covering Bacterial artificial chromosome (BAC) clone OSJNBb0085C12, led to mapping of the resistance gene between the STS markers based on annotated genes LOC_Os04g53060 and LOC_Os04g53120, which is approximately 38.4 kb. Since none of the known Xa genes, which are mapped on chromosome 4L, are effective against the Xoo pathotypes tested, the BB resistance gene identified and transferred from O. nivara is novel and is tentatively designated as Xa30(t). Homozygous resistant BC3F3 progenies with smallest introgression region have been identified.
机译:水稻黄单胞菌(Xanthomonas oryzae pv oryzae)造成的水稻白叶枯病(BB)是东南亚生产力的主要制约因素之一。单独或组合使用主要基因的策略仍然是BB管理最有效的方法。目前,已经指定了两个以上的基因,但是并不是所有已知的基因都能有效对抗所有流行的病态型。因此,挑战是继续扩大有效的和可能持久的抗性基因的基因库。野生物种构成了包括BB在内的抗性基因的重要储存库。发现印度稻(Oryza nivara)(IRGC 81825)对印度北部各州普遍存在的所有七个Xoo病状均具有抗性。利用水稻(Oryza sativa cv PR114)和O. nivara acc杂交后代的F2,BC2F2,BC3F1和BC3F2后代研究了O. nivara抗性的遗传和定位。 81825使用最强毒的Xoo原型。分离后代的遗传分析表明,在O. nivara中,BB的抗性受单个显性基因的调节。使用191个多态性SSR标记对F2群体进行的批量隔离分析(BSA)发现,在4L上大约35厘摩(cM)染色体区域,由RM317和RM562包围,与BB耐药相关。 BC3F1和BC2F2子代的筛选以及在该区域覆盖细菌人工染色体(BAC)克隆OSJNBb0085C12的30多个多态性SSR标记的基因分型,导致基于注释基因LOC_Os04g53060和LOC_Os04g53的STS标记之间的抗性基因作图大约38.4 kb。由于定位在4L染色体上的已知Xa基因均不能有效对抗所测试的Xoo病态,因此从O. nivara鉴定并转移的BB抗性基因是新颖的,暂定为Xa30(t)。已经鉴定出具有最小渐渗区域的纯合抗性BC3F3后代。

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