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该 qSD12 基因通过促进脱落酸在早期发育种子中的积累来诱导水稻初级休眠。

The qSD12 underlying gene promotes abscisic acid accumulation in early developing seeds to induce primary dormancy in rice.

机构信息

Plant Science Department, South Dakota State University, Brookings, SD 57007, USA.

出版信息

Plant Mol Biol. 2010 May;73(1-2):97-104. doi: 10.1007/s11103-009-9555-1. Epub 2009 Oct 13.

Abstract

Seeds acquire primary dormancy during their development and the phytohormone abscisic acid (ABA) is known to play a role in inducing the dormancy. qSD12 is a major seed dormancy quantitative trait locus (QTL) identified from weedy rice. This research was conducted to identify qSD12 candidate genes, isolate the candidates from weedy rice, and determine the relation of the dormancy gene to ABA. A fine mapping experiment, followed by marker-assisted progeny testing for selected recombinants, narrowed down qSD12 to a genomic region of <75 kb, where there are nine predicted genes including a cluster of six transposon/retrotransposon protein genes and three putative (a PIL5, a hypothetic protein, and a bHLH transcription factor) genes based on the annotated Nipponbare genome sequence. The PIL5 and bHLH genes are more likely to be the QTL candidate genes. A bacterial artificial chromosome (BAC) library equivalent to 8-9 times of the haploid genome size was constructed for the weedy rice. One of the two BAC contigs developed from the library covers the PIL5 to bHLH interval. A pair of lines different only in the QTL-containing region of <200 kb was developed as isogenic lines for the qSD12 dormancy and non-dormancy alleles. The dormant line accumulated much higher ABA in 10-day developing seeds than the non-dormant line. In the QTL-containing region there is no predicted gene that has been assigned to ABA biosynthetic or metabolic pathways. Thus, it is concluded that the qSD12 underlying gene promotes ABA accumulation in early developing seeds to induce primary seed dormancy.

摘要

种子在发育过程中获得初级休眠,植物激素脱落酸 (ABA) 被认为在诱导休眠中起作用。qSD12 是从杂草稻中鉴定出的主要种子休眠数量性状位点 (QTL)。本研究旨在鉴定 qSD12 的候选基因,从杂草稻中分离候选基因,并确定休眠基因与 ABA 的关系。精细定位实验,随后对选定的重组体进行标记辅助后代测试,将 qSD12 缩小到 <75 kb 的基因组区域,其中有九个预测基因,包括六个转座子/逆转座子蛋白基因簇和三个假定基因(一个 PIL5、一个假设蛋白和一个 bHLH 转录因子)基于注释的日本晴基因组序列。PIL5 和 bHLH 基因更有可能成为 QTL 候选基因。构建了一个相当于杂草稻单倍体基因组大小 8-9 倍的细菌人工染色体 (BAC) 文库。从文库中开发的两个 BAC contig 之一覆盖了 PIL5 到 bHLH 区间。开发了一对仅在包含 QTL 的 <200 kb 区域存在差异的系作为 qSD12 休眠和非休眠等位基因的同基因系。休眠系在 10 天发育种子中积累的 ABA 明显高于非休眠系。在包含 QTL 的区域中,没有预测到被分配到 ABA 生物合成或代谢途径的基因。因此,可以得出结论,qSD12 所涉及的基因促进了早期发育种子中 ABA 的积累,从而诱导了初级种子休眠。

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