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土壤铅污染对桑树地上生物量和叶片生物活性化合物的影响。

Pb contaminated soil influence on aboveground biomass and bioactive compounds in leaves of mulberry.

机构信息

College of Biotechnology, Jiangsu University of Science and Technology, Sericultural Research Institute, Chinese Academy of Agricultural Sciences, Zhenjiang, China.

出版信息

Int J Phytoremediation. 2022;24(10):1100-1106. doi: 10.1080/15226514.2021.2002808. Epub 2021 Nov 17.

Abstract

This study investigated the effects of soil lead (Pb), biochar, and partial root zone drought (PRD) on mulberry ( L.) branches and leaves biomass, Pb accumulation, and bioactive compounds including 1-deoxynojirimycin (DNJ) and flavonoids. Three-factor pot experiments were conducted with biochar, PRD, and soil Pb at four concentration levels (0, 50, 200, and 800 mg kg). Results revealed that mulberry aboveground biomass did not decrease significantly across the soil Pb levels. Pb concentration of mulberry leaves do not increase significantly when soil Pb was 200 mg kg; however, it significantly accumulated under 800 mg kg. There was a dose-effect between the Pb concentration in branches and the soil Pb levels. Mulberry leaf flavonoids were affected by the interaction of soil Pb and biochar. The interaction between two of the three factors significantly affected leaves DNJ concentration. The combination of biochar and PRD maintained the biomass of mulberry and did not significantly increase Pb in leaves under 200 mg kg soil Pb concentration. In summary, mulberry has a higher resistance to soil Pb stress, and it can be planted in moderate Pb-contaminated soils for no loss of biomass and can safely harvest the branches and leaves.Novelty statementAn economic benefit is a key to the practical application and sustainability of phytoremediation. Based on this, we studied the effects of soil Pb on biomass, Pb accumulation, and bioactive substance concentration of harvesting organs in mulberry.Phytoremediation is not isolated, and techniques, such as soil amendments and water management also play a role. In this study, we found that biochar and partial root-zone irrigation had a synergistic effect on the response of mulberry to soil Pb, which could be co-applied in the phytoremediation of lead-contaminated soil.The concentration of heavy metals is the key to ensuring product safety in heavy metal contaminated soil. We found that Pb concentration in leaf and stem of mulberry did not significantly increase under 200 mg kg soil Pb, while increased at 800 mg kg soil Pb. Therefore, planting mulberry on 200 mg kg Pb contaminated soil can safely harvest branches and leaves.

摘要

本研究探讨了土壤铅(Pb)、生物炭和局部根区干旱(PRD)对桑树(L.)枝条和叶片生物量、Pb 积累以及包括 1-脱氧野尻霉素(DNJ)和类黄酮在内的生物活性化合物的影响。采用生物炭、PRD 和土壤 Pb 四浓度水平(0、50、200 和 800mgkg)进行三因素盆试验。结果表明,桑树地上生物量在整个土壤 Pb 水平上没有显著下降。当土壤 Pb 为 200mgkg 时,桑树叶片中的 Pb 浓度没有明显增加;然而,当土壤 Pb 为 800mgkg 时,Pb 显著积累。枝条中 Pb 浓度与土壤 Pb 水平之间存在剂量效应。桑树叶片类黄酮受土壤 Pb 和生物炭的相互作用影响。三个因素中的两个因素的相互作用显著影响叶片 DNJ 浓度。生物炭和 PRD 的组合在 200mgkg 土壤 Pb 浓度下保持桑树生物量,叶片中 Pb 含量没有明显增加。综上所述,桑树对土壤 Pb 胁迫具有较高的抗性,可种植在中度 Pb 污染土壤中,生物量不受损失,可安全收获枝条和叶片。

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