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Dehydrin-Like Proteins in Soybean Seeds in Response to Drought Stress during Seed Filling

机译:种子灌浆过程中干旱胁迫对大豆种子中脱水素样蛋白的影响

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There is no information on accumulation of dehydrin proteins during seed development and maturation of soybean [Glycine max (L.) Merr.] in response to drought stress. Our objective was to study accumulation of dehydrin-like proteins in developing soybean seeds in response to drought stress. A greenhouse experiment and a field experiment were conducted. In the greenhouse experiment, three treatments were imposed on soybean plants after beginning of linear seed filling (R sub(5)): well-watered (WW), gradual stress (GS) imposed before severe stress, and sudden severe stress (SS). In the field treatments were irrigation (I) and nonirrigation (NI) (rainfed) conditions imposed from R sub(5) to R sub(8) (mature seeds). Greenhouse results indicated dehydrin-like proteins (28 and 32 kDa) were detected 18 d after R sub(5) (R sub(5.8)) in developing seeds from drought-stressed plants but not in seeds from the well-watered plants. In the mature seeds, dehydrin-like proteins (28, 32, and 34 kDa) were detected in seeds from drought-stressed plants as well as the well-watered plants. In the field, dehydrin-like proteins accumulated similarly under irrigation and nonirrigation conditions, with the first detection for dehydrins (28 and 32 kDa) at 22 d after R sub(5) (R sub(6)). Accumulation of dehydrin-like proteins was maximal in seeds harvested at 43 d after R sub(5) (seed physiological maturity).
机译:没有关于干旱胁迫下大豆[Glycine max(L.)Merr。]的种子发育和成熟过程中脱水蛋白蛋白质积累的信息。我们的目的是研究干旱胁迫下大豆种子中脱水蛋白样蛋白的积累。进行了温室试验和田间试验。在温室试验中,在线性种子灌浆开始后(R sub(5))对大豆植株进行了三种处理:浇水充足(WW),在重压之前施加渐进应力(GS)和突然重压(SS) 。在田间进行的处理是从R sub(5)到R sub(8)(成熟种子)施加灌溉(I)和非灌溉(NI)(有雨)条件。温室结果表明,在干旱胁迫植物的发育种子中,R sub(5)(R sub(5.8))18 d后检测到脱水蛋白样蛋白(28和32 kDa),但在水分充足植物的种子中未检测到。在成熟种子中,在干旱胁迫植物和水分充足植物的种子中检测到脱水蛋白样蛋白(28、32和34 kDa)。在田间,在灌溉和非灌溉条件下,类似脱水蛋白的蛋白质积累类似,在R sub(5)(R sub(6))之后第22天首次检测到脱水蛋白(28和32 kDa)。 R sub(5)(种子生理成熟)后43 d收获的种子中脱水蛋白样蛋白的积累最大。

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