Single Super Phosphate Improves Lolium perenne Quality and Rhizosphere Microorganism Structure Under Combined Cadmium and Arsenic Stress.

IF 4.1 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Toxics Pub Date : 2025-09-22 DOI:10.3390/toxics13090805
Toe Toe Maw, Jiangdi Deng, Bo Li, Yanqun Zu, Zuran Li
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Abstract

Cadmium and arsenic co-contamination found in mining actions indicates major effluence in adjacent farmland soils, disturbing the plant physiology and soil's microbial community. Phosphorus (P) plays a vital role in reducing soil contamination from Cd and As bioavailability and uptake by plants. However, the right P sources for remediation approaches are critical and still require further research in Cd- and As-contaminated soil. This study aimed to explore the effects of different phosphorus fertilizer sources on Lolium perenne growth and its physiological and rhizosphere microbial diversity under combined contamination with Cd and As. Pot experiments were performed with seven treatments including SSP (single super phosphate), DAP (diammonium phosphate), MAP (monoammonium phosphate), CaP (calcium phosphate), HighCaP (high calcium phosphate), RP (rock phosphate), and no phosphorus fertilizer application (CK) with five replications in the RCB design. The SSP treatment showed the greatest plant height (15.7 cm), hay yield (3567.6 kg·ha-1), and enhanced antioxidant defense activities. It also achieved the highest phosphorus accumulation rate (0.63 g·kg-1) with reduced Cd and As uptake. In addition, SSP promoted higher non-protein sulfhydryl (NPT) and phytochelatin synthetase (PCs) contents along with γ-glutamylcysteine synthetase (γ-ECS) activity, and enriched the rhizosphere microbial community, where the Sphingomonas abundance was 7.08% higher than for other treatments. Therefore, this result indicates that SSP can improve the yield and physiology in L. perenne, as well as soil the rhizosphere microbial community structure, while reducing Cd and As accumulation in plants under Cd and As stress.

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镉砷复合胁迫下单一超磷酸盐对黑麦草品质和根际微生物结构的改善
在采矿活动中发现的镉和砷共同污染表明邻近农田土壤的主要流出物,扰乱了植物生理和土壤微生物群落。磷(P)在减少植物对镉和砷的生物有效性和吸收中起着至关重要的作用。然而,正确的磷源修复方法是至关重要的,仍然需要进一步研究镉和砷污染土壤。本研究旨在探讨不同磷肥源对镉、砷复合污染下黑麦草生长及其生理和根际微生物多样性的影响。盆栽试验采用5个重复的RCB设计,共设SSP(单超磷)、DAP(磷酸二铵)、MAP(磷酸一铵)、CaP(磷酸钙)、HighCaP(高磷酸钙)、RP(磷酸岩)和不施磷肥(CK) 7个处理。SSP处理株高最高(15.7 cm),干草产量最高(3567.6 kg·ha-1),抗氧化防御活性增强。磷积累速率最高(0.63 g·kg-1), Cd和As吸收减少。此外,SSP提高了非蛋白巯基(NPT)和植物螯合素合成酶(PCs)含量以及γ-谷氨酰半胱氨酸合成酶(γ-ECS)活性,丰富了根际微生物群落,其中鞘氨单胞菌丰度比其他处理高7.08%。综上所述,SSP可以改善二年生l的产量和生理,改善土壤根际微生物群落结构,同时减少Cd和as胁迫下植物体内Cd和as的积累。
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来源期刊
Toxics
Toxics Chemical Engineering-Chemical Health and Safety
CiteScore
4.50
自引率
10.90%
发文量
681
审稿时长
6 weeks
期刊介绍: Toxics (ISSN 2305-6304) is an international, peer-reviewed, open access journal which provides an advanced forum for studies related to all aspects of toxic chemicals and materials. It publishes reviews, regular research papers, and short communications. Our aim is to encourage scientists to publish their experimental and theoretical results in detail. There is, therefore, no restriction on the maximum length of the papers, although authors should write their papers in a clear and concise way. The full experimental details must be provided so that the results can be reproduced. Electronic files or software regarding the full details of calculations and experimental procedure can be deposited as supplementary material, if it is not possible to publish them along with the text.
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