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首页> 外文期刊>Physiologia plantarum >Plasma membrane H+-ATPase gene expression, protein level and activity in growing and non-growing regions of barley (Hordeum vulgare) leaves
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Plasma membrane H+-ATPase gene expression, protein level and activity in growing and non-growing regions of barley (Hordeum vulgare) leaves

机译:大麦叶片生长和非生长区域质膜H + -ATPase基因表达,蛋白水平和活性

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摘要

Plasma membrane proton ATPase (PM-H+-ATPase) is the key means through which plant cells energize nutrient uptake and acidify the apoplast. Both of these processes aid cell elongation; yet, it is not known how such a suspected role of the PM-H+-ATPase in growth is reflected through changes in its transcript level and activity in grass leaves. In the present study on leaf three of barley, the elongation zone and the emerged blade, which contained fully expanded cells were analyzed. Plasma membranes were isolated and used to assay the activity (ATPase assay) and abundance (western blotting) of PM-H+-ATPase protein. Expression of mRNA was quantified using real-time polymerase chain reaction (qPCR). PM-H+-ATPase transcript and protein level and activity differed little between growing and non-growing leaf regions when values were related to unit extracted total RNA and cell number, respectively. However, when values were related to unit surface area of plasma membrane, they were more than twice as high in growing compared with non-growing leaf tissue. It is concluded that this higher surface density of PM-H+-ATPase activity in growing barley leaf tissue aids apoplast acidification and cell expansion.
机译:质膜质子ATPase(PM-H + -ATPase)是植物细胞激发养分吸收和酸化质外体的关键手段。这两个过程均有助于细胞伸长。但是,尚不清楚如何通过其转录水平和草叶活性的变化反映出PM-H + -ATPase在生长中的这种可疑作用。在本研究中,分析了大麦的三叶,延伸区和出苗叶片,其中含有完全膨胀的细胞。分离质膜,并用于测定PM-H + -ATPase蛋白的活性(ATPase测定)和丰度(western印迹)。使用实时聚合酶链反应(qPCR)定量mRNA的表达。当值分别与单位提取的总RNA和细胞数有关时,在生长和非生长的叶区域之间,PM-H + -ATPase的转录本,蛋白质水平和活性差异不大。但是,当值与质膜的单位表面积相关时,其生长速度是非生长叶片组织的两倍以上。结论是,大麦叶片组织中较高的PM-H + -ATPase活性表面密度有助于质外体酸化和细胞扩增。

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