首页> 外文期刊>Plant Physiology and Biochemistry >DIFFERENTIAL LEVELS OF WHEAT GERM AGGLUTININ (WGA) IN GERMINATING EMBRYOS OF DIFFERENT WHEAT CULTIVARS IN RESPONSE TO OSMOTIC STRESS
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DIFFERENTIAL LEVELS OF WHEAT GERM AGGLUTININ (WGA) IN GERMINATING EMBRYOS OF DIFFERENT WHEAT CULTIVARS IN RESPONSE TO OSMOTIC STRESS

机译:小麦胚芽凝集素(WGA)在不同小麦品种对渗透胁迫的响应中的萌发水平

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The variability in wheat germ agglutinin (WGA) content of germinating embryos of wheat (Triticum aestivum L.) in response to osmotic stress was studied in nine different cultivars with an objective to study its physiological role in stress adaptation. Germination both in water as well as in 0.75 M mannitol resulted in dramatic decrease in WGA content of the germinating embryos as compared to ungerminated ones in all cultivars except PEW-138, PEW-154, and PEW-299. In these three cultivars, osmotic stress resulted in a dramatic increase in WGA levels relative to ungerminated embryos, thus suggesting that the metabolism of WGA in the germinating wheat embryos of different wheat cultivars is regulated differentially by osmotic stress. The specific WGA content of the ungerminated embryos was substantially higher than the germinating ones, apparently due to increased synthesis of germination associated proteins and increased degradation of WGA in the latter. There was a strong negative correlation (r=-0.772, significant at P less than or equal to 0.001) between germination capacity under stress and stress-induced relative increase in the WGA content. Those cultivars which, relative to water irrigated seedlings, showed higher levels of WGA per embryo in seedlings irrigated with 0.75 M mannitol exhibited lower germination capacity. Based on these results, a possible physiological role of WGA in germination of wheat embryos is discussed. [References: 21]
机译:在9个不同品种中研究了小麦(Triticum aestivum L.)发芽胚中小麦胚芽凝集素(WGA)含量对渗透胁迫的响应变化,旨在研究其在胁迫适应中的生理作用。与除PEW-138,PEW-154和PEW-299以外的所有其他品种的未发芽胚相比,在水中以及在0.75 M甘露醇中发芽均导致发芽胚的WGA含量大幅下降。在这三个品种中,相对于未萌发的胚,渗透胁迫导致WGA含量急剧增加,因此表明,在不同的小麦品种的萌发小麦胚中,WGA的代谢受渗透胁迫的差异调节。未发芽的胚的比WGA含量明显高于发芽的胚,这显然是由于发芽相关蛋白的合成增加以及WGA在后者中的降解增加所致。胁迫下的发芽能力与胁迫引起的WGA含量的相对增加之间存在很强的负相关性(r = -0.772,在P小于或等于0.001时显着)。相对于水灌溉的幼苗,那些用0.75 M甘露醇灌溉的幼苗中每个胚的WGA含量更高,表现出较低的发芽能力。基于这些结果,讨论了WGA在小麦胚萌发中的可能生理作用。 [参考:21]

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