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SEC8, a Subunit of the Putative Arabidopsis Exocyst Complex, Facilitates Pollen Germination and Competitive Pollen Tube Growth

机译:SEC8,拟南芥外囊复合物的一个亚基,促进花粉萌发和竞争性花粉管生长。

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摘要

The exocyst, a complex of eight proteins, contributes to the morphogenesis of polarized cells in a broad range of eukaryotes. In these organisms, the exocyst appears to facilitate vesicle docking at the plasma membrane during exocytosis. Although we had identified orthologs for each of the eight exocyst components in Arabidopsis (Arabidopsis thaliana), no function has been demonstrated for any of them in plants. The gene encoding one exocyst component ortholog, AtSEC8, is expressed in pollen and vegetative tissues of Arabidopsis. Genetic studies utilizing an allelic series of six independent T-DNA mutations reveal a role for SEC8 in male gametophyte function. Three T-DNA insertions in SEC8 cause an absolute, male-specific transmission defect that can be complemented by expression of SEC8 from the LAT52 pollen promoter. Microscopic analysis shows no obvious abnormalities in the microgametogenesis of the SEC8 mutants, and the mutant pollen grains appear to respond to the signals that initiate germination. However, in vivo assays indicate that these mutant pollen grains are unable to germinate a pollen tube. The other three T-DNA insertions are associated with a partial transmission defect, such that the mutant allele is transmitted through the pollen at a reduced frequency. The partial transmission defect is only evident when mutant gametophytes must compete with wild-type gametophytes, and arises in part from a reduced pollen tube growth rate. These data support the hypothesis that one function of the putative plant exocyst is to facilitate the initiation and maintenance of the polarized growth of pollen tubes.
机译:外囊是由八种蛋白质组成的复合物,可在多种真核生物中促进极化细胞的形态发生。在这些生物中,胞囊似乎在胞吐过程中促进囊泡停靠在质膜上。尽管我们已经确定了拟南芥(Arabidopsis thaliana)中八个外囊成分的直系同源物,但尚未在植物中证明它们的功能。编码一个囊外成分直系同源基因AtSEC8的基因在拟南芥的花粉和营养组织中表达。利用六个独立的T-DNA突变的等位基因系列进行的遗传研究表明,SEC8在雄配子体功能中的作用。 SEC8中的三个T-DNA插入会导致绝对的男性特异性传播缺陷,可通过从LAT52花粉启动子表达SEC8来补充。显微分析表明,SEC8突变体的微配子发生没有明显异常,并且突变体的花粉粒似乎对引发萌发的信号作出反应。然而,体内测定表明这些突变的花粉粒不能使花粉管萌发。其他三个T-DNA插入与部分传播缺陷相关,因此突变等位基因以较低的频率通过花粉传播。仅当突变配子体必须与野生型配子体竞争时,部分传递缺陷才是明显的,部分原因是由于花粉管生长速度降低。这些数据支持以下假设:推定的植物外囊的功能之一是促进花粉管极化生长的启动和维持。

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  • 来源
    《Plant Physiology》 |2005年第4期|p.00002005-0002018|共14页
  • 作者单位

    Department of Botany and Plant Pathology and Center for Gene Research and Biotechnology, Oregon State University, Corvallis, Oregon 97331 (R.A.C., J.E.F.)Department of Plant Physiology, Charles University, Praha 2, CZ–128 44, Czech Republic (L.S., V.Z.)and Laboratory of Cell Biology, Institute of Experimental Biology, Academy of Sciences of the Czech Republic, Praha 6, CZ–165 02, Czech Republic (L.S., V.Z.);

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