反硫氧还蛋白转基因小麦种子萌发过程中蛋白质的变化。

植物生理与分子生物学学报 Pub Date : 2007-02-01
Hong-Xiang Guo, Jun Yin, Jiang-Ping Ren, Zhen-Yun Wang, Huan-Li Chen
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引用次数: 0

摘要

硫氧还蛋白h与谷物种子的萌发密切相关。通过分析小麦种子萌发过程中蛋白质的变化,研究了具有反义trxs基因的转基因小麦种子发芽率低的机制。反义trxs可以通过减少参与代谢的蛋白质数量来减弱小麦种子的代谢,而氯仿-甲醇(CM)蛋白部分主要由一些低分子量蛋白质组成(
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Changes in proteins within germinating seeds of transgenic wheat with an antisense construct directed against the thioredoxin.

Thioredoxin h is closely related to germination of cereal seeds. The mechanism of transgenic wheat seeds with antisense trxs gene, which is responsible for low germination rate was studied through analyzing the changes in proteins of wheat seeds during germination. The antisense trxs could weaken the metabolism of wheat seeds by decreasing the quantity of proteins involved in metabolism, while chloroform-methanol (CM) protein fraction consisted mostly of some low molecular weight proteins (<20 kD). Compared with wild-type wheat seeds, the folding of glutenin in transgenic wheat ones was affected during the wheat maturating. Big glutenin macropolymers could be formed more easily in transgenic wheat seeds than in wild-type wheat ones. Therefore, the degradation speed of glutenin in transgenic wheat seeds was slower than that in wild-type wheat ones during seed germination. In addition, the degradation of some proteins in transgenic wheat embryos was also delayed during germination.

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