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与促进植物生长的内生链霉菌相关的盐敏感水稻品种IR29的转录组图谱

Transcriptome Landscapes of Salt-Susceptible Rice Cultivar IR29 Associated with a Plant Growth Promoting Endophytic Streptomyces.

作者信息

Kruasuwan Worarat, Lohmaneeratana Karan, Munnoch John T, Vongsangnak Wanwipa, Jantrasuriyarat Chatchawan, Hoskisson Paul A, Thamchaipenet Arinthip

机构信息

Department of Genetics, Faculty of Sciences, Kasetsart University, Bangkok, Thailand.

Strathclyde Institute of Pharmacy and Biomedical Sciences, University of Strathclyde, Glasgow, UK.

出版信息

Rice (N Y). 2023 Feb 4;16(1):6. doi: 10.1186/s12284-023-00622-7.

Abstract

Plant growth-promoting endophytic (PGPE) actinomycetes have been known to enhance plant growth and mitigate plant from abiotic stresses via their PGP-traits. In this study, PGPE Streptomyces sp. GKU 895 promoted growth and alleviated salt tolerance of salt-susceptible rice cultivar IR29 by augmentation of plant weight and declined ROS after irrigation with 150 mM NaCl in a pot experiment. Transcriptome analysis of IR29 exposed to the combination of strain GKU 895 and salinity demonstrated up and downregulated differentially expressed genes (DEGs) classified by gene ontology and plant reactome. Streptomyces sp. GKU 895 induced changes in expression of rice genes including transcription factors under salt treatment which involved in growth and development, photosynthesis, plant hormones, ROS scavenging, ion transport and homeostasis, and plant-microbe interactions regarding pathogenesis- and symbiosis-related proteins. Taken together, these data demonstrate that PGPE Streptomyces sp. GKU 895 colonized and enhanced growth of rice IR29 and triggered salt tolerance phenotype. Our findings suggest that utilisation of beneficial endophytes in the saline fields could allow for the use of such marginal soils for growing rice and possibly other crops.

摘要

促进植物生长的内生放线菌(PGPE)已知可通过其促生特性促进植物生长并减轻植物的非生物胁迫。在本研究中,PGPE链霉菌GKU 895在盆栽试验中,通过增加植株重量和降低150 mM NaCl灌溉后的活性氧,促进了盐敏感水稻品种IR29的生长并减轻了其盐胁迫。对暴露于菌株GKU 895和盐分组合下的IR29进行转录组分析,结果显示根据基因本体和植物反应组分类的差异表达基因(DEG)有上调和下调。链霉菌GKU 895诱导了盐处理下水稻基因表达的变化,包括参与生长发育、光合作用、植物激素、活性氧清除、离子运输和稳态以及与发病机制和共生相关蛋白质的植物-微生物相互作用的转录因子。综上所述,这些数据表明PGPE链霉菌GKU 895定殖并促进了水稻IR29的生长,并引发了耐盐表型。我们的研究结果表明,在盐渍田中利用有益内生菌可以使这种边际土壤用于种植水稻以及可能的其他作物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/002e/9899303/61fb24d1f258/12284_2023_622_Fig1_HTML.jpg

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