Sanghee Lee, Young Kook Kim, Haulin Nie, Jongmin Ahn, Nayoung Kim, Seo-Rin Ko, Ah-Hyeon Choi, Hayoung Kwon, Yuxin Peng, Suk-Yoon Kwon, Ah-Young Shin
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引用次数: 0
摘要
促进植物生长的根瘤菌(PGPR)是一种土壤微生物,通过其产生植物激素和其他生物活性化合物,从而提高植物的生长和抗逆性。本研究从枸杞幼苗根际中鉴定出一株富含蛋白质果实的PGPR菌株。全基因组测序和注释表明,该菌株被命名为Pseudomonas sp. a -2,基因组由一条6.65 mb的环状染色体组成,预测蛋白编码序列为5980个。比较基因组分析将该菌株归入假单胞菌属。A-2菌株基因组编码吲哚-3-乙酸(IAA)生物合成和信号通路相关蛋白,通过IAA检测和定量分析证实了这一点。A-2处理显著提高了植株的生长速率,拟南芥的生长速率提高了3倍,烟草提高了1.5倍,花生提高了1.35倍。在拟南芥中,A-2菌株处理诱导了与侧根和不定根形成相关的关键基因的表达,包括ARFs、AMI1、TAA1、YUCs、IBRs、TOB1和ECH2。此外,A-2菌株处理增强了对盐胁迫的耐受性,生物量积累、叶绿素含量、抗氧化酶活性和脂质过氧化反应均有所改善。在a -2菌株处理过的植物中,总可溶性糖(包括海藻糖)的水平升高,表明在胁迫下渗透调节的作用。假单胞菌A-2具有促进植物生长和缓解胁迫的特性,是一种有效的可持续农业生物制剂。
Functional characterization of a novel plant growth-promoting rhizobacterium enhancing root growth and salt stress tolerance.
Plant growth-promoting rhizobacteria (PGPR) are soil microorganisms through which phytohormones and other bioactive compounds are produced, thereby enhancing plant growth and stress tolerance. In this study, a novel PGPR strain was identified from the rhizosphere of Lycium chinense seedlings, which produce protein-rich fruit. Whole-genome sequencing and annotation revealed that the genome of this strain, designated Pseudomonas sp. A-2, consists of a 6.65-Mb circular chromosome with 5,980 predicted protein-coding sequences. Comparative genomic analysis classified the strain within the genus Pseudomonas. The A-2 strain genome encodes proteins involved in indole-3-acetic acid (IAA) biosynthesis and signaling pathways, which was validated through IAA detection assays and quantitative analyses. Plant growth rates were significantly enhanced by the A-2 strain treatment, with increases of 3-fold in Arabidopsis, 1.5-fold in tobacco, and 1.35-fold in peanut. In Arabidopsis thaliana, expression of key genes associated with lateral and adventitious root formation was induced by the A-2 strain treatment, including ARFs, AMI1, TAA1, YUCs, IBRs, TOB1, and ECH2. Moreover, enhanced tolerance to salt stress was conferred by the A-2 strain treatment, as evidenced by improved biomass accumulation, chlorophyll content, antioxidant enzyme activity, and reduced lipid peroxidation. Levels of total soluble sugars, including trehalose, were elevated in the A-2 strain treated plants, suggesting a role in osmotic adjustment under stress. The plant growth-promoting and stress-alleviating properties of Pseudomonas sp. A-2 highlight its potential application as an effective biological agent for sustainable agriculture.
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