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首页> 外文期刊>Russian Journal of Plant Physiology >Closure of Stomata in Water-Stressed Pine Needles Results from the Decreased Water Potential of the Mesophyll Apoplast in the Substomatal Cavity
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Closure of Stomata in Water-Stressed Pine Needles Results from the Decreased Water Potential of the Mesophyll Apoplast in the Substomatal Cavity

机译:在患者胁迫下的松针中的气孔闭合是由中蛋白腔内的中蛋白酶骨架的水平降低的降低

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摘要

Pine (Pinus sylvestris L.) seedlings grown under controlled conditions were subjected to water deficit (external water potentials ranging from-0.15 to-1.5 MPa) by adding polyethylene glycol 6000 (PEG) to the nutrient solution. Following this treatment, the dry weights of plant shoots and roots, as well as the ratio of variable to maximum chlorophyll fluorescence (F (v)/F (m)), nonphotochemical quenching (NPQ) of chlorophyll excitations, photosynthetic CO2/H2O exchange, dark respiration of needles, and water potential of mesophyll apoplast in the substomatal cavity of pine needles, were measured. The imposed water deficit was followed by the inhibition of seedling growth, suppression of photosynthesis and transpiration, and by the decreased content of photosynthetic pigments. It is shown for the first time that the closure of stomata in the needles of water-stressed pine seedlings falls into the physiological reaction norm and is caused by the reduction of water potential in the mesophyll apoplast of the substomatal cavity.
机译:通过将聚乙二醇6000(PEG)加入营养溶液,在受控条件下生长的松树(松弛Sylvestris L.)幼苗进行水赤份(从-0.15至-1.5MPa的外部水电位)。在此处理之后,植物芽和根部的干重,以及可变与最大叶绿素荧光的比率(F(v)/ f(m)),叶绿素激发的非平淡细胞淬火(NPQ),光合作用CO2 / H2O交换测量针刺暗呼吸的暗呼吸和叶片针的中蛋白酶腔的蛋白质腔的水电位。施加的水赤字随后抑制幼苗生长,抑制光合作用和蒸腾,并通过降低光合色素的含量下降。首次示出了第一次显示液体胁迫松树幼苗针中的气孔闭合到生理反应规范中,并且是由中蛋白腔的叶片腔内的水势的降低引起的。

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