化学
茉莉酸
硒
根际
生物化学
谷胱甘肽
盐(化学)
纳米颗粒
细菌
抗氧化剂
食品科学
代谢途径
水杨酸
活性氧
酶
作者
Yanxi Chen,Shuai Zhao,Xuanxuan Ma,LI Ling,Pengxin Du,Xu Liu,Yuhao Yao,Qibin Ma,Yanbo Cheng,Yingxiang Wang,Jian Wei,Hai Nian,Tengxiang Lian
出处
期刊:aBIOTECH
[Springer Science+Business Media]
日期:2026-01-15
卷期号:7 (2): 100022-100022
被引量:1
标识
DOI:10.1016/j.abiote.2026.100022
摘要
Soil salinity threatens agriculture worldwide. Nano-fertilizers offer a promising strategy to enhance tolerance to salinity and other stresses in crops, but their field performance is sometimes unpredictable, potentially due to complex interactions within the plant–microbe holobiont. Here, we designed chitosan-stabilized selenium nanoparticles (SeNPs@CS) as a novel nano-fertilizer. SeNPs@CS exhibited a uniform size (∼109.8 nm) and a positively charged surface (+14.7 mV), which confers good adhesion to plant tissues. Due to their good biocompatibility and small size, SeNPs@CS can be readily absorbed and utilized by plant leaves. When SeNPs@CS were combined with glutathione (GSH) to form a nanocomposite (SeG), they significantly promoted plant growth and enhanced salt tolerance in soybean (Glycine max). Multi-omics analyses revealed that SeG activates jasmonic acid (JA) pathways in the plant and remodels the root metabolic profile, leading to the enrichment of arbutin, a key signaling molecule, in the rhizosphere. This metabolic shift recruits and enriches beneficial salt-tolerant microbes, including Bacillus and Streptomyces, thereby establishing a protective microbiome. Treatment of plants with a synthetic microbial community (SynCom) composed of these elite strains, in combination with arbutin, reproduced the salt tolerance phenotype conferred by SeG treatment. Therefore, SeG improves salt tolerance in soybean via activation of the JA defense pathway and arbutin-driven recruitment of salt-tolerant rhizosphere microorganisms. Together, these two mechanisms enhance plant resilience under salt stress. This multi-kingdom synergistic mechanism for alleviating stress provides a new paradigm for developing smart agricultural inputs that target the plant holobiont to improve crop resilience.
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