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GmIRCHS(大豆反转重复 CHS 假基因)的变异与黄大豆低温诱导种皮变色的耐受性有关。

Variation of GmIRCHS (Glycine max inverted-repeat CHS pseudogene) is related to tolerance of low temperature-induced seed coat discoloration in yellow soybean.

机构信息

Hokkaido Research Organization Tokachi Agricultural Experiment Station, Shinsei, Memuro, Kasai-gun, Hokkaido, Japan.

出版信息

Theor Appl Genet. 2011 Feb;122(3):633-42. doi: 10.1007/s00122-010-1475-6. Epub 2010 Oct 28.

Abstract

In yellow soybean, seed coat pigmentation is inhibited by post-transcriptional gene silencing (PTGS) of chalcone synthase (CHS) genes. A CHS cluster named GmIRCHS (Glycine max inverted-repeat CHS pseudogene) is suggested to cause PTGS in yellow-hilum cultivars. Cold-induced seed coat discoloration (CD), a commercially serious deterioration of seed appearance, is caused by an inhibition of this PTGS upon exposure to low temperatures. In the highly CD-tolerant cultivar Toyoharuka, the GmIRCHS structure differs from that of other cultivars. The aim of this study was to determine whether the variation of GmIRCHS structure among cultivars is related to variations in CD tolerance. Using two sets of recombinant inbred lines between Toyoharuka and CD-susceptible cultivars, we compared the GmIRCHS genotype and CD tolerance phenotype during low temperature treatment. The GmIRCHS genotype was related to the phenotype of CD tolerance. A QTL analysis around GmIRCHS showed that GmIRCHS itself or a region located very close to it was responsible for CD tolerance. The variation in GmIRCHS can serve as a useful DNA marker for marker-assisted selection for breeding CD tolerance. In addition, QTL analysis of the whole genome revealed a minor QTL that also affected CD tolerance.

摘要

在黄大豆中,种皮色素的形成受到查尔酮合酶(CHS)基因转录后基因沉默(PTGS)的抑制。一个名为 GmIRCHS(大豆反转重复 CHS 假基因)的 CHS 簇被认为是导致黄种脐品种发生 PTGS 的原因。低温诱导的种皮变色(CD)是一种严重影响种子外观的商业性劣变,是由于在低温下这种 PTGS 受到抑制而引起的。在高度耐 CD 的品种 Toyoharuka 中,GmIRCHS 的结构与其他品种不同。本研究旨在确定品种间 GmIRCHS 结构的变异是否与 CD 耐性的变异有关。利用 Toyoharuka 和 CD 敏感品种之间的两组重组自交系,我们比较了低温处理期间 GmIRCHS 基因型和 CD 耐性表型。GmIRCHS 基因型与 CD 耐性表型相关。围绕 GmIRCHS 的 QTL 分析表明,GmIRCHS 本身或与其非常接近的区域负责 CD 耐性。GmIRCHS 的变异可以作为一种有用的 DNA 标记,用于 CD 耐性的标记辅助选择育种。此外,全基因组的 QTL 分析揭示了一个较小的 QTL,也影响 CD 耐性。

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