首页> 外文期刊>Journal of Plant Physiology >Polyamine catabolism is involved in response to salt stress in soybean hypocotyls.
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Polyamine catabolism is involved in response to salt stress in soybean hypocotyls.

机译:多胺分解代谢参与大豆下胚轴对盐胁迫的响应。

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The possible relationship between polyamine catabolism mediated by copper-containing amine oxidase and the elongation of soybean hypocotyls from plants exposed to NaCl has been studied. Salt treatment reduced values of all hypocotyl growth parameters. In vitro, copper-containing amine oxidase activity was up to 77-fold higher than that of polyamine oxidase. This enzyme preferred cadaverine over putrescine and it was active even under the saline condition. On the other hand, saline stress increased spermine and cadaverine levels, and the in vivo copper-containing amine oxidase activity in the elongation zone of hypocotyls. The last effect was negatively modulated by the addition of the copper-containing amine oxidase inhibitor N,N'-diaminoguanidine. In turn, plants treated with the inhibitor showed a significant reduction of reactive oxygen species in the elongation zone, even in the saline situation. In addition, plants grown in cadaverine-amended culture medium showed increased hypocotyl length either in saline or control conditions and this effect was also abolished by N,N'-diaminoguanidine. Taken together, our results suggest that the activity of the copper-containing amine oxidase may be partially contributing to hypocotyl growth under saline stress, through the production of hydrogen peroxide by polyamine catabolism and reinforce the importance of polyamine catabolism and hydrogen peroxide production in the induction of salt tolerance in plants.
机译:研究了含铜胺氧化酶介导的多胺分解代谢与暴露于NaCl的植物的大豆下胚轴伸长之间的可能关系。盐处理降低了所有下胚轴生长参数的值。 在体外,含铜的胺氧化酶活性比聚胺氧化酶高77倍。该酶比尸胺更胜于尸胺,即使在盐碱条件下也具有活性。另一方面,盐水胁迫增加了精子和尸胺的水平,并在下胚轴的延伸区增加了体内含铜的胺氧化酶活性。通过添加含铜的胺氧化酶抑制剂N,N'-二氨基胍来负面调节最后一个作用。反过来,用抑制剂处理过的植物即使在生理盐水中,在伸长区的活性氧种类也显着减少。另外,在尸胺修饰的培养基中生长的植物在盐水或对照条件下显示出增加的下胚轴长度,并且这种作用也被N,N′-二氨基胍消除。两者合计,我们的结果表明,含铜胺氧化酶的活性可能部分地通过盐通过多胺分解代谢产生过氧化氢来促进盐胁迫下胚轴的生长,并增强了多胺分解代谢和过氧化氢在诱导中的重要性。植物的耐盐性

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