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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Iron deficiency induced changes on the donor side of PS II in field grown grapevine (Vitis vinifera L. cv. Pinot noir) leaves
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Iron deficiency induced changes on the donor side of PS II in field grown grapevine (Vitis vinifera L. cv. Pinot noir) leaves

机译:缺铁诱导田间生长的葡萄(黑叶葡萄)叶片PS II供体侧的变化

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摘要

In this work we have studied the influence of lime-induced iron deficiency on some features of the thylakoids and PS II membranes from grapevine ( Vitis vinifera L. cv. Pinot noir) plants grown in calcareous soils. Changes in photosynthetic activities and PS It membrane polypeptides were investigated. When various photosynthetic electron transport activities were analyzed in isolated thylakoids, a major decrease in the rate of whole chain (H2O --> MV) electron transport was observed in chlorotic leaves, Such reduction was mainly due to the loss of PS II activity. Smaller inhibition of PS I activity was also observed in chlorotic leaves. The artificial electron donors, DPC and NH2OH markedly restored the loss of PS II activity in chlorotic leaves. The same results were obtained when variable fluorescence/maximum fluorescence (Fv/Fm) was evaluated by chlorophyll (Chl) fluorescence measurements. The marked loss of PS II activity in chlorotic leaves was evidently due to the loss of D1, 33, 28-25, and 23 kDa polypeptides. This conclusion was confirmed by immunological studies showing that the content of the D1 protein of the PS II reaction centre and of the 33 kDa protein of the water-splitting complex was diminished significantly in chlorotic leaves.
机译:在这项工作中,我们研究了石灰引起的铁缺乏对石灰性土壤中生长的葡萄植物(葡萄)的类囊体和PS II膜某些特征的影响。研究了光合活性和PS It膜多肽的变化。当在分离的类囊体中分析各种光合作用的电子传输活性时,在褪绿叶中观察到全链(H2O-> MV)电子传输速率的主要下降,这种下降主要是由于PS II活性的损失。在褪绿叶中也观察到对PS I活性的抑制作用较小。人造电子供体DPC和NH2OH显着恢复了褪绿叶中PS II活性的损失。通过叶绿素(Chl)荧光测量评估可变荧光/最大荧光(Fv / Fm)可获得相同的结果。褪绿叶中PS II活性的明显丧失显然是由于D1、33、28-25和23 kDa多肽的丧失。免疫学研究证实了这一结论,结果表明,褪绿叶中PS II反应中心的D1蛋白和水分解复合物的33 kDa蛋白的含量显着降低。

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