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利用分离出的膝状假单胞菌减轻绿豆植株中的重金属铬、镉和铅并促进其生长

Alleviation of heavy metals chromium, cadmium and lead and plant growth promotion in Vigna radiata L. plant using isolated Pseudomonas geniculata.

作者信息

Madhogaria Barkha, Banerjee Sangeeta, Chakraborty Sohini, Dhak Prasanta, Kundu Atreyee

机构信息

Department of Microbiology, Techno India University, EM-4, Sector-V, Saltlake City, Kolkata, West Bengal, 700091, India.

Department of Chemistry, Techno India University, EM-4, Sector-V, Saltlake City, Kolkata, West Bengal, 700091, India.

出版信息

Int Microbiol. 2025 May;28(Suppl 1):133-149. doi: 10.1007/s10123-024-00546-2. Epub 2024 Jun 25.

Abstract

Plants exposed to heavy metals (HMs) stress negatively affect their development and production capacity. Chromium (Cr), Cadmium (Cd), and Lead (Pb) are the most common hazardous trace metals in agriculture. The physiological, biochemical, and molecular characteristics of crops are being affected. Phytoremediation is a method to alleviate heavy metals from the contaminated soil. The study aims to evaluate the phytoremediation ability of Vigna radiata L. (mung bean) in the absence and the presence of multi-metal tolerant and plant growth promoting Pseudomonas geniculata strain TIU16A3 isolated from soil of tannery industrial estate, Kolkata, West Bengal, India. The strain was further assessed with increasing concentrations of Cr, Cd, and Pb (10, 20, 40, and 80 µg/mL) when the mung bean plant was a test crop. The strain significantly increased plant growth, chlorophyll content, increased level of antioxidant enzymes such as superoxide dismutase, peroxidase, and catalase, and decreased oxidative stress indicators like HO and electrolyte leakage in the presence of Cr, Cd, and Pb as compared to plants grown in the absence of Pseudomonas geniculata strain. Shoot length responsive gene (Aux/IAA) in the presence of heavy metal alone and Pseudomonas geniculata treated Cd and Cr showed higher relative expression of (Aux/IAA) compared to Pb. Due to these intrinsic abilities, Pseudomonas geniculata strain TIU16A3 can be a plant growth promoter and thus can help in the remediation of heavy metal (Cr, Cd, and Pb) contaminated soil.

摘要

暴露于重金属(HMs)胁迫下的植物会对其生长发育和生产能力产生负面影响。铬(Cr)、镉(Cd)和铅(Pb)是农业中最常见的有害微量金属。农作物的生理、生化和分子特性正受到影响。植物修复是一种减轻受污染土壤中重金属的方法。本研究旨在评估在不存在和存在从印度西孟加拉邦加尔各答制革工业区土壤中分离出的耐多金属且促进植物生长的膝状假单胞菌菌株TIU16A3的情况下,绿豆(Vigna radiata L.)的植物修复能力。当绿豆植株作为受试作物时,该菌株在铬、镉和铅浓度不断增加(10、20、40和80μg/mL)的情况下进行了进一步评估。与未接种膝状假单胞菌菌株的植物相比,在存在铬、镉和铅的情况下,该菌株显著促进了植物生长、提高了叶绿素含量、增加了超氧化物歧化酶、过氧化物酶和过氧化氢酶等抗氧化酶的水平,并降低了如羟基自由基(HO)和电解质渗漏等氧化应激指标。与铅相比,单独存在重金属以及经膝状假单胞菌处理的镉和铬条件下,茎长响应基因(Aux/IAA)表现出更高的相对表达量。由于这些内在能力,膝状假单胞菌菌株TIU16A3可以成为一种植物生长促进剂,从而有助于修复受重金属(铬、镉和铅)污染的土壤。

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