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Physiological Mechanisms for High Salt Tolerance in Wild Soybean (Glycine soja) from Yellow River Delta China: Photosynthesis Osmotic Regulation Ion Flux and antioxidant Capacity

机译:中国黄河三角洲野生大豆(大豆大豆)高耐盐性的生理机制:光合作用渗透调节离子通量和抗氧化能力

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摘要

Glycine soja (BB52) is a wild soybean cultivar grown in coastal saline land in Yellow River Delta, China. In order to reveal the physiological mechanisms adapting to salinity, we examined photosynthesis, ion flux, antioxidant system and water status in Glycine soja under NaCl treatments, taking a cultivated soybean, ZH13, as control. Upon NaCl exposure, higher relative water content and water potential were maintained in the leaf of BB52 than ZH13, which might depend on the more accumulation of osmotic substances such as glycinebetaine and proline. Compared with ZH13, activities of antioxidant enzymes including superoxide dismutase, catalase, ascorbate peroxidase and contents of ascorbate, glutathione and phenolics were enhanced to a higher level in BB52 leaf under NaCl stress, which could mitigate the salt-induced oxidative damage in BB52. Consistently, lipid peroxidation indicated by malondialdehyde content was lower in BB52 leaf. Photosynthetic rate (Pn) was decreased by NaCl stress in BB52 and ZH13, and the decrease was greater in ZH13. The decreased Pn in BB52 was mainly due to stomatal limitation. The inhibited activation of rubisco enzyme in ZH13 due to the decrease of rubisco activase content became an important limiting factor of Pn, when NaCl concentration increased to 200 mM. Rubisco activase in BB52 was not affected by NaCl stress. Less negative impact in BB52 derived from lower contents of Na+ and Cl- in the tissues, and non-invasive micro-test technique revealed that BB52 roots had higher ability to extrude Na+ and Cl-. Wild soybean is a valuable genetic resource, and our study may provide a reference for molecular biologist to improve the salt tolerance of cultivated soybean in face of farmland salinity.
机译:大豆大豆(BB52)是在中国黄河三角洲沿海盐碱地上种植的一种野生大豆品种。为了揭示适应盐度的生理机制,我们以栽培大豆ZH13为对照,研究了NaCl处理下甘氨酸大豆的光合作用,离子通量,抗氧化系统和水分状况。暴露于NaCl后,BB52叶片中的相对水分含量和水势比ZH13更高,这可能取决于诸如甘氨酸甜菜碱和脯氨酸等渗透物质的积累。与ZH13相比,NaCl胁迫下BB52叶片中的超氧化物歧化酶,过氧化氢酶,抗坏血酸过氧化物酶,抗坏血酸,谷胱甘肽和酚类抗氧化剂的活性均提高至较高水平,可以减轻盐对BB52的氧化损伤。一致地,由丙二醛含量指示的脂质过氧化在BB52叶片中较低。 NaCl胁迫使BB52和ZH13光合速率(Pn)降低,而ZH13降低幅度更大。 BB52中Pn降低主要是由于气孔限制。当NaCl浓度增加到200 mM时,由于rubisco活化酶含量降低而导致的ZH13中rubisco酶的抑制活化成为Pn的重要限制因素。 BB52中的Rubisco激活酶不受NaCl胁迫的影响。由于组织中Na + 和Cl -含量较低,对BB52的负面影响较小,无创显微测试技术表明BB52根具有较高的挤出能力Na + 和Cl -。野生大豆是一种宝贵的遗传资源,面对农田盐碱化,我们的研究可为分子生物学家提高栽培大豆的耐盐性提供参考。

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  • 期刊名称 other
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  • 年(卷),期 -1(8),12
  • 年度 -1
  • 页码 e83227
  • 总页数 12
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  • 入库时间 2022-08-21 11:20:15

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