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Genetic analysis of the stem rust resistance genes in synthetic hexaploid wheat (Triticum aestivum) lines

机译:合成六倍体小麦(Triticum aestivum)品系茎锈病抗性基因的遗传分析

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The objective of this investigation was to examine the inheritance of stem rust (Puccinia graminis f. sp. tritici) resistance genes in synthetic hexaploid wheat lines and to identify the allelic relationship among the resistant lines. Genetic basis of stem resistance was studied in Synthetic 4, Synthetic 55, and Synthetic 86 and F-2:3 population, derived from (susceptible cultivar, i.e. Agra local x resistant lines (Synthetic 4, Synthetic 55, and Synthetic 86). Isolate 40A of Puccinia graminis tritici (most prominent stem rust pathotype in India) was used to examine the segregation pattern. The results revealed that resistance in Synthetic 4 and Synthetic 55 for pathotype 40A was governed by a single dominant gene, as F-2 seedlings segregates in a ratio of 3:1. While, resistance in Synthetic 86 was governed by two genes, i.e. one dominant and one recessive gene, as F-2 seedling depicted 13:3 segregation ratio, which further conferred by F-3 family data Allelism studies (using as F-2 population derived from a cross between Synthetic 4 x Synthetic 55), revealed the resistant gene present in these line was same. However, F-2 population derived from Synthetic 4 x Synthetic 86 and Synthetic 55 x Synthetic 86 showed that the resistant gene in Synthetic 86 was different from Synthetic 4 and Synthetic 55 as seedling of F-2 population segregated in ratio of 61:3.
机译:这项研究的目的是检查合成六倍体小麦品系中茎锈病(Puccinia graminis f。sp。tritici)抗性基因的遗传,并确定这些抗性品系之间的等位基因关系。在合成4,合成55,合成86和F-2:3种群中研究了茎抗病的遗传基础,这些种群来自(易感品种,即Agra本地x抗性品系(合成4,合成55和合成86)。用印度小麦​​最主要的茎锈病病菌Puccinia graminis tritici 40A检查分离模式,结果表明,当F-2幼苗分离时,合成4和合成55对40A病原体的抗性由单个显性基因控制。合成86的抗性由两个基因控制,即一个显性基因和一个隐性基因,因为F-2幼苗的分离比为13:3,F-3家族数据Allelism进一步赋予了抗性。研究(作为来自合成4 x合成55之间杂交的F-2种群)揭示了这些品系中存在的抗性基因相同,但是,来自合成4 x合成86和55 x合成86的F-2种群表明合成86的抗性基因不同于合成4和合成55,因为F-2种群的幼苗以61:3的比例分离。

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