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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Molecular cloning of a novel water channel from rice: its products expression in Xenopus oocytes and involvement in chilling tolerance
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Molecular cloning of a novel water channel from rice: its products expression in Xenopus oocytes and involvement in chilling tolerance

机译:水稻新水通道的分子克隆:其产物在非洲爪蟾卵母细胞中的表达及其对耐寒性的参与

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摘要

Water channel proteins, aquaporins, play a fundamental role in transmembrane water movements in plants. We isolated rice cDNA, rwcl, by screening a rice (Oryza sativa cv. Josaeng Tongil) cDNA library using a conserved motif of aquaporins. Like other aquaporin genes, rwcl encodes a 290-residue protein with six putative transmembrane domains. The derived amino acid sequence of RWC1 shows high homology with PIP1 (plasma membrane intrinsic protein 1) subfamily members, which suggest it is localized in the plasma membrane. Injection of its cRNA into Xenopus oocytes increased the osmotic water permeability of the oocytes 2-3 times. Northern analysis showed that rice aquaporin genes are expressed in rice seedling leaves and roots, but that it disappeared from the root 6 h after osmotic stress began and that the transcript level remained low for about 24 h, then recovered. The time course of rice aquaporin gene-expression under osmotic stress was correlated with time course of turgor transition in plant. On the other hand, the levels of rice aquaporin gene-transcripts in leaves under chilling and recovery temperature depend on the pretreatment of mannitol for short time. This variation of the transcripts shown that rice aquaporin genes may play an important role in response to water stress-induced chilling tolerance. (C) 2000 Elsevier Science Ireland Ltd. All rights reserved. [References: 25]
机译:水通道蛋白,水通道蛋白,在植物的跨膜水分运动中起着基本作用。通过使用水通道蛋白的保守基序筛选水稻(Oryza sativa cv。Josaeng Tongil)cDNA文库,我们分离了水稻cDNA rwcl。像其他水通道蛋白基因一样,rwcl编码具有六个推定的跨膜结构域的290个残基蛋白。 RWC1的衍生氨基酸序列与PIP1(质膜内在蛋白1)亚家族成员具有高度同源性,这表明它位于质膜中。将其cRNA注入非洲爪蟾卵母细胞可将卵母细胞的渗透水渗透率提高2-3倍。 Northern分析表明,水稻水通道蛋白基因在水稻幼苗的叶和根中表达,但在渗透胁迫开始后6小时,它就从根中消失,转录水平保持低水平约24小时,然后恢复。渗透胁迫下水稻水通道蛋白基因表达的时程与植物膨大过渡的时程相关。另一方面,在冷却和恢复温度下叶片中水稻水通道蛋白基因转录物的水平取决于短时间甘露醇的预处理。转录本的这种变化表明水稻水通道蛋白基因可能在响应水分胁迫引起的耐寒性中起重要作用。 (C)2000 Elsevier Science Ireland Ltd.保留所有权利。 [参考:25]

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