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首页> 外文期刊>Journal of Cell Science >A pharmacological study of Arabidopsis cell fusion between the persistent synergid and endosperm.
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A pharmacological study of Arabidopsis cell fusion between the persistent synergid and endosperm.

机译:持久性辛酸与胚乳之间的拟南芥细胞融合的药理研究。

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摘要

Cell fusion is a pivotal process in fertilization and multinucleate cell formation. A plant cell is ubiquitously surrounded by a hard cell wall, and very few cell fusions have been observed except for gamete fusions. We recently reported that the fertilized central cell (the endosperm) absorbs the persistent synergid, a highly differentiated cell necessary for pollen tube attraction. The synergid-endosperm fusion (SE fusion) appears to eliminate the persistent synergid from fertilized ovule in Arabidopsis thaliana Here, we analyzed the effects of various inhibitors on SE fusion in an in vitro culture system. Different from other cell fusions, neither disruption of actin polymerization nor protein secretion impaired SE fusion. However, transcriptional and translational inhibitors decreased the SE fusion success rate and also inhibited endosperm division. Failures of SE fusion and endosperm nuclear proliferation were also induced by roscovitine, an inhibitor of cyclin-dependent kinases (CDK). These data indicate unique aspects of SE fusion such as independence of filamentous actin support and the importance of CDK-mediated mitotic control.
机译:细胞融合是施肥和多核细胞形成的枢轴过程。植物细胞围绕着硬细胞壁围绕着围绕,除了配子融合之外,已经观察到很少的细胞融合。我们最近报道,受精中央细胞(胚乳)吸收持续的Synergid,花粉管吸引所需的高度分化细胞。 Synergid-Endosperm融合(SE Fusion)似乎在此处消除了来自拟南芥溶血胚的持续增效,我们在此分析了各种抑制剂对体外培养系统SE融合的影响。与其他细胞融合不同,肌动蛋白聚合的破坏也不是蛋白质分泌损害的SE融合。然而,转录和平移抑制剂降低了SE融合成功率,并且还抑制了胚乳划分。 SE融合和胚乳核增殖的故障也被Roscovitine诱导了细胞周期蛋白依赖性激酶(CDK)的抑制剂。这些数据表示SE融合的独特方面,例如丝状肌动蛋白支持的独立性以及CDK介导的有丝分裂控制的重要性。

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