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首页> 外文期刊>African Journal of Agricultural Research >24-Epibrassinolid in the biometry of acclimatization to salinity in two cultivars of Vigna unguiculata (L.) Walp.
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24-Epibrassinolid in the biometry of acclimatization to salinity in two cultivars of Vigna unguiculata (L.) Walp.

机译:在两个Vigna unguiculata(L.)Walp品种的盐度适应性生物测定中,使用了24-表油菜素醇。

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摘要

In order to evaluate the influence of application of brassinosteroid phytohormone in mitigating the effects of salt stress at the height, root growth, leaf area, dry mass of leaf and root, stomatal conductance and transpiration, plants of cowpea bean [Vigna unguiculata (L.)Walp, cultivars BR3 Guariba and BRS Tracuateua, they were sown in a greenhouse in the absence and presence of brassinosteroid (24-epibrassinolid) in concentrations (0.2 and 0.4 μM), under diferent concentrations of NaCl (50 mM and 100 mM). The highest concentration of NaCl was 100 mM, affects plant growth. This treatment reduced by 46% the length of the BRS Tracuateua root, and 82 and 50% stomatal conductance and transpiration of BR3 Guariba respectively. However, the effects of salinity have been attenuated by supplementation as phytohormone. Under effect of treatment interaction Br of 0.4 μM and NaCl of 100 mM, root length and dry mass of leaves was increased by 87 and 37% in Guariba and Tracuateua cultivars concomitantly compared to those under stress by NaCl to 100 mM. For the same concentration of NaCl and Br 0.2 μM, there increases of 88% in stomatal conductance BR3 Guariba. It is suggested a possible regulation of 24-epibrassinolid on photosynthetic mechanisms of cowpea plants, in order to change made promoted stomatal conductance, which may have induced the greatest uptake and sequestration of CO2 thereby allowing the growth processes in plants.
机译:为了评估油菜素类固醇激素的应用对减轻盐胁迫在高度,根生长,叶面积,叶和根的干重,气孔导度和蒸腾作用方面的影响,,豆的植物[Vigna unguiculata(L. Walp,BR3 Guariba和BRS Tracuateua品种,在不同浓度的NaCl(50 mM和100 mM)下,在不存在和存在浓度为0.2和0.4μM的油菜素类固醇(24-表油菜素)的情况下播种在温室中。 NaCl的最高浓度为100 mM,影响植物的生长。这种处理减少了BRS cu草根的长度46%,分别减少了BR3 Guariba的82和50%的气孔导度和蒸腾作用。但是,通过补充植物激素可以减轻盐碱化的影响。在0.4μM的Br和100 mM的NaCl处理相互作用下,与NaCl处理至100 mM的胁迫相比,瓜里巴和Tracuateua品种的根长和叶片干重分别增加了87%和37%。对于相同浓度的NaCl和Br 0.2μM,气孔电导率BR3 Guariba增加88%。建议改变24-表油菜素对e豆植物光合作用的机制,以改变已提高的气孔导度,这可能引起最大的CO 2吸收和隔离,从而允许植物的生长过程。

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