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小巢菜与天蓝苜蓿联合植物促生菌对生菜种植系统和田间条件下重金属植物修复的影响。

Effect of Vicia faba L. var. minor and Sulla coronaria (L.) Medik associated with plant growth-promoting bacteria on lettuce cropping system and heavy metal phytoremediation under field conditions.

机构信息

Centre Biotechnology Borj Cedria, University Tunis El Manar, BP 901, 2050, Hammam-Lif, Tunisia.

Regional Office of Agriculture Development of Monastir, Avenue du Golf Arabe, 5000, Monastir, Tunisia.

出版信息

Environ Sci Pollut Res Int. 2019 Mar;26(8):8125-8135. doi: 10.1007/s11356-019-04302-2. Epub 2019 Jan 28.

Abstract

Researches involving the use of association between legumes and PGPBs (plant growth-promoting bacteria) in heavy metal phytoremediation process were mainly performed for soils highly contaminated. However, even in agriculture soils, with moderate or low contamination levels, plants can accumulate high rates of heavy metals. So, food chain contamination by these metals presents a real threat to animal and human health. This work aimed to evaluate the use of two legumes/PGPB symbioses; Vicia faba var. minor and Sulla coronaria have been inoculated with specific heavy metal-resistant inocula in a crop rotation system with Lactuca sativa as a following crop, in order to assess their effects on soil fertility, lettuce yield, and heavy metal content. Our results showed that legume inoculation significantly enhanced their biomass production, nitrogen and phosphorus content. The use of our symbioses as green manure before lettuce cultivation, as a rotation cropping system, affected positively soil fertility. In fact, we recorded a higher organic matter content, with rapid decomposition in the soil of inoculated plots. Besides, results demonstrated a greater nitrogen and phosphorus content in this soil, especially in the plot cultivated with inoculated V. faba var. minor. The improvement of soil fertility enhanced lettuce yield and its nitrogen and phosphorus content. Moreover, inoculated legumes extracted and accumulated more heavy metals than non-inoculated legumes. Our symbioses play the role of organic trap for heavy metals, making them unavailable for following crops. These facts were supported by lettuce heavy metal content, showing a significant decrease in metal accumulation, mainly zinc and cadmium, in edible parts. Results showed the usefulness of the studied symbioses, as a main part of a rotation system with lettuce. Our symbioses can be suggested for agriculture soil phytoremediation, aiming to enhance non-legume crop yield and limit heavy metal translocation to food chain.

摘要

在重金属植物修复过程中,涉及豆科植物与PGPB(植物促生菌)之间关联的研究主要针对高度污染的土壤进行。然而,即使在中度或低度污染的农业土壤中,植物也可以积累很高水平的重金属。因此,这些金属通过食物链的污染对动物和人类健康构成了真正的威胁。本工作旨在评估两种豆科植物/PGPB 共生体的应用;小巢菜和 Sulla coronaria 已用特定的重金属抗性接种体接种,在以生菜为后续作物的轮作系统中,以评估它们对土壤肥力、生菜产量和重金属含量的影响。我们的结果表明,豆科植物接种显著提高了它们的生物量生产、氮和磷含量。在生菜种植前将我们的共生体用作绿肥,作为轮作系统,对土壤肥力产生了积极影响。事实上,我们记录了接种区土壤中更高的有机质含量,并且分解速度更快。此外,结果表明该土壤中的氮和磷含量更高,特别是在接种小巢菜的地块中。土壤肥力的提高提高了生菜的产量及其氮和磷含量。此外,接种豆科植物比未接种豆科植物提取和积累了更多的重金属。我们的共生体充当重金属的有机陷阱,使其对后续作物不可用。这些事实得到了生菜重金属含量的支持,表明金属积累量显著减少,主要是锌和镉在可食用部分。结果表明,所研究的共生体作为与生菜轮作系统的主要部分是有用的。我们的共生体可用于农业土壤的植物修复,旨在提高非豆科作物的产量并限制重金属向食物链的转移。

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