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首页> 外文期刊>Pflügers Archiv European Journal of Physiology >Barley plasma membrane intrinsic proteins (PIP Aquaporins) as water and CO2 transporters
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Barley plasma membrane intrinsic proteins (PIP Aquaporins) as water and CO2 transporters

机译:大麦质膜内在蛋白(PIP水通道蛋白)作为水和CO 2 转运蛋白

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摘要

We identified barley aquaporins and demonstrated that one, HvPIP2;1, transports water and CO2. Regarding water homeostasis in plants, regulations of aquaporin expression were observed in many plants under several environmental stresses. Under salt stress, a number of plasma membrane-type aquaporins were down-regulated, which can prevent continuous dehydration resulting in cell death. The leaves of transgenic rice plants that expressed the largest amount of HvPIP2;1 showed a 40% increase in internal CO2 conductance compared with leaves of wild-type rice plants. The rate of CO2 assimilation also increased in the transgenic plants. The goal of our plant aquaporin research is to determine the key aquaporin species responsible for water and CO2 transport, and to improve plant water relations, stress tolerance, CO2 uptake or assimilation, and plant productivity via molecular breeding of aquaporins.
机译:我们鉴定了大麦水通道蛋白,并证明了其中一种HvPIP2; 1能够运输水和CO 2 。关于植物中的水稳态,在许多环境胁迫下在许多植物中观察到水通道蛋白表达的调节。在盐胁迫下,许多质膜型水通道蛋白被下调,这可以防止连续脱水导致细胞死亡。表达HvPIP2; 1最多的转基因水稻叶片与野生型水稻叶片相比,内部CO 2 电导增加了40%。转基因植物中CO 2 同化率也增加。我们植物水通道蛋白研究的目的是确定负责水和CO 2 转运的关键水通道蛋白种类,并改善植物的水分关系,胁迫耐受性,CO 2 吸收或吸收。通过水通道蛋白的分子育种获得同化和植物生产力。

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