互花米草对硫的沉积促进了其在镉污染滨海湿地的生态适应性。

IF 9.7 1区 环境科学与生态学 Q1 AGRICULTURAL ENGINEERING Bioresource Technology Pub Date : 2025-01-12 DOI:10.1016/j.biortech.2025.132069
Zhanrui Leng, Jing Liu, Chunjiang He, Zhiquan Wang, Shengbing He, Daolin Du, Jian Li
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引用次数: 0

摘要

入侵互花米草对滨海湿地生态系统构成重大威胁。通过温室控制试验研究了硫在镉污染滨海湿地互花蓟马入侵中的作用。结果表明,增加的S沉降显著促进了沉积物中酸性挥发性硫的形成,从而使Cd对植物的生物利用度降低了41%。此外,添加S通过提高碳氮比和必需矿质元素浓度提高了植株的养分吸收和胁迫耐受性。这些生理生化变化,包括光合作用的增强、碳水化合物储存的增加和抗氧化能力的提高,最终使互花草的茎部和根部生物量分别增加了15%和31%,提高了竞争能力。本研究结果强调了S在促进互花葡萄入侵中的关键作用。可以制定有效的策略来控制互花草的蔓延,保护沿海生态系统。
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Deposition of sulfur by Spartina alterniflora promoted its ecological adaptability in cadmium-polluted coastal wetlands.

Invasive Spartina alterniflora poses a significant threat to coastal wetland ecosystems. This study investigated the role of sulfur (S) in facilitating the invasion of S. alterniflora in cadmium (Cd)-contaminated coastal wetlands by greenhouse-control-experiment. Results demonstrate that increased S deposition significantly enhanced the formation of acid-volatile sulfur in sediments, thereby reducing the bioavailability of Cd to plants by 41%. Additionally, S supplementation improved plant nutrient uptake and stress tolerance by increasing the C/N ratio and the concentrations of essential mineral elements. These physiological and biochemical changes, including enhanced photosynthesis, increased carbohydrate storage, and improved antioxidant capacity, ultimately contributed to increased shoot and root biomass production by 15% and 31% respectively, and the competitive ability of S. alterniflora. The findings of this study highlight the critical role of S in promoting the invasion of S. alterniflora. Effective strategies can be developed to control the spread of S. alterniflora and protect coastal ecosystems.

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来源期刊
Bioresource Technology
Bioresource Technology 工程技术-能源与燃料
CiteScore
20.80
自引率
19.30%
发文量
2013
审稿时长
12 days
期刊介绍: Bioresource Technology publishes original articles, review articles, case studies, and short communications covering the fundamentals, applications, and management of bioresource technology. The journal seeks to advance and disseminate knowledge across various areas related to biomass, biological waste treatment, bioenergy, biotransformations, bioresource systems analysis, and associated conversion or production technologies. Topics include: • Biofuels: liquid and gaseous biofuels production, modeling and economics • Bioprocesses and bioproducts: biocatalysis and fermentations • Biomass and feedstocks utilization: bioconversion of agro-industrial residues • Environmental protection: biological waste treatment • Thermochemical conversion of biomass: combustion, pyrolysis, gasification, catalysis.
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