Gao Qiang, Guo Qi-Fang, Xing Shi-Chao, Zhao Mei-Rong, Li Feng, Wang Wei
State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Tai'an 271018, China.
Zhi Wu Sheng Li Yu Fen Zi Sheng Wu Xue Xue Bao. 2007 Oct;33(5):402-10.
As the key regulators of cell wall extension during plant growth, expansins play an important role in regulating the development and response of plants to adverse environment. The characteristics of expansins in wheat coleoptiles and their responses to water stress were studied. Expansin proteins were extracted from wheat coleoptiles by the methods of Hepes or SDS. The activities of expansins were measured with an improved extensometer and the amount of expansins was measured by immunoblot analysis with the expansin antibody. The results showed that in coleoptiles, the extension of native cell walls depended on acidic pH, and the expansins were found to be located at cell walls by location analysis. Expansins from wheat coleoptiles could induce cell wall extension both of cucumber hypocotyls and coleoptiles, and vice versa, albeit with differences noted in extension activity. The changes in activity and abundance of expansins in wheat coleoptiles in response to water stress suggest that expansins may play a significant role in the tolerance of wheat plants to water stress.
作为植物生长过程中细胞壁伸展的关键调节因子,扩展蛋白在调节植物发育和对逆境的响应中发挥着重要作用。研究了小麦胚芽鞘中扩展蛋白的特性及其对水分胁迫的响应。采用Hepes法或SDS法从小麦胚芽鞘中提取扩展蛋白。用改进的伸长仪测定扩展蛋白的活性,并用扩展蛋白抗体通过免疫印迹分析测定扩展蛋白的含量。结果表明,在胚芽鞘中,天然细胞壁的伸展依赖于酸性pH值,通过定位分析发现扩展蛋白位于细胞壁上。小麦胚芽鞘中的扩展蛋白既能诱导黄瓜下胚轴和胚芽鞘的细胞壁伸展,反之亦然,尽管在伸展活性上存在差异。小麦胚芽鞘中扩展蛋白活性和丰度对水分胁迫的变化表明,扩展蛋白可能在小麦植株对水分胁迫的耐受性中起重要作用。