首页> 美国卫生研究院文献>PLoS Clinical Trials >Quantitative trait locus analysis for spikelet shape-related traits in wild wheat progenitor Aegilops tauschii: Implications for intraspecific diversification and subspecies differentiation
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Quantitative trait locus analysis for spikelet shape-related traits in wild wheat progenitor Aegilops tauschii: Implications for intraspecific diversification and subspecies differentiation

机译:野生小麦祖先节节菜小穗形状相关性状的数量性状基因座分析:对种内多样化和亚种分化的影响。

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摘要

Wild diploid wheat Aegilops tauschii, the D-genome progenitor of common wheat, carries large genetic variation in spikelet and grain morphology. Two differentiated subspecies of Ae. tauschii, subspecies tauschii and strangulata, have been traditionally defined based on differences in spikelet morphology. Here, we first assessed six spikelet shape-related traits among 199 Ae. tauschii accessions, and found that the accessions belonging to TauL1major lineage produced significantly longer spikes, higher spikelet density, and shorter, narrower spikelets than another major lineage, TauL2, in which the strangulata accessions are included. Next, we performed quantitative trait locus (QTL) analysis of the spikelet and grain shape using three mapping populations derived from interlineage crosses between TauL1 and TauL2 to identify the genetic loci for the morphological variations of the spikelet and grain shape in Ae. tauschii. Three major QTL regions for the examined traits were detected on chromosomes 3D, 4D and 7D. The 3D and 4D QTL regions for several spikelet shape-related traits were conserved in the three mapping populations, which indicated that the 3D and 4D QTLs contribute to divergence of the two major lineages. The 7D QTLs were found only in a mapping population from a cross of the two subspecies, suggesting that these 7D QTLs may be closely related to subspecies differentiation in Ae. tauschii. Thus, QTL analysis for spikelet and grain morphology may provide useful information to elucidate the evolutionary processes of intraspecific differentiation.
机译:野生二倍体小麦Aegilops tauschii是普通小麦的D基因组祖先,在小穗和籽粒形态上具有较大的遗传变异。 AE的两个不同的亚种。 tauschii,tauschii和strangulata亚种在传统上是根据小穗形态的差异来定义的。在这里,我们首先评估了199 Ae中的六个与小穗形状相关的性状。 tauschii的种质,发现TauL1主要系的种质产生的穗比其他主要系TauL2显着更长的穗,更高的小穗密度和更短,更窄的小穗。接下来,我们使用来自TauL1和TauL2之间的种系间杂交的三个作图种群,对小穗和晶粒形状进行了定量性状基因座(QTL)分析,以确定Ae中小穗和晶粒形状的形态变异的遗传位点。陶希在3D,4D和7D染色体上检测到三个主要的QTL特征。在三个测绘种群中,几个小穗形状相关性状的3D和4D QTL区域是保守的,这表明3D和4D QTL有助于两个主要谱系的发散。仅在来自两个亚种的杂交的作图种群中发现了7D QTL,这表明这些7D QTL可能与Ae中的亚种分化密切相关。陶希因此,对小穗和籽粒形态的QTL分析可提供有用的信息,以阐明种内分化的进化过程。

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