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小麦果皮中花色苷合成的调控。

The regulation of anthocyanin synthesis in the wheat pericarp.

机构信息

Institute of Cytology and Genetics, Siberian Branch, Russian Academy of Sciences, Lavrentjeva ave. 10, Novosibirsk 630090, Russia.

出版信息

Molecules. 2014 Dec 4;19(12):20266-79. doi: 10.3390/molecules191220266.

Abstract

Bread wheat producing grain in which the pericarp is purple is considered to be a useful source of dietary anthocyanins. The trait is under the control of the Pp-1 homoealleles (mapping to each of the group 7 chromosomes) and Pp3 (on chromosome 2A). Here, TaMyc1 was identified as a likely candidate for Pp3. The gene encodes a MYC-like transcription factor. In genotypes carrying the dominant Pp3 allele, TaMyc1 was strongly transcribed in the pericarp and, although at a lower level, also in the coleoptile, culm and leaf. The gene was located to chromosome 2A. Three further copies were identified, one mapping to the same chromosome arm as TaMyc1 and the other two mapping to the two other group 2 chromosomes; however none of these extra copies were transcribed in the pericarp. Analysis of the effect of the presence of combinations of Pp3 and Pp-1 genotype on the transcription behavior of TaMyc1 showed that the dominant allele Pp-D1 suppressed the transcription of TaMyc1.

摘要

生产果皮呈紫色麦粒的面包小麦被认为是膳食花青素的一个有用来源。该特性受 Pp-1 同源等位基因(映射到第 7 组的每一条染色体上)和 Pp3(位于 2A 染色体上)的控制。在这里,TaMyc1 被确定为 Pp3 的一个可能的候选基因。该基因编码一个 MYC 样转录因子。在携带显性 Pp3 等位基因的基因型中,TaMyc1 在果皮中强烈转录,尽管转录水平较低,但在鞘叶、茎和叶片中也有转录。该基因被定位到 2A 染色体上。还鉴定出了另外三个拷贝,一个位于与 TaMyc1 相同的染色体臂上,另外两个位于另外两条 2 号染色体上;然而,这些额外的拷贝在果皮中都没有转录。分析 Pp3 和 Pp-1 基因型组合存在对 TaMyc1 转录行为的影响表明,显性等位基因 Pp-D1 抑制 TaMyc1 的转录。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abf9/6271175/b30325b1ae4c/molecules-19-20266-g001.jpg

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