Department of Agricultural Biotechnology, National Chiayi University, Chiayi 600355, Taiwan.
Department of Agronomy, Brawijaya University, Malang 65145, Indonesia.
Int J Mol Sci. 2024 May 31;25(11):6091. doi: 10.3390/ijms25116091.
The rhizobacterial strain BJ3 showed 16S rDNA sequence similarity to species within the genus. Its complete genome sequence revealed a 97% match with and uncovered gene clusters essential for plant-growth-promoting traits (PGPTs). These clusters include genes responsible for producing indole acetic acid (IAA), osmolytes, non-ribosomal peptides (NRPS), volatile organic compounds (VOCs), siderophores, lipopolysaccharides, hydrolytic enzymes, and spermidine. Additionally, the genome contains genes for nitrogen fixation and phosphate solubilization, as well as a gene encoding 1-aminocyclopropane-1-carboxylate (ACC) deaminase. The treatment with BJ3 enhanced root architecture, boosted vegetative growth, and accelerated early flowering in . Treated seedlings also showed increased lignin production and antioxidant capabilities, as well as notably increased tolerance to water deficit and high salinity. An RNA-seq transcriptome analysis indicated that BJ3 treatment significantly activated genes related to immunity induction, hormone signaling, and vegetative growth. It specifically activated genes involved in the production of auxin, ethylene, and salicylic acid (SA), as well as genes involved in the synthesis of defense compounds like glucosinolates, camalexin, and terpenoids. The expression of AP2/ERF transcription factors was markedly increased. These findings highlight BJ3's potential to produce various bioactive metabolites and its ability to activate auxin, ethylene, and SA signaling in , positioning it as a new strain that could significantly improve plant growth, stress resilience, and immune function.
根际细菌 BJ3 的 16S rDNA 序列与属内的某些种具有相似性。其全基因组序列与相似度达到 97%,揭示了对植物生长促进特性(PGPTs)至关重要的基因簇。这些基因簇包括负责产生吲哚乙酸(IAA)、渗透物、非核糖体肽(NRPS)、挥发性有机化合物(VOCs)、铁载体、脂多糖、水解酶和亚精胺的基因。此外,该基因组还包含固氮和溶磷基因,以及编码 1-氨基环丙烷-1-羧酸(ACC)脱氨酶的基因。BJ3 的处理增强了 的根结构,促进了营养生长,并加速了早期开花。处理后的幼苗还表现出增加的木质素生产和抗氧化能力,以及对水分亏缺和高盐度的显著耐受性。RNA-seq 转录组分析表明,BJ3 处理显著激活了与免疫诱导、激素信号和营养生长相关的基因。它特别激活了与生长素、乙烯和水杨酸(SA)产生相关的基因,以及与防御化合物如硫代葡萄糖苷、卡马霉素和萜类合成相关的基因。AP2/ERF 转录因子的表达明显增加。这些发现强调了 BJ3 产生各种生物活性代谢物的潜力及其在 中激活生长素、乙烯和 SA 信号的能力,使其成为一种新的 菌株,能够显著改善植物生长、应激弹性和免疫功能。