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首页> 外文期刊>Functional & integrative genomics >Comparative genetic analysis of a wheat seed dormancy QTL with rice and Brachypodium identifies candidate genes for ABA perception and calcium signaling
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Comparative genetic analysis of a wheat seed dormancy QTL with rice and Brachypodium identifies candidate genes for ABA perception and calcium signaling

机译:水稻和短枝小麦对小麦种子休眠QTL的比较遗传分析确定了ABA感知和钙信号传导的候选基因

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Wheat preharvest sprouting (PHS) occurs when seed germinates on the plant before harvest resulting in reduced grain quality. In wheat, PHS susceptibility is correlated with low levels of seed dormancy. A previous mapping of quantitative trait loci (QTL) revealed a major PHS/seed dormancy QTL, QPhs.cnl-2B.1, located on wheat chromosome 2B. A comparative genetic study with the related grass species rice (Oryza sativa L.) and Brachypodium distachyon at the homologous region to the QPhs.cnl-2B.1 interval was used to identify the candidate genes for marker development and subsequent fine mapping. Expressed sequence tags and a comparative mapping were used to design 278 primer pairs, of which 22 produced polymorphic amplicons that mapped to the group 2 chromosomes. Fourteen mapped to chromosome 2B, and ten were located in the QTL interval. A comparative analysis revealed good macrocollinearity between the PHS interval and 3 million base pair (mb) region on rice chromosomes 7 and 3, and a 2.7-mb region on Brachypodium Bd1. The comparative intervals in rice were found to contain three previously identified rice seed dormancy QTL. Further analyses of the interval in rice identified genes that are known to play a role in seed dormancy, including a homologue for the putative Arabidopsis ABA receptor ABAR/GUN5. Additional candidate genes involved in calcium signaling were identified and were placed in a functional protein association network that includes additional proteins critical for ABA signaling and germination. This study provides promising candidate genes for seed dormancy in both wheat and rice as well as excellent molecular markers for further comparative and fine mapping.
机译:小麦收获前发芽(PHS)是指种子在收获前在植物上发芽,导致谷物品质下降。在小麦中,PHS敏感性与种子休眠水平低有关。先前对数量性状基因座(QTL)进行的定位揭示了位于小麦2B号染色体上的主要PHS /种子休眠QTL QPhs.cnl-2B.1。对相关草种水稻(Oryza sativa L.)和Brachypodium distachyon在QPhs.cnl-2B.1区间的同源区域进行了比较遗传研究,以鉴定候选基因用于标记开发和随后的精细定位。表达的序列标签和比较定位用于设计278个引物对,其中22个产生了多态性扩增子,这些扩增子定位到第2组染色体。 14个映射到2B号染色体,其中10个位于QTL区间。一项比较分析显示,PHS区间与水稻第7和3号染色体上的300万个碱基对(mb)区域以及Brachypodium Bd1上的2.7-mb区域之间具有良好的宏观共线性。发现水稻的比较区间包含三个先前确定的水稻种子休眠QTL。水稻间隔的进一步分析鉴定了已知在种子休眠中起作用的基因,包括假定的拟南芥ABA受体ABAR / GUN5的同源物。确定了与钙信号传导有关的其他候选基因,并将其置于功能性蛋白质关联网络中,该网络包括对ABA信号传导和萌发至关重要的其他蛋白质。这项研究为小麦和水稻的种子休眠提供了有希望的候选基因,并为进一步比较和精细作图提供了极好的分子标记。

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