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核融合缺陷1编码拟南芥RPL21M蛋白,是雌配子体发育和受精过程中核融合所必需的。

NUCLEAR FUSION DEFECTIVE1 encodes the Arabidopsis RPL21M protein and is required for karyogamy during female gametophyte development and fertilization.

作者信息

Portereiko Michael F, Sandaklie-Nikolova Linda, Lloyd Alan, Dever Chad A, Otsuga Denichiro, Drews Gary N

机构信息

Department of Biology, University of Utah, Salt Lake City, Utah 84112-0840, USA.

出版信息

Plant Physiol. 2006 Jul;141(3):957-65. doi: 10.1104/pp.106.079319. Epub 2006 May 12.

DOI:10.1104/pp.106.079319
PMID:16698901
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1489897/
Abstract

Karyogamy, or nuclear fusion, is essential for sexual reproduction. In angiosperms, karyogamy occurs three times: twice during double fertilization of the egg cell and the central cell and once during female gametophyte development when the two polar nuclei fuse to form the diploid central cell nucleus. The molecular mechanisms controlling karyogamy are poorly understood. We have identified nine female gametophyte mutants in Arabidopsis (Arabidopsis thaliana), nuclear fusion defective1 (nfd1) to nfd9, that are defective in fusion of the polar nuclei. In the nfd1 to nfd6 mutants, failure of fusion of the polar nuclei is the only defect detected during megagametogenesis. nfd1 is also affected in karyogamy during double fertilization. Using transmission electron microscopy, we showed that nfd1 nuclei fail to undergo fusion of the outer nuclear membranes. nfd1 contains a T-DNA insertion in RPL21M that is predicted to encode the mitochondrial 50S ribosomal subunit L21, and a wild-type copy of this gene rescues the mutant phenotype. Consistent with the predicted function of this gene, an NFD1-green fluorescent protein fusion protein localizes to mitochondria and the NFD1/RPL21M gene is expressed throughout the plant. The nfd3, nfd4, nfd5, and nfd6 mutants also contain T-DNA insertions in genes predicted to encode proteins that localize to mitochondria, suggesting a role for this organelle in nuclear fusion.

摘要

核融合,即细胞核融合,对于有性生殖至关重要。在被子植物中,核融合发生三次:在卵细胞和中央细胞的双受精过程中发生两次,在雌配子体发育过程中,两个极核融合形成二倍体中央细胞核时发生一次。控制核融合的分子机制尚不清楚。我们在拟南芥中鉴定出九个雌配子体突变体,即核融合缺陷1(nfd1)至nfd9,它们在极核融合方面存在缺陷。在nfd1至nfd6突变体中,极核融合失败是在大配子发生过程中检测到的唯一缺陷。nfd1在双受精过程中的核融合也受到影响。使用透射电子显微镜,我们发现nfd1细胞核无法进行外核膜融合。nfd1在RPL21M中含有一个T-DNA插入,预计该基因编码线粒体50S核糖体亚基L21,该基因的野生型拷贝可挽救突变体表型。与该基因的预测功能一致,NFD1-绿色荧光蛋白融合蛋白定位于线粒体,并且NFD1/RPL21M基因在整个植物中表达。nfd3、nfd4、nfd5和nfd6突变体在预计编码定位于线粒体的蛋白质的基因中也含有T-DNA插入,表明该细胞器在核融合中起作用。

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