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小麦-龙葵间作对 Cd 污染土壤中植物和土壤细菌群落积累 Cd 的影响。

Effect of Wheat-Solanum nigrum L. intercropping on Cd accumulation by plants and soil bacterial community under Cd contaminated soil.

机构信息

Institute of Agricultural Resources and Regional Planning, Chinese Academy of Agricultural Sciences, National Engineering Laboratory for Improving Quality of Arable Land, Key Laboratory of Plant Nutrition and Fertilizer, Ministry of Agriculture and Rural Affairs, Beijing 100081, China.

Department of Soil and Water Sciences, Tropical Research and Education Center, IFAS, University of Florida, Homestead, FL 33031, USA.

出版信息

Ecotoxicol Environ Saf. 2020 Dec 15;206:111383. doi: 10.1016/j.ecoenv.2020.111383. Epub 2020 Oct 24.

Abstract

Using accumulators for intercropping in agricultural production can change the heavy metal concentration in the target plants. This study aims to investigate how intercropping wheat (Triticum aestivum L.) and Solanum nigrum L. affects soil bacterial community and cadmium (Cd) absorption in response to Cd-contaminated soil. We compared the concentrations and accumulations of Cd by plants, the activities of soil enzymes and the bacterial community structures of rhizosphere soil in monoculture and intercropping system. Principal component analysis (PCA) ordinations showed that soil bacterial communities were significantly separated by MW and IW, which illustrated intercropping with Solanum nigrum L. impacted the bacterial community structure of wheat. Firstly, the results showed that the biomass of shoots and roots in intercropped wheat (IW) were significantly decreased by 16.19% and 29.38% compared with monoculture wheat (MW) after 60 days after transplanting (DAT). Secondly, the Cd concentration and accumulation of shoots in IW was higher than MW. The Cd accumulation of IW shoots and roots were increased 12.87% and 0.98%, respectively after 60 days DAT. Besides, the enzymes activity [catalase (CAT), urease (UA) and alkaline phosphatase (ALP)] of IW were decreased 35%, 6% and 21%, respectively after 60 days DAT. Finally, the diversity indexes [Abundance-based Coverage Estimator (ACE), Chao and InvSimpson] of IW were lower than MW. These results indicated that intercropping with Solanum nigrum L. inhibited the wheat growth and decreased the bacterial community diversity in wheat rhizosphere, increased the Cd concentration and accumulation in plant tissues of wheat. Therefore, intercropping Solanum nigrum L. and wheat with Cd-contaminated soil might increase the risk of excessive Cd in wheat.

摘要

在农业生产中使用根瘤菌进行间作可以改变目标植物中的重金属浓度。本研究旨在探讨间作小麦(Triticum aestivum L.)和龙葵(Solanum nigrum L.)如何影响受镉污染土壤中土壤细菌群落和镉(Cd)吸收。我们比较了单作和间作系统中植物对 Cd 的浓度和积累、土壤酶活性以及根际土壤细菌群落结构。主成分分析(PCA)排序表明,MW 和 IW 显著分离了土壤细菌群落,这表明间作龙葵 L. 影响了小麦的细菌群落结构。首先,结果表明,与单作小麦(MW)相比,间作小麦(IW)的地上部和根系生物量分别在移栽后 60 天(DAT)时降低了 16.19%和 29.38%。其次,IW 地上部和根系的 Cd 浓度和积累均高于 MW。IW 地上部和根系的 Cd 积累分别在 60 DAT 后增加了 12.87%和 0.98%。此外,IW 的酶活性[过氧化氢酶(CAT)、脲酶(UA)和碱性磷酸酶(ALP)]在 60 DAT 后分别降低了 35%、6%和 21%。最后,IW 的多样性指数[基于丰度的覆盖估计值(ACE)、Chao 和 InvSimpson]低于 MW。这些结果表明,间作龙葵 L. 抑制了小麦的生长,降低了小麦根际细菌群落的多样性,增加了植物组织中 Cd 的浓度和积累。因此,间作龙葵 L. 和受 Cd 污染的土壤中的小麦可能会增加小麦中 Cd 过量的风险。

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