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Mechanism of salt stress tolerance in plants: role of cation/proton antiporters

机译:植物盐胁迫耐受机制:阳离子/质子抗原的作用

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Salinity is an important adversive environmental problem that caused loss in sense of reducing yield per plant, morphological and physiological functions of crop plants. The plants compete with environmental stress conditions to withstand following normal growth and development. The exchange of cations or protons takes place across the cell membrane to maintain the osmotic pressure of cells under salt stress conditions. There is a huge number of cation/H + antiporter 1 proteins producing genes by plant cells under salt stress conditions has been identified however, a few has been characterized and sequenced which contributes in ion homeostasis and osmotic adjustment of cells. These cation/H + antiporters are produced and stored in the vacuoles, endosomal forms and in cytoplasm. The cation/H + antiporters are involved in the homeostasis of K + , Na + , and pH of the cell under salinity stress conditions. The cation/H + antiporters help plants cells to regulate all physiological functions under salt stress conditions.
机译:盐度是一种重要的伴随环境问题,导致每株植物产量的损失,作物植物的形态学和生理功能。植物与环境压力条件竞争以承受正常生长和发育后。阳离子或质子的交换发生在细胞膜上,以保持盐胁迫条件下细胞的渗透压。存在大量的阳离子/ h +炔醇酮1蛋白通过植物细胞产生基因在盐胁迫条件下已经鉴定出来,已经表征和测序,贡献了离子稳态和渗透细胞的渗透调节。这些阳离子/ H +抗抗原物被生产并储存在液泡中,内体形式和细胞质中。阳离子/ h +炔醇酯参与盐度应力条件下k +,Na +,Na +和Cell的pH的稳态。阳离子/ H +抗抗原有助于植物细胞调节盐胁迫条件下的所有生理功能。

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