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应激介导的胡桐 V-ATPase 和 V-PPase 的改变。

Stress-mediated alteration in V-ATPase and V-PPase of Butea monosperma.

机构信息

Department of Bioscience and Biotechnology, Banasthali University, P.O. Banasthali Vidyapith, 304 022, Rajasthan, India.

出版信息

Protoplasma. 2010 Sep;245(1-4):125-32. doi: 10.1007/s00709-010-0153-5. Epub 2010 Jun 25.

Abstract

The activity and subunit amounts of V-ATPase and V-PPase in various plants of Butea monosperma Taub. (Fabaceae) (ver. Dhak; Palas) growing as a natural inhabitant in varying stress conditions in southeast Rajasthan were studied. Western blot analysis followed by immunological quantification of V-ATPase subunits using specific polyclonal antibodies showed that the subunits A, B, D, E, and c are clearly detectable in all plants, with A, B, and c appearing as intense bands. The other subunits of V-ATPase, viz., C, a, and d, were also detected in majority of the plants. Various subunits exhibited variations in their protein amount in different plants. Besides, a few other clear bands were also detected. Of these, the 30- and 29-kD bands may possibly be Di and Ei. Furthermore, a clear band of V-PPase corresponding to 67-70 kD was also detected. A comparison of the V-ATPase and V-PPase activity revealed that Butea plants in the upper region of the study site showed 70% and 39% higher activity, respectively. Furthermore, the immunological quantification showed that the V-ATPase and V-PPase protein amounts are also higher in the upper Butea plants which have drought stress and, moreover, are also exposed to stronger light intensities for relatively longer duration.

摘要

研究了生长在拉贾斯坦邦东南部不同胁迫条件下的天然居群的豆科植物角蒿(Butea monosperma Taub.)不同植株中 V-ATPase 和 V-PPase 的活性和亚基含量。通过使用特异性多克隆抗体进行的 Western blot 分析和 V-ATPase 亚基的免疫定量表明,所有植物中均可清晰检测到亚基 A、B、D、E 和 c,其中 A、B 和 c 表现为强带。V-ATPase 的其他亚基,即 C、a 和 d,在大多数植物中也被检测到。不同植物中各种亚基的蛋白含量存在差异。此外,还检测到了其他一些清晰的条带。其中,30-和 29-kD 条带可能是 Di 和 Ei。此外,还检测到了对应于 67-70 kD 的清晰 V-PPase 条带。V-ATPase 和 V-PPase 活性的比较表明,研究点上部的角蒿植物的活性分别高出 70%和 39%。此外,免疫定量还表明,在上部角蒿植物中,V-ATPase 和 V-PPase 的蛋白含量也较高,这些植物不仅受到干旱胁迫,而且还暴露在更强的光照强度下,持续时间相对更长。

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