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ThMYC4E,普通小麦中控制相关性状的候选蓝胚乳1基因。

ThMYC4E, candidate Blue aleurone 1 gene controlling the associated trait in Triticum aestivum.

作者信息

Li Na, Li Shiming, Zhang Kunpu, Chen Wenjie, Zhang Bo, Wang Daowen, Liu Dengcai, Liu Baolong, Zhang Huaigang

机构信息

Qinghai Province Key Laboratory of Crop Molecular Breeding, Xining, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

PLoS One. 2017 Jul 13;12(7):e0181116. doi: 10.1371/journal.pone.0181116. eCollection 2017.

Abstract

Blue aleurone is a useful and interesting trait in common wheat that was derived from related species. Here, transcriptomes of blue and white aleurone were compared for isolating Blue aleurone 1 (Ba1) transferred from Thinopyrum ponticum. In the genes involved in anthocyanin biosynthesis, only a basic helix-loop-helix (bHLH) transcription factor, ThMYC4E, had a higher transcript level in blue aleurone phenotype, and was homologous to the genes on chromosome 4 of Triticum aestivum. ThMYC4E carried the characteristic domains (bHLH-MYC_N, HLH and ACT-like) of a bHLH transcription factor, and clustered with genes regulating anthocyanin biosynthesis upon phylogenetic analysis. The over-expression of ThMYC4E regulated anthocyanin biosynthesis with the coexpression of the MYB transcription factor ZmC1 from maize. ThMYC4E existed in the genomes of the addition, substitution and near isogenic lines with the blue aleurone trait derived from Th. ponticum, and could not be detected in any germplasm of T. urartu, T. monococcum, T. turgidum, Aegilops tauschii or T. aestivum, with white aleurone. These results suggested that ThMYC4E was candidate Ba1 gene controlling the blue aleurone trait in T. aestivum genotypes carrying Th. ponticum introgression. The ThMYC4E isolation aids in better understanding the genetic mechanisms of the blue aleurone trait and in its more effective use during wheat breeding.

摘要

蓝糊粉层是普通小麦中一种源自近缘物种的有用且有趣的性状。在此,对蓝糊粉层和白糊粉层的转录组进行了比较,以分离从蓬蒂山羊草转移而来的蓝糊粉层1(Ba1)。在参与花青素生物合成的基因中,只有一个碱性螺旋-环-螺旋(bHLH)转录因子ThMYC4E在蓝糊粉层表型中有较高的转录水平,并且与普通小麦4号染色体上的基因同源。ThMYC4E具有bHLH转录因子的特征结构域(bHLH-MYC_N、HLH和ACT样),在系统发育分析中与调控花青素生物合成的基因聚类。ThMYC4E的过表达与来自玉米的MYB转录因子ZmC1共表达来调控花青素生物合成。ThMYC4E存在于具有源自蓬蒂山羊草的蓝糊粉层性状的附加系、代换系和近等基因系的基因组中,而在乌拉尔图小麦、一粒小麦、硬粒小麦、节节麦或普通小麦的任何白糊粉层种质中均未检测到。这些结果表明,ThMYC4E是控制携带蓬蒂山羊草渗入的普通小麦基因型中蓝糊粉层性状的候选Ba1基因。ThMYC4E的分离有助于更好地理解蓝糊粉层性状的遗传机制,并在小麦育种中更有效地利用该性状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6b7/5509306/e3c86a514c03/pone.0181116.g001.jpg

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