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Hordeum chilense genome, a useful tool to investigate the endosperm yellow pigment content in the Triticeae

机译:大麦大麦基因组,一种用于研究小麦中胚乳黄色色素含量的有用工具

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Background The wild barley Hordeum chilense fulfills some requirements for being a useful tool to investigate the endosperm yellow pigment content (YPC) in the Triticeae including its diploid constitution, the availability of genetic resources (addition and deletion stocks and a high density genetic map) and, especially, its high seed YPC not silenced in tritordeums (amphiploids derived from H. chilense and wheat). Thus, the aim of this work was to test the utility of the H. chilense genome for investigating the YPC in the Triticeae. Results Twelve genes related to endosperm carotenoid content and/or YPC in grasses (Dxr, Hdr [synonym ispH], Ggpps1, Psy2, Psy3, Pds, Zds, e-Lcy, b-Lcy, Hyd3, Ccd1 and Ppo1) were identified, and mapped in H. chilense using rice genes to identify orthologs from barley, wheat, sorghum and maize. Macrocolinearity studies revealed that gene positions were in agreement in H. vulgare and H. chilense. Additionally, three main regions associated with YPC were identified in chromosomes 2Hch, 3Hch and 7Hch in H. chilense, the former being the most significant one. Conclusions The results obtained are consistent with previous findings in wheat and suggest that Ggpps1, Zds and Hyd3 on chromosome 2Hch may be considered candidate genes in wheat for further studies in YPC improvement. Considering the syntenic location of carotenoid genes in H. chilense, we have concluded that the Hch genome may constitute a valuable tool for YPC studies in the Triticeae.
机译:背景野生大麦大麦满足了作为研究黑麦中胚乳黄色色素含量(YPC)的有用工具的一些要求,包括其二倍体组成,遗传资源的可用性(添加和缺失种群以及高密度遗传图谱)和尤其是,它的高种子幼体在三聚体(来自H. chilense和小麦的二倍体)中没有被沉默。因此,这项工作的目的是为了测试Chilense H. chilense基因组在调查小麦中的YPC的实用性。结果确定了与草中胚乳类胡萝卜素含量和/或YPC相关的十二个基因(Dxr,Hdr [同义词ispH],Ggpps1,Psy2,Psy3,Pds,Zds,e-Lcy,b-Lcy,Hyd3,Ccd1和Ppo1),并使用水稻基因在H. chilense中进行定位,以鉴定来自大麦,小麦,高粱和玉米的直系同源物。宏观线性研究表明,H。vulgare和H. chilense中的基因位置一致。另外,在辣椒的2H ch ,3H ch 和7H ch 染色体中鉴定到了与YPC相关的三个主要区域,前者是最重要的一个。结论获得的结果与以前在小麦中的发现一致,表明2H ch 染色体上的Ggpps1,Zds和Hyd3可能被认为是小麦的候选基因,以进一步研究YPC改良。考虑到辣椒中类胡萝卜素基因的同义位置,我们得出的结论是H ch 基因组可能构成了在小麦中进行YPC研究的有价值的工具。

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