Kumawat Kailash Chand, Sharma Poonam, Nagpal Sharon, Gupta R K, Sirari Asmita, Nair Ramakrishnan Madhavan, Bindumadhava H, Singh Sudeep
Department of Microbiology, Punjab Agricultural University, Ludhiana, India.
Department of Plant Breeding and Genetics, Punjab Agricultural University, Ludhiana, India.
Front Microbiol. 2021 Jan 15;11:600576. doi: 10.3389/fmicb.2020.600576. eCollection 2020.
Soil microbes play a vital role in improving plant growth, soil health, ameliorate biotic/abiotic stress and enhance crop productivity. The present study was aimed to investigate a coordinated effect of compatible consortium [salt tolerating and rhizobacterium with 1-aminocyclopropane-1-carboxylate (ACC) deaminase] in enhancing plant growth promoting (PGP) traits, symbiotic efficiency, nutrient acquisition, anti-oxidative enzymes, grain yield and associated profitability in spring mungbean. We identified a non-pathogenic compatible sp. LSMR-32 (MH644039.1) and LSMRS-3 (MH644178.1) from salt affected areas of Punjab, India and the same were assessed to develop consortium biofertilizer based on salt tolerance, multifarious PGP traits, antagonistic defense activities and presence of H, , , and genes. Indole Acetic acid (IAA), -solubilization, biofilm formation, exo-polysaccharides, siderophore, salt tolerance, ACC deaminase activities were all found highly significant in dual inoculant (LSMR-32 + LSMRS-3) treatment compared to LSMR-32 alone. Under saline soil conditions, dual inoculant showed a higher seed germination, plant height, biomass, chlorophyll content and macro and micro-nutrient uptake, than un-inoculated control. However, symbiotic (nodulation, nodule biomass and leghaemoglobin content) and soil quality parameters (phosphatase and soil dehydrogenase enzymes) increased numerically with LSMR-32 + LSMRS-3 over sp. LSMR-32 alone. Dual bacterial inoculation (LSMR-32 + LSMRS-3) increased the proline content (2.05 fold), anti-oxidative enzymes ., superoxide dismutase (1.50 fold), catalase (1.43 fold) and peroxidase (3.88 folds) in contrast to control treatment. Decreased Na accumulation and increased K uptake resulted in favorable K/Na ratio through ion homeostasis. Co-inoculation of sp. LSMR-32 and LSMRS-3 significantly improved the grain yield by 8.92% and led to superior B: C ratio over sp. alone under salt stress. To best of our knowledge this is perhaps the first field report from Indian soils that largely describes dual inoculation of sp. LSMR-32 and LSMRS-3 and the same can be considered as a game-changer approach to simultaneously induce salt tolerance and improve productivity in spring mungbean under saline stress conditions.
土壤微生物在促进植物生长、改善土壤健康、缓解生物/非生物胁迫以及提高作物生产力方面发挥着至关重要的作用。本研究旨在探讨兼容菌剂组合[耐盐且含有1-氨基环丙烷-1-羧酸(ACC)脱氨酶的根际细菌]对促进春绿豆植物生长特性、共生效率、养分获取、抗氧化酶、籽粒产量及相关效益的协同作用。我们从印度旁遮普邦的盐渍化地区鉴定出了非致病性兼容菌株LSMR-32(MH644039.1)和LSMRS-3(MH644178.1),并基于耐盐性、多种植物生长促进特性、拮抗防御活性以及H、、、和基因的存在情况,对其进行评估以开发复合生物肥料。与单独接种LSMR-32相比,在双重接种(LSMR-32 + LSMRS-3)处理中,吲哚乙酸(IAA)、解磷作用、生物膜形成、胞外多糖、铁载体、耐盐性、ACC脱氨酶活性均表现出高度显著。在盐渍土壤条件下,双重接种处理的种子发芽率、株高、生物量、叶绿素含量以及大量和微量养分吸收均高于未接种的对照。然而,与单独接种LSMR-32相比,LSMR-32 + LSMRS-3组合处理的共生指标(结瘤、根瘤生物量和豆血红蛋白含量)和土壤质量参数(磷酸酶和土壤脱氢酶)在数值上有所增加。与对照处理相比,双重细菌接种(LSMR-32 + LSMRS-3)使脯氨酸含量增加了2.05倍,抗氧化酶如超氧化物歧化酶增加了1.50倍、过氧化氢酶增加了1.43倍、过氧化物酶增加了3.88倍。通过离子稳态,钠积累减少和钾吸收增加导致了有利的钾/钠比。在盐胁迫下,共同接种LSMR-32和LSMRS-3显著提高了8.92%的籽粒产量,并导致了比单独接种LSMR-32更高的投入产出比。据我们所知,这可能是来自印度土壤的第一份田间报告,主要描述了LSMR-32和LSMRS-3的双重接种,这一方法可被视为在盐胁迫条件下同时诱导春绿豆耐盐性和提高生产力的一种变革性方法。