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初步研究解释链霉菌(Act12)如何作用于植物提取:土壤重金属提取、种子发芽和植物生长。

A preliminary study to explain how Streptomyces pactum (Act12) works on phytoextraction: soil heavy metal extraction, seed germination, and plant growth.

机构信息

School of Petroleum and Environment Engineering, Yan'an University, Yan'an, 716000, Shaanxi, China.

School of Ecology and Environment, Northwestern Polytechnical University, Xi'an, 710129, Shaanxi, China.

出版信息

Environ Monit Assess. 2023 May 29;195(6):757. doi: 10.1007/s10661-023-11340-4.

Abstract

Streptomyces pactum (Act12) can both promote plant growth and strengthen heavy metal mobilization. Nevertheless, the mechanisms of how Act12 works during the phytoextraction process are still unknown. The present work investigated whether the metabolites produced by Act12 could influence the seed germination and the growth of potherb mustard and explored its mobilizing effect on soil cadmium (Cd) and zinc (Zn). The results showed that the germination potential and rate of potherb mustard seed treated with Act12 fermentation broth were 1.0- and 0.32-folds higher than those of control, probably due to the interruption of seed dormant stage. We also found that Act12 inoculation not only promoted the dry biomass (6.82%) of potherb mustard, but also increased the leaf chlorophyll (11.8%) and soluble protein (0.35%) production. The boosted seed germination rate under Act12 treatment (up to 63.3%) indicated that Act12 enhanced the resistance of potherb mustard seeds to Cd and Zn and alleviated their physiological toxicity. The generated metabolites during the Act12 fermentation posed positive impact on the availability of soil Cd and Zn. These findings bring new insight into the Act12-assisted phytoextraction of Cd and Zn from contaminated soils.

摘要

吸水链霉菌(Act12)既能促进植物生长,又能增强重金属的迁移能力。然而,Act12 在植物提取过程中的作用机制尚不清楚。本研究探讨了 Act12 产生的代谢产物是否会影响芥菜种子的萌发和生长,并探索了其对土壤镉(Cd)和锌(Zn)的活化作用。结果表明,用 Act12 发酵液处理的芥菜种子的发芽势和发芽率分别比对照提高了 1.0 倍和 0.32 倍,这可能是由于打破了种子休眠期。我们还发现,Act12 接种不仅促进了芥菜的干生物量(6.82%),而且增加了叶片叶绿素(11.8%)和可溶性蛋白(0.35%)的产生。Act12 处理下种子发芽率的提高(高达 63.3%)表明,Act12 增强了芥菜种子对 Cd 和 Zn 的抗性,减轻了它们的生理毒性。Act12 发酵过程中产生的代谢产物对土壤 Cd 和 Zn 的有效性有积极影响。这些发现为利用 Act12 辅助从污染土壤中提取 Cd 和 Zn 提供了新的思路。

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