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首页> 外文期刊>Journal of Plant Physiology >Plasma membrane ATPase and the aquaporin HvPIP1 in barley brassinosteroid mutants acclimated to high and low temperature
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Plasma membrane ATPase and the aquaporin HvPIP1 in barley brassinosteroid mutants acclimated to high and low temperature

机译:血浆膜ATP酶和巴西芸苔类固醇突变体的水疗法HVPIP1适应高温和低温

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摘要

The integral parts of the cell membranes are the functional proteins, which are crucial for cell life. Among them, proton-pumping ATPase and aquaporins appear to be of particular importance. There is some knowledge about the effect of the temperature during plant growth, including stress-inducing temperatures, on the accumulation of the membrane proteins: plasma membrane H+-ATPase and aquaporins, but not much is known about the effect of the phytohormones (i.e. brassinosteroids (BR)) on control of accumulation of these proteins. The aim of our study was to answer the question of how a BR deficit and disturbances in the BR perception/signalling affect the accumulation of plasma membrane H+-ATPase (PM H+-ATPase), the aquaporin HvPIP1 transcript and protein in barley growing at 20 degrees C and during its acclimation at 5 degrees C and 27 degrees C. For the studies, the BR-deficient mutant 522DK (derived from the wild-type Delisa), the BR-deficient mutant BW084 and the BR-signalling mutant BW312 and their wild-type Bowman were used. Generally, temperature of growth was significant factor influencing on the level of the accumulation of the H+-ATPase and HvPIP1 transcript and the PM H+-ATPase and HvPIP1 protein in barley leaves. The level of the accumulation of the HvPIP1 transcript decreased at 5 degrees C (compared to 20 degrees C), but was higher at 27 degrees C than at 20 degrees C in the analyzed cultivars. In both cultivars the protein HvPIP1 was accumulated in the highest amounts at 27 degrees C. On the other hand, the barley mutants with a BR deficiency or with BR signalling disturbances were characterised by an altered accumulation level of PM Hi ATPase, the aquaporin HvPIP1 transcript and protein (compared to the wild types), which may suggest the involvement of brassinosteroids in regulating PM H+-ATPase and aquaporin HvPIP1 at the transcriptional and translational levels.
机译:细胞膜的整体部分是功能蛋白,这对于细胞寿命至关重要。其中,质子泵送的ATP酶和水素似乎是特别重要的。关于植物生长期间温度的影响,包括应激诱导温度,在膜蛋白的积累中存在一些了解:血浆膜H + -AtPase和Aquaporins,但对植物激素的作用并不多大(即芸苔类固醇(BR))控制这些蛋白质的积累。我们的研究目的是回答BR感知/信号传导中的BR缺陷和干扰如何影响血浆膜H + -ATP酶(PM H + -ATPase)的积累,在20时生长的大麦蛋白HVPIP1转录物和蛋白质在5摄氏度和27摄氏度下的加速度期间C和27摄氏度。对于研究,BR缺陷型突变体522dk(衍生自野生型Delisa),Br缺陷型突变体BW084和BR信号传导突变体BW312及其使用野生型鲍曼。通常,生长的温度是影响H + -ATPase和HVPIP1转录物和HVPIP1转录物和大麦叶中PM H + -ATP酶和HVPIP1蛋白水平的显着因素。 HVPIP1转录物的积累水平在5摄氏度(与20℃)下降,但在分析的品种中,在27摄氏度下较高。在两种品种中,蛋白质HVPIP1在27摄氏度的最高量中累积,另一方面,具有BR缺乏或与BR信号紊乱的大麦突变体的特征在于PM Hi Atpase的累积水平改变,Aquaporin HVPIP1转录物和蛋白质(与野生类型相比),这可能表明在转录和平移水平下涉及芸苔类固醇调节PM H + -AtPase和Aquaporin HVPIP1。

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