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对热敏感性不同的小麦品种种子内生细菌进行分析。

Seed endophytic bacterial profiling from wheat varieties of contrasting heat sensitivity.

作者信息

Aswini Krishnan, Suman Archna, Sharma Pushpendra, Singh Pradeep Kumar, Gond Shrikant, Pathak Devashish

机构信息

Division of Microbiology, ICAR-Indian Agricultural Research Institute, New Delhi, India.

Division of Genetics, ICAR-Indian Agricultural Research Institute, New Delhi, India.

出版信息

Front Plant Sci. 2023 Apr 6;14:1101818. doi: 10.3389/fpls.2023.1101818. eCollection 2023.

Abstract

Wheat yield can be limited by many biotic and abiotic factors. Heat stress at the grain filling stage is a factor that reduces wheat production tremendously. The potential role of endophytic microorganisms in mitigating plant stress through various biomolecules like enzymes and growth hormones and also by improving plant nutrition has led to a more in-depth exploration of the plant microbiome for such functions. Hence, we devised this study to investigate the abundance and diversity of wheat seed endophytic bacteria (WSEB) from heat (heat susceptible, GW322) and heat (heat tolerant, HD3298 and HD3271) varieties by culturable and unculturable approaches. The results evidenced that the culturable diversity was higher in the heat variety than in the heat variety and was found to be dominant among the 10 different bacterial genera identified. Though the WSEB population was higher in the heat variety, a greater number of isolates from the heat variety showed tolerance to higher temperatures (up to 55°C) along with PGP activities such as indole acetic acid (IAA) production and nutrient acquisition. Additionally, the metagenomic analysis of seed microbiota unveiled higher bacterial diversity, with a predominance of the phyla Proteobacteria covering >50% of OTUs, followed by Firmicutes and Actinobacteria. There were considerable variations in the abundance and diversity between heat sensitivity contrasting varieties, where notably more thermophilic bacterial OTUs were observed in the heat samples, which could be attributed to conferring tolerance against heat stress. Furthermore, exploring the functional characteristics of culturable and unculturable microbiomes would provide more comprehensive information on improving plant growth and productivity for sustainable agriculture.

摘要

小麦产量会受到多种生物和非生物因素的限制。灌浆期的热胁迫是大幅降低小麦产量的一个因素。内生微生物通过酶和生长激素等各种生物分子减轻植物胁迫以及改善植物营养的潜在作用,促使人们对植物微生物组的此类功能进行更深入的探索。因此,我们设计了本研究,通过可培养和不可培养的方法,调查来自热敏品种(GW322)和耐热品种(HD3298和HD3271)的小麦种子内生细菌(WSEB)的丰度和多样性。结果表明,可培养多样性在耐热品种中高于热敏品种,且在所鉴定的10个不同细菌属中占主导地位。尽管WSEB群体在耐热品种中数量更多,但来自热敏品种的更多分离株表现出对更高温度(高达55°C)的耐受性以及吲哚乙酸(IAA)产生和养分获取等植物促生活性。此外,种子微生物群的宏基因组分析揭示了更高的细菌多样性,其中变形菌门占OTU的比例超过50%,占主导地位,其次是厚壁菌门和放线菌门。热敏性不同的品种之间在丰度和多样性上存在显著差异,其中在耐热样本中明显观察到更多嗜热细菌OTU,这可能归因于其赋予了对热胁迫的耐受性。此外,探索可培养和不可培养微生物组的功能特性将为改善植物生长和生产力以实现可持续农业提供更全面的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c3f/10117849/3938e916d552/fpls-14-1101818-g001.jpg

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