Structural genes encoding F3’5’h in 4d chromosome control the blue grain trait in wheat

Diddugodage Chamila Jeewani, Zhonghua Wang, W-b. Jian, M. D. L. C. Nishantha, Wenzhi Nan, Tianxiang Liu
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引用次数: 3

Abstract

Blue grained wheat contained a higher quantity of natural anthocyanin compounds while normal commercial wheat does not have. Though the genes related to several colours of wheat have been identified, the major genes in blue wheat are still unrevealed. Hence, combining the SNP mapping, and transcriptome analysis, pivotal genes regulating blue grain trait was identified. SNP genotyping was carried out in an F2 blue and white wheat population. The blue trait was controlled by a gene/locus located between two SNP markers of IWB 18525 and IWB16381 on the 4D chromosome. Comparative transcriptome analysis revealed that 40 structural differentially expressed genes (DEGs) related to anthocyanin biosynthesis had significant expression differences between blue and non-blue samples. Among them, 12 DEGs expressed only in blue samples while 2 DEGs were specific to blue wheat. Only two F3’5’H genes located in 4D (Traes_4DL_27C195FDE, Traes_4DL_5A3D8F519) were consistent with the location results performed in SNP genotyping. Further, F3’5’H is considered as the main enzyme for Delphinidin compounds, cause for blue colouration. Hence, two genes encoding F3’5’H in the 4D chromosome preferentially account for the blue pigmentation in wheat.
小麦4d染色体上编码F3′5′h的结构基因控制着蓝粒性状
蓝粒小麦含有较多的天然花青素化合物,而普通商品小麦则没有。虽然与几种小麦颜色相关的基因已经被确定,但蓝色小麦的主要基因仍未被揭示。因此,结合SNP定位和转录组分析,确定了调控蓝粒性状的关键基因。对F2蓝白小麦群体进行SNP基因分型。蓝色性状由位于4D染色体上iwb18525和IWB16381两个SNP标记之间的基因/位点控制。对比转录组分析显示,与花青素生物合成相关的40个结构差异表达基因(DEGs)在蓝色和非蓝色样品中表达差异显著。其中12个基因仅在蓝色小麦中表达,2个基因对蓝色小麦具有特异性。只有两个位于4D的F3’5’h基因(Traes_4DL_27C195FDE、Traes_4DL_5A3D8F519)与SNP基因分型结果一致。此外,F3 ' 5'H被认为是导致蓝色的飞鸽苷化合物的主要酶。因此,在4D染色体上编码F3 ' 5'H的两个基因优先决定了小麦的蓝色色素沉着。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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