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首页> 外文期刊>Molecules and Cells >Overexpression of BrMORN, a novel ‘membrane occupation and recognition nexus’ motif protein gene from Chinese cabbage, promotes vegetative growth and seed production in Arabidopsis
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Overexpression of BrMORN, a novel ‘membrane occupation and recognition nexus’ motif protein gene from Chinese cabbage, promotes vegetative growth and seed production in Arabidopsis

机译:过量表达BrMORN是大白菜的一个新的“膜占领与识别联系”基序蛋白基因,可促进拟南芥的营养生长和种子生产

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摘要

Proteins that contain membrane occupation and recognition nexus (MORN) motifs regulate various aspects of cellular metabolism by localizing proteins in different cellular organelles. The full-length Brassica rapa MORN motif protein (BrMORN) cDNA consists of 1,510 bp encoding 502 deduced amino acids with a predicted molecular mass of 55.8 kDa and an isoelectric point of 9.72. BrMORN is a novel protein composed of two N-terminal transmembrane helices and seven C-terminal MORN motifs and it appears to be localized on the plastid envelope. BrMORN expression was relatively high in actively-growing tissues, but low in mature tissues and under some abiotic stresses. Arabidopsis thaliana plants overexpressing BrMORN showed an enhanced rate of growth, hypocotyl elongation, and increases in the size of vegetative organs and seed productivity under normal growth conditions. In addition, cell size in Arabidopsis plants overexpressing BrMORN was 24% larger than that of wild-type plants, implying that the increase in the size of vegetative organs is due to cell enlargement. The increased size of the vegetative organs also led to increased seed production. Our data suggest that the MORN motif of BrMORN may act at the plastid envelope and facilitate plant growth via cell enlargement.
机译:包含膜占领和识别关系(MORN)主题的蛋白质通过将蛋白质定位在不同的细胞器中来调节细胞代谢的各个方面。全长甘蓝型油菜MORN基序蛋白(BrMORN)cDNA由1,510 bp组成,编码502个推定氨基酸,预测分子量为55.8 kDa,等电点为9.72。 BrMORN是一种新型蛋白质,由两个N端跨膜螺旋和七个C端MORN基序组成,它似乎位于质体包膜上。在活跃生长的组织中,BrMORN的表达相对较高,而在成熟组织中以及在一些非生物胁迫下,BrMORN的表达较低。在正常生长条件下,过表达BrMORN的拟南芥植物显示出较高的生长速率,下胚轴伸长,营养器官的大小和种子生产力的增加。此外,过表达BrMORN的拟南芥植物的细胞大小比野生型植物大24%,这表明营养器官大小的增加是由于细胞的扩大。营养器官的大小增加也导致种子产量增加。我们的数据表明,BrMORN的MORN基序可能作用于质体包膜,并通过细胞扩大促进植物生长。

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