首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Identification of novel quantitative trait loci for days to ear emergence and flag leaf glaucousness in a bread wheat (Triticum aestivum L.) population adapted to southern Australian conditions.
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Identification of novel quantitative trait loci for days to ear emergence and flag leaf glaucousness in a bread wheat (Triticum aestivum L.) population adapted to southern Australian conditions.

机译:在适应澳大利亚南部条件的面包小麦( Triticum aestivum L.)群体中,确定出穗天数和旗叶含糖度的新数量性状基因座。

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In southern Australia, where the climate is predominantly Mediterranean, achieving the correct flowering time in bread wheat minimizes the impact of in-season cyclical and terminal drought. Flag leaf glaucousness has been hypothesized as an important component of drought tolerance but its value and genetic basis in locally adapted germplasm is unknown. From a cross between Kukri and RAC875, a doubled-haploid (DH) population was developed. A genetic linkage map consisting of 456 DArT and SSR markers was used to detect QTL affecting time to ear emergence and Zadoks growth score in seven field experiments. While ear emergence time was similar between the parents, there was significant transgressive segregation in the population. This was the result of segregation for the previously characterized Ppd-D1a and Ppd-B1 photoperiod responsive alleles. QTL of smaller effect were also detected on chromosomes 1A, 4A, 4B, 5A, 5B, 7A and 7B. A novel QTL for flag leaf glaucousness of large, repeatable effect was detected in six field experiments, on chromosome 3A (QW.aww-3A) and accounted for up to 52 percent of genetic variance for this trait. QW.aww-3A was validated under glasshouse conditions in a recombinant inbred line population from the same cross. The genetic basis of time to ear emergence in this population will aid breeders' understanding of phenological adaptation to the local environment. Novel loci identified for flag leaf glaucousness and the wide phenotypic variation within the DH population offers considerable scope to investigate the impact and value of this trait for bread wheat production in southern Australia.
机译:在南部气候主要为地中海的澳大利亚南部,在面包小麦上达到正确的开花时间可以最大程度地减少季节性周期性干旱和终末干旱的影响。剑叶的含糖度被认为是抗旱性的重要组成部分,但其在当地适应种质中的价值和遗传基础尚不清楚。从库克里(Kukri)和RAC875之间的杂交中,发展了一个双单倍体(DH)种群。在七个野外实验中,使用由456个DArT和SSR标记组成的遗传连锁图谱来检测QTL影响耳朵出现的时间和Zadoks生长分数。尽管父母之间的出耳时间相似,但人口中存在明显的海侵隔离。这是先前表征的 Ppd-D1a 和 Ppd-B1 光周期反应性等位基因分离的结果。在1A,4A,4B,5A,5B,7A和7B染色体上也检测到了较小的QTL。在六个田间实验中,在3A染色体( QW.aww-3A )上检测到了一种新的QTL,它对旗叶的含冰量具有可重复的大作用,占该性状遗传变异的52%。在温室条件下,在同一杂交的重组自交系种群中验证了 QW.aww-3A 。该种群出现耳的时间的遗传基础将有助于育种者了解物候适应当地环境的情况。在DH群体中发现的标记叶光泽度和广泛的表型变异的新基因座为调查此性状对澳大利亚南部面包小麦生产的影响和价值提供了相当大的空间。

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