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首页> 外文期刊>Scientific reports. >Elevated temperature altered photosynthetic products in wheat seedlings and organic compounds and biological activity in rhizopshere soil under cadmium stress
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Elevated temperature altered photosynthetic products in wheat seedlings and organic compounds and biological activity in rhizopshere soil under cadmium stress

机译:镉胁迫下小麦幼苗中光合产物和有机化合物的温度改变及根际土壤的生物活性

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The objective of this study was to investigate the effects of slightly elevated atmospheric temperature in the spring on photosynthetic products in wheat seedlings and on organic compounds and biological activity in rhizosphere soil under cadmium (Cd) stress. Elevated temperature was associated with increased soluble sugars, reducing sugars, starch, and total sugars, and with decreased amino acids in wheat seedlings under Cd stress. Elevated temperature improved total soluble sugars, free amino acids, soluble phenolic acids, and organic acids in rhizosphere soil under Cd stress. The activity of amylase, phenol oxidase, invertase, β-glucosidase, and l -asparaginase in rhizosphere soil was significantly improved by elevated temperature under Cd stress; while cellulase, neutral phosphatase, and urease activity significantly decreased. Elevated temperature significantly improved bacteria, fungi, actinomycetes, and total microorganisms abundance and fluorescein diacetate activity under Cd stress. In conclusion, slightly elevated atmospheric temperature in the spring improved the carbohydrate levels in wheat seedlings and organic compounds and biological activity in rhizosphere soil under Cd stress in the short term. In addition, elevated atmospheric temperature in the spring stimulated available Cd by affecting pH, DOC, phenolic acids, and organic acids in rhizosphere soil, which resulted in the improvement of the Cd uptake by wheat seedlings.
机译:这项研究的目的是调查春季略微升高的温度对镉胁迫下小麦幼苗光合产物以及根际土壤中有机化合物和生物活性的影响。温度升高与镉胁迫下小麦幼苗中的可溶性糖增加,糖,淀粉和总糖减少,氨基酸减少有关。升高温度可改善镉胁迫下根际土壤中的总可溶性糖,游离氨基酸,可溶性酚酸和有机酸。镉胁迫下,高温下根际土壤中淀粉酶,酚氧化酶,转化酶,β-葡萄糖苷酶和1-天冬酰胺酶的活性显着提高。而纤维素酶,中性磷酸酶和脲酶活性显着下降。在镉胁迫下,高温显着改善了细菌,真菌,放线菌和总微生物的丰度,以及双乙酸荧光素的活性。综上所述,春季短期升高的气温短期内改善了Cd胁迫下小麦幼苗中的碳水化合物含量和有机化合物以及根际土壤的生物活性。此外,春季大气温度升高通过影响根际土壤中的pH值,DOC,酚酸和有机酸来刺激有效Cd,从而提高了小麦幼苗对Cd的吸收。

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