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首页> 外文期刊>Molecular Breeding >Mapping gibberellin-sensitive dwarfing locus Rht18 in durum wheat and development of SSR and SNP markers for selection in breeding
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Mapping gibberellin-sensitive dwarfing locus Rht18 in durum wheat and development of SSR and SNP markers for selection in breeding

机译:在杜兰姆小麦和SSR和SNP标记的开发中映射胃肠杆菌素敏感的野生鹿角螺旋18,用于育种选择

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摘要

Gibberellin-sensitive dwarfing gene Rht18 was mapped in two durum wheat recombinant inbred lines (RIL) populations developed from crosses, Bijaga Yellow/Icaro and HI 8498/Icaro. Rht18 was mapped within genetic interval of 1.8 cM on chromosome 6A. Simple sequence repeat (SSR) markers S470865SSR4, barc37 and TdGA2ox-A9 specific marker showed co-segregation with Rht18 in Bijaga Yellow/Icaro population consisting 256 RILs. Effect of Rht18 on plant height was validated in HI 8498/Icaro RIL population which segregated for Rht18 and Rht-B1b. Rht-B1b from HI 8498 showed pleiotropic effect on plant height and coleoptile length, on the other hand, Rht18 did not show effect on coleoptile length. The SSR and SNP markers linked to Rht18 were also validated by assessing their allelic frequency in 89 diverse durum and bread wheat accessions. It was observed that 204 bp allele of S470865SSR4 could differentiate Icaro from rest of the wheat accessions except HI 8498, suggesting its utility for selection of Rht18 in wheat improvement programs. Rht18 associated alleles of TdGA2ox-A9, IAW4371 and IAW7940 were absent in most of the tall Indian local durum wheat and bread wheat, hence could be used to transfer Rht18 to bread wheat and local durum wheat. SSR marker barc3 showed high recombination frequency with Rht18, though it showed allele unique to Icaro. Since semidwarf wheat with GA-sensitive dwarfing genes are useful in dry environments owing to their longer coleoptile, better emergence and seedling vigor, Rht18 may provide a useful alternative to widely used GA-insensitive dwarfing genes under dry environments.
机译:葛霉素敏感的矮化基因rht18被绘制在来自十字架,Bijaga Yellow / Icaro和Hi 8498 / Icaro的两种杜兰姆小麦重组自交系(RIL)群体中。 rhT18在染色体6a上映射到1.8厘米的遗传间隔内。简单的序列重复(SSR)标记S470865SSR4,BARC37和TDGA2OX-A9特异性标记显示与Bijaga黄色/ icaro种群的RHT18组成256个rils的共析。 rht18对植物高度的影响在Hi 8498 / icaro ril群中验证,用于rht18和rht-b1b进行隔离。来自HI 8498的RHT-B1B对植物高度和植物精益长度的肺炎作用效果,另一方面,rHT18没有显示对植物精光长度的影响。通过评估89种不同的杜伦兰和面包小麦涂抹的等位基因频率,还验证了与RHT18相关的SSR和SNP标记。观察到,除了8498之外,S470865SSR4的204bp等位基因可以将ICARO区分开,尤其是在小麦改善计划中选择RHT18的实用性。 TDGA2OX-A9的RHT18相关等位基因,IAW4371和IAW7940中的大部分高大的印度当地杜伦特小麦和面包小麦都缺席,因此可用于将RHT18转移到面包小麦和当地硬粒小麦。 SSR标记BARC3与RHT18显示出高的重组频率,尽管它向ICARO表示独有的等位基因。由于具有Ga敏感的矮化基因的Semidwarf小麦在干燥环境中,由于它们的植物更长,更好的出苗和幼苗活力,RHT18可以在干燥环境下广泛使用GA - 不敏感的幼苗基因提供有用的替代方案。

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