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应用富含植物激素的甲基营养型放线菌NIMMe6培养滤液提取物缓解小麦幼苗的盐胁迫

Mitigation of Salinity Stress in Wheat Seedlings Due to the Application of Phytohormone-Rich Culture Filtrate Extract of Methylotrophic Actinobacterium sp. NIMMe6.

作者信息

Meena Kamlesh K, Bitla Utkarsh M, Sorty Ajay M, Singh Dhananjaya P, Gupta Vijai K, Wakchaure G C, Kumar Satish

机构信息

ICAR-National Institute of Abiotic Stress Management, Baramati, India.

ICAR-National Bureau of Agriculturally Important Microorganisms, Mau, India.

出版信息

Front Microbiol. 2020 Sep 18;11:2091. doi: 10.3389/fmicb.2020.02091. eCollection 2020.

Abstract

Salinity stress is an important plant growth limiting factor influencing crop productivity negatively. Microbial interventions for salinity stress mitigation have invited significant attention due to the promising impacts of interactive associations on the intrinsic mechanisms of plants. We report the impact of microbial inoculation of a halotolerant methylotrophic actinobacterium ( sp. NIMMe6; LC140963) and seed coating of its phytohormone-rich bacterial culture filtrate extract (BCFE) on wheat seedlings grown under saline conditions. Different plant-growth-promoting (PGP) attributes of the bacterium in terms of its growth in N-limiting media and siderophore and phytohormone [indole-3-acetic acid (IAA) and salicylic acid] production influenced plant growth positively. Microbial inoculation and priming with BCFE resulted in improved germination (92% in primed seeds at 10 dS m), growth, and biochemical accumulation (total protein 42.01 and 28.75 mg g in shoot and root tissues at 10 dS m in BCFE-primed seeds) and enhanced the activity level of antioxidant enzymes (superoxide dismutase, catalase, peroxidase, and ascorbate peroxidase) to confer stress mitigation. Biopriming with BCFE proved impactful. The BCFE application has further influenced the overexpression of defense-related genes in the seedlings grown under salinity stress condition. Liquid chromatography-mass spectrometry-based characterization of the biomolecules in the BCFE revealed quantification of salicylate and indole-3-acetate (Rt 4.978 min, 138.1 and 6.177 min, 129.1), respectively. The high tolerance limit of the bacterium to 10% NaCl in the culture media suggested its possible survival and growth under high soil salinity condition as microbial inoculant. The production of a high quantity of IAA (45.6 μg ml of culture filtrate) by the bacterium reflected its capability to not only support plant growth under salinity condition but also mitigate stress due to the impact of phytohormone as defense mitigators. The study suggested that although microbial inoculation offers stress mitigation in plants, the phytohormone-rich BCFE from sp. NIMMe6 has potential implications for defense against salinity stress in wheat.

摘要

盐胁迫是一个重要的限制植物生长的因素,对作物生产力产生负面影响。由于微生物与植物的相互作用对植物内在机制具有潜在影响,微生物干预缓解盐胁迫已引起广泛关注。我们报告了接种耐盐甲基营养型放线菌(菌株NIMMe6;LC140963)及其富含植物激素的细菌培养滤液提取物(BCFE)种子包衣对盐胁迫条件下生长的小麦幼苗的影响。该细菌在氮限制培养基中的生长以及铁载体和植物激素[吲哚-3-乙酸(IAA)和水杨酸]的产生等不同的植物生长促进(PGP)特性对植物生长有积极影响。接种微生物并用BCFE引发处理导致发芽率提高(在10 dS m时,经引发处理的种子发芽率为92%)、生长改善以及生化物质积累增加(在10 dS m时,BCFE引发处理的种子地上部和根部组织中总蛋白分别为42.01和28.75 mg g),并提高了抗氧化酶(超氧化物歧化酶、过氧化氢酶、过氧化物酶和抗坏血酸过氧化物酶)的活性水平以减轻胁迫。用BCFE进行生物引发被证明是有效的。BCFE的应用进一步影响了盐胁迫条件下生长的幼苗中防御相关基因的过表达。基于液相色谱-质谱联用对BCFE中生物分子的表征分别揭示了水杨酸盐和吲哚-3-乙酸盐的定量(保留时间4.978分钟,138.1;以及6.177分钟,129.1)。该细菌在培养基中对10% NaCl的高耐受极限表明其作为微生物接种剂在高土壤盐度条件下可能存活和生长。该细菌产生大量IAA(45.6 μg/ml培养滤液)反映了其不仅能够在盐胁迫条件下支持植物生长,还能由于植物激素作为防御缓解剂的作用而减轻胁迫。该研究表明,虽然接种微生物能减轻植物胁迫,但来自菌株NIMMe6的富含植物激素的BCFE对小麦抵御盐胁迫具有潜在意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee57/7531191/bc5d92b9a69e/fmicb-11-02091-g001.jpg

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