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来自胚胎的信号调节发育中的玉米种子糊粉层中Vp1介导的α-淀粉酶基因的抑制作用。

Signaling from the embryo conditions Vp1-mediated repression of alpha-amylase genes in the aleurone of developing maize seeds.

作者信息

Hoecker U, Vasil I K, McCarty D R

机构信息

USDA Plant Gene Expression Center, Albany, CA 94710, USA.

出版信息

Plant J. 1999 Aug;19(4):371-7. doi: 10.1046/j.1365-313x.1999.00521.x.

Abstract

The VP1 transcription factor functions as both a repressor and an activator of gene expression in the developing aleurone. Vp1 activation of the anthocyanin pathway exhibits strict cell autonomy in aleurone. In contrast, Vp1-mediated repression of hydrolase genes in aleurone cells during seed development is determined by a combination of cell autonomous and cell non-autonomous signals. To analyze signaling between the embryo and aleurone during seed development, a T-B3La chromosome translocation was used to create seed that has non-concordant embryo and endosperm genotypes. We show that de-repression of an Amy-GUS reporter gene in developing vp1 mutant aleurone cells strongly depends on the presence of a viviparous embryo. Genetic ablation of the developing embryo in vp1 mutant and Vp1 seeds through the introduction of an early embryo mutation caused a similar enhancement of Amy-GUS expression in the aleurone, suggesting that the quiescent embryo present in normal seed is a critical source of inhibitory signals. Analysis of an ABA deficient vp1 vp5 double mutant indicates that ABA synthesized in the embyro interacts additively with Vp1 to prevent precocious induction of alpha-amylase genes in the aleurone of the developing seed. A lack of ABA synthesis, however, does not account for the strongly synergistic interaction between a viviparous vp1 embryo and mutant aleurone suggesting that a quiescent embyro is a source of other inhibitory signals.

摘要

VP1转录因子在发育中的糊粉层中既作为基因表达的阻遏物又作为激活物发挥作用。VP1对花青素途径的激活在糊粉层中表现出严格的细胞自主性。相比之下,种子发育过程中VP1介导的糊粉层细胞中水解酶基因的抑制是由细胞自主信号和细胞非自主信号共同决定的。为了分析种子发育过程中胚和糊粉层之间的信号传导,利用T-B3La染色体易位来创建具有不一致胚和胚乳基因型的种子。我们发现,在发育中的vp1突变体糊粉层细胞中,Amy-GUS报告基因的去抑制强烈依赖于存在一个胎萌胚。通过引入早期胚突变对vp1突变体和Vp1种子中发育中的胚进行基因消融,导致糊粉层中Amy-GUS表达有类似的增强,这表明正常种子中存在的静止胚是抑制信号的关键来源。对ABA缺陷型vp1 vp5双突变体的分析表明,胚中合成的ABA与Vp1协同作用,以防止发育中的种子糊粉层中α-淀粉酶基因的早熟诱导。然而,ABA合成的缺乏并不能解释胎萌vp1胚与突变体糊粉层之间强烈的协同相互作用,这表明静止胚是其他抑制信号的来源。

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