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The endosperm-specific ZHOUPI gene of Arabidopsis thaliana regulates endosperm breakdown and embryonic epidermal development.

机译:拟南芥的胚乳特异性周皮基因调节胚乳的分解和胚表皮的发育。

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摘要

During Arabidopsis seed development, the growing embryo invades and consumes the surrounding endosperm tissue. The signalling pathways that coordinate the separation of the embryo from the endosperm and the concomitant breakdown of the endosperm are poorly understood. We have identified a novel bHLH transcription factor, ZHOUPI (ZOU), which mediates these processes. ZOU is expressed exclusively in the endosperm of developing seeds. It is activated in the central cell immediately after fertilization and is initially expressed uniformly in endosperm, subsequently resolving to the embryo surrounding region (ESR). However, zou mutant embryos have defects in cuticle formation and in epidermal cell adhesion, suggesting that ZOU functions non-autonomously to regulate embryonic development. In addition, the endosperm of zou mutant seeds fails to separate from the embryo, restricting embryo expansion and resulting in the production of shrivelled collapsed seeds. zou seeds retain more endosperm than do wild-typeseeds at maturity, suggesting that ZOU also controls endosperm breakdown. We identify several target genes whose expression in the ESR is regulated by ZOU. These include ABNORMAL LEAF SHAPE1, which encodes a subtilisin-like protease previously shown to have a similar role to ZOU in regulating endosperm adhesion and embryonic epidermal development. However, expression of several other ESR-specific genes is independent of ZOU. Therefore, ZOU is not a general regulator of endosperm patterning, but rather controls specific signalling pathways that coordinate embryo invasion and breakdown of surrounding endosperm tissues.
机译:在拟南芥种子发育期间,生长中的胚侵入并消耗了周围的胚乳组织。人们对协调胚与胚乳分离以及胚乳伴随分解的信号传导途径了解甚少。我们已经确定了介导这些过程的新型bHLH转录因子ZHOUPI(ZOU)。 ZOU仅在发育中的种子的胚乳中表达。受精后立即在中央细胞中被激活,最初在胚乳中均匀表达,随后解析为胚胎周围区域(ESR)。但是,邹突变胚在角质层形成和表皮细胞粘附方面存在缺陷,这表明ZOU非自主地发挥功能来调节胚胎发育。另外,邹氏突变体种子的胚乳无法与胚分离,从而限制了胚的扩增并导致萎缩的塌陷种子的产生。 Zou种子在成熟时比野生型种子保留更多的胚乳,这表明ZOU还可以控制胚乳的分解。我们确定了几个目标基因,其在ESR中的表达受ZOU调控。这些包括异常叶状SHAPE1,其编码一种枯草杆菌蛋白酶样蛋白酶,以前被证明与ZOU在调节胚乳粘附和胚胎表皮发育方面具有相似的作用。但是,其他几个ESR特异性基因的表达也独立于ZOU。因此,ZOU不是胚乳模式的一般调节剂,而是控制协调胚胎入侵和周围胚乳组织分解的特定信号传导途径。

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