Mitigating Water Stress in Plants with Beneficial Bacteria: Effects on Growth and Rhizosphere Bacterial Communities

根际 根际细菌 生物 青枯病 非生物胁迫 耐旱性 非生物成分 假单胞菌 植物 园艺 农学 细菌 生态学 遗传学 生物化学 基因
作者
Daniele Nicotra,Alexandros Mosca,Giulio Dimaria,M. Massimino,Massimiliano Di Stabile,Emanuele La Bella,Farideh Ghadamgahi,Ivana Puglisi,Ramesh R. Vetukuri,Vittoria Catara
出处
期刊:International Journal of Molecular Sciences [MDPI AG]
卷期号:26 (4): 1467-1467
标识
DOI:10.3390/ijms26041467
摘要

Climate change has reshaped global weather patterns and intensified extreme events, with drought and soil salinity negatively impacting the yield and quality of crop production. To mitigate the detrimental effects of drought stress, the introduction of beneficial plant growth-promoting rhizobacteria (PGPR) has proven to be a promising approach. In this study, we evaluated a synthetic microbial community (SynCom) comprising bacterial strains belonging to the species Bacillus velezensis, Pseudomonas simiae, P. salmasensis, Glutamicibacter halophytocola, and Leclercia sp., which have been demonstrated to promote tomato growth both individually and collectively. The SynCom and most of its individual bacterial strains were shown to mitigate the detrimental effects of polyethylene glycol (PEG)-induced drought stress in vitro in Arabidopsis thaliana seedlings, either by reducing alterations in xylem elements or promoting the formation of new xylem strands. In a greenhouse trial, soil drenching with the SynCom and two individual strains, B. velezensis PSE31B and P. salmasensis POE54, improved the water stress response in soilless-grown tomato plants under a 40% reduced irrigation regime. Additionally, bacterial treatments positively influenced the diversity of rhizosphere bacterial communities, with distinct changes in bacterial composition, which suggest a treatment-specific interplay between the introduced strains and the native microbiome. These findings highlight the potential of microbial consortia and individual PGPR strains as sustainable tools to improve plant resilience to abiotic stresses.
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