首页> 外文期刊>BMC Plant Biology >Ethylene enhances root water transport and aquaporin expression in trembling aspen ( Populus tremuloides ) exposed to root hypoxia
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Ethylene enhances root water transport and aquaporin expression in trembling aspen ( Populus tremuloides ) exposed to root hypoxia

机译:乙烯增强了暴露于根缺氧的颤振(Populus Trowuloides)中的根水运输和水通道蛋白表达

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Root hypoxia has detrimental effects on physiological processes and growth in most plants. The effects of hypoxia can be partly alleviated by ethylene. However, the tolerance mechanisms contributing to the ethylene-mediated hypoxia tolerance in plants remain poorly understood. In this study, we examined the effects of root hypoxia and exogenous ethylene treatments on leaf gas exchange, root hydraulic conductance, and the expression levels of several aquaporins of the plasma membrane intrinsic protein group (PIP) in trembling aspen (Populus tremuloides) seedlings. Ethylene enhanced net photosynthetic rates, transpiration rates, and root hydraulic conductance in hypoxic plants. Of the two subgroups of PIPs (PIP1 and PIP2), the protein abundance of PIP2s and the transcript abundance of PIP2;4 and PIP2;5 were higher in ethylene-treated trembling aspen roots compared with non-treated roots under hypoxia. The increases in the expression levels of these aquaporins could potentially facilitate root water transport. The enhanced root water transport by ethylene was likely responsible for the increase in leaf gas exchange of the hypoxic plants. Exogenous ethylene enhanced root water transport and the expression levels of PIP2;4 and PIP2;5 in hypoxic roots of trembling aspen. The results suggest that ethylene facilitates the aquaporin-mediated water transport in plants exposed to root hypoxia.
机译:根缺氧对大多数植物的生理过程和生长具有不利影响。缺氧的影响可以部分地通过乙烯来缓解。然而,有助于植物中乙烯介导的缺氧耐受的耐受机制仍然明显。在这项研究中,我们研究了根缺氧和外源乙烯处理对叶片气体交换,根液态蛋白的几种水上蛋白的表达水平,以及在颤抖的白杨(Populus Temuloides)幼苗中的叶片气体交换,根液态蛋白的表达水平。乙烯增强了缺氧植物的净光合速率,蒸腾率和根液压传导。在PIPS(PIP1和PIP2)的两个子组中,PIP2的蛋白质和PIP2的转录物丰度; 4和PIP2; 5在缺氧下的未处理的根部相比,乙烯处理的颤抖的白杨根较高。这些水蛋白酶的表达水平的增加可能促进根水运输。通过乙烯的增强的根水运输可能负责缺氧植物的叶片气体交换的增加。外源性乙烯增强的根水运输和PIP2的表达水平; 4和PIP2; 5在颤抖的白杨缺氧根部。结果表明,乙烯促进了暴露于根缺氧的植物中的水素介导的水运输。

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