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叶面喷施硒和赤霉素通过调节根际土壤代谢物、细菌群落和镉形态之间的相互作用来减少大豆中的镉积累。

Foliar application of selenium and gibberellins reduce cadmium accumulation in soybean by regulating interplay among rhizosphere soil metabolites, bacteria community and cadmium speciation.

作者信息

Jiang Zhao, Wang Jianmin, Cao Kaiqin, Liu Yiyan, Wang Baoxin, Wang Xinyue, Wang Yuying, Jiang Duo, Cao Bo, Zhang Ying

机构信息

School of Resources & Environment, Northeast Agricultural University, Harbin 150030, PR China.

School of Resources & Environment, Northeast Agricultural University, Harbin 150030, PR China.

出版信息

J Hazard Mater. 2024 Sep 5;476:134868. doi: 10.1016/j.jhazmat.2024.134868. Epub 2024 Jun 9.

Abstract

Both selenium (Se) and gibberellins (GA3) can alleviate cadmium (Cd) toxicity in plants. However, the application of Se and GA3 as foliar spray to against Cd stress on soybean and its related mechanisms have been poorly explored. Herein, this experiment evaluated the effects of Se and GA3 alone and combined application on soybean rhizosphere microenvironment, Cd accumulation and growth of soybean seedlings. The results revealed that both Se and GA3 can effectively decrease the accumulation of Cd in soybean seedlings. Foliar application of Se, GA3 and their combination reduced Cd contents in soybean seedlings respectively by 21.70 %, 27.53 % and 45.07 % when compared with the control treatment, suggest a synergistic effect of Se and GA3 in decreasing Cd accumulation. Se and GA3 also significantly increased diversity and abundance of the metabolites in rhizosphere, which consequently played an important role in shaping rhizosphere bacteria community and improve rhizosphere soil physicochemical properties of Cd contaminated soil, as well as decreased the Cd available forms contents but enhance the immobilized form levels. Overall, this study affords a novel approach on mitigating Cd accumulation in soybean seedlings which is attributed to Se and GA3 regulated interplay among rhizosphere soil metabolites, bacteria community and cadmium speciation.

摘要

硒(Se)和赤霉素(GA3)都可以减轻植物中的镉(Cd)毒性。然而,将Se和GA3作为叶面喷施剂来对抗大豆镉胁迫及其相关机制的研究还很少。在此,本实验评估了单独施用和联合施用Se和GA3对大豆根际微环境、Cd积累及大豆幼苗生长的影响。结果表明,Se和GA3均能有效降低大豆幼苗中Cd的积累。与对照处理相比,叶面喷施Se、GA3及其组合分别使大豆幼苗中的Cd含量降低了21.70%、27.53%和45.07%,表明Se和GA3在降低Cd积累方面具有协同作用。Se和GA3还显著增加了根际代谢物的多样性和丰度,这进而在塑造根际细菌群落以及改善Cd污染土壤的根际土壤理化性质方面发挥了重要作用,同时降低了Cd的有效态含量但提高了固定态水平。总体而言,本研究提供了一种减轻大豆幼苗Cd积累的新方法,这归因于Se和GA3对根际土壤代谢物、细菌群落和镉形态之间相互作用的调节。

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