Assessing the impact of arsenic on symbiotic and free-living PGPB: plant growth promoting traits, bacterial compatibility and adhesion on soybean seed.

IF 4 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY World journal of microbiology & biotechnology Pub Date : 2024-12-30 DOI:10.1007/s11274-024-04233-2
Romina Del Pilar Pramparo, Mariana Elisa Vezza, Ana Laura Wevar Oller, Melina Andrea Talano, Elizabeth Agostini
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Abstract

Arsenic (As) contamination in agricultural groundwater and soil is a significant economic and health problem worldwide. It inhibits soybean (Glycine max (L.) Merr.) nodulation and biological nitrogen fixation in symbiosis with Bradyrhizobium japonicum E109 (E109), a commonly used rhizobial strain for commercial biofertiliser formulation in Argentina. In the context of sustainable and climate-smart agriculture promoted by FAO, co-inoculating legumes with As-tolerant plant growth-promoting bacteria (PGPB) is suggested as a superior alternative to single inoculation. This study aimed to evaluate the impact of As on plant growth-promoting (PGP) traits -siderophore and indole acetic acid production, phosphate solubilisation, diazotrophic activity and hydrolytic enzymes activity- in E109 and three other PGPB strains: Pseudomonas sp. AW4 (AW4), Bacillus pumilus SF5 (SF5) and Bacillus toyonensis SFC 500-1E (Bt). In addition, bacterial compatibility and adhesion on soybean seed were evaluated. Arsenic significantly reduced PGP traits of E109 even at low concentrations, AW4's traits remained unchanged, while those of SF5 and Bt traits were affected (positively or negatively) only at the highest concentrations tested (500 µM arsenate, 250 µM arsenite). All PGPB strains were compatible with E109 under both control and As-stress conditions. Soybean seed adhesion was reduced for E109, only under As stress. Findings suggest that the effect of As on PGP traits is highly strain-dependent and influenced by As concentration and speciation. AW4, SF5, and Bt strains show promise for co-inoculation with E109 in soybean cultivation.

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评估砷对共生和游离PGPB的影响:大豆种子的植物生长促进性状、细菌相容性和粘附性。
农业地下水和土壤中的砷污染是一个全球性的重大经济和健康问题。抑制大豆(Glycine max (L.))(Merr.)结瘤和生物固氮与日本慢生根瘤菌E109 (E109)共生,这是阿根廷商业生物肥料配方中常用的根瘤菌菌株。在粮农组织倡导的可持续和气候智能农业背景下,建议将豆类与耐砷植物促生长细菌(PGPB)共接种,作为单次接种的更好选择。本研究旨在评价砷对E109和另外3株促生长菌株Pseudomonas sp. AW4 (AW4)、矮芽孢杆菌SF5 (SF5)和toyonensis SFC 500-1E (Bt)的促生长(PGP)性状——铁载体和吲哚乙酸生成、磷酸盐增溶、重氮营养活性和水解酶活性的影响。此外,还对细菌在大豆种子上的相容性和粘附性进行了评价。低浓度砷显著降低了E109的PGP性状,AW4性状保持不变,而SF5和Bt性状仅在最高浓度(500µM砷酸盐,250µM砷酸盐)下受到影响(正或负)。在对照和应激条件下,所有PGPB菌株与E109均具有亲和性。E109只在As胁迫下降低了大豆种子的附着力。结果表明,砷对PGP性状的影响具有高度的品系依赖性,并受砷浓度和物种形成的影响。AW4、SF5和Bt菌株在大豆栽培中与E109共接种具有良好的应用前景。
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来源期刊
World journal of microbiology & biotechnology
World journal of microbiology & biotechnology 工程技术-生物工程与应用微生物
CiteScore
6.30
自引率
2.40%
发文量
257
审稿时长
2.5 months
期刊介绍: World Journal of Microbiology and Biotechnology publishes research papers and review articles on all aspects of Microbiology and Microbial Biotechnology. Since its foundation, the Journal has provided a forum for research work directed toward finding microbiological and biotechnological solutions to global problems. As many of these problems, including crop productivity, public health and waste management, have major impacts in the developing world, the Journal especially reports on advances for and from developing regions. Some topics are not within the scope of the Journal. Please do not submit your manuscript if it falls into one of the following categories: · Virology · Simple isolation of microbes from local sources · Simple descriptions of an environment or reports on a procedure · Veterinary, agricultural and clinical topics in which the main focus is not on a microorganism · Data reporting on host response to microbes · Optimization of a procedure · Description of the biological effects of not fully identified compounds or undefined extracts of natural origin · Data on not fully purified enzymes or procedures in which they are applied All articles published in the Journal are independently refereed.
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