Department of Microbiology, Lady Brabourne College, Kolkata, West Bengal, India.
Deapartment of Chemical Engineering, Birla Institute of Technology, Mesra, Ranchi, Jharkhand, India.
Curr Microbiol. 2024 Oct 6;81(11):393. doi: 10.1007/s00284-024-03900-9.
Endophytes have drawn attentions due to their effectiveness in providing benefits to host and non-host plants. In this study endophytic bacteria were isolated from stem and leaf samples of medicinally important plants Rhododendron griffithianum Wight and Rhododendron arboreum Smith subsp. cinnamomeum (Wall. ex G. Don) grown at higher altitudes of Darjeeling, India. Two endophytic bacteria, Pseudomonas lurida RGDS03 and Bacillus velezensis RCDL12 were identified based on 16S rRNA gene sequencing analysis. The endophytes exhibited indole acetic acid (IAA), gibberellic acid (GA), siderophore production, phosphate solubilization, nitrogen-fixing abilities, though B. velezensis RCDL12 showed superior production of IAA (126.04 ± 0.40 µg/mL), GA (241.00 ± 0.44 µg/mL), and phosphate (74.4 ± 0.41 µg/mL) solubilization as compared to P. lurida RGDS03. Purity of extracted IAA from these two endophytes was confirmed by HPLC and LC-MS analysis. In this study, P. lurida RGDS03 inhibited mycelial growth of two tested phytopathogens Phytophthora sp. and Pestalotiopsis sp. of broad host range. However, only against Pestalotiopsis sp. did B. velezensis RCDL12 exhibit antifungal activity. Study was conducted on growth promotion capabilities of isolates on rice and mung bean seedlings. P. lurida RGDS03, B. velezensis RCDL12 and consortium of both the strains reported with promising growth promotion on both rice (85-97%) and mung bean (86-99%) in terms of their seed germination, vegetative growth (root and shoot length, fresh and dry weight), and chlorophyll content as compared to the control plants (untreated). This study has emphasized growth-promoting and biocontrol activities of endophytic bacteria from rhododendrons, and application to enhance crop development for sustainable agriculture.
内生菌因其对宿主和非宿主植物的有效性而受到关注。在这项研究中,从印度大吉岭高海拔地区生长的药用植物黄花杜鹃和黄花杜鹃亚种肉桂杜鹃的茎和叶样本中分离出内生细菌。根据 16S rRNA 基因测序分析,鉴定出两种内生细菌,即 Pseudomonas lurida RGDS03 和 Bacillus velezensis RCDL12。这些内生菌表现出吲哚乙酸(IAA)、赤霉素(GA)、铁载体生产、磷酸盐溶解、固氮能力,尽管 Bacillus velezensis RCDL12 表现出较高的 IAA(126.04 ± 0.40μg/mL)、GA(241.00 ± 0.44μg/mL)和磷酸盐(74.4 ± 0.41μg/mL)溶解能力,而 Pseudomonas lurida RGDS03 则表现出较高的 IAA(126.04 ± 0.40μg/mL)、GA(241.00 ± 0.44μg/mL)和磷酸盐(74.4 ± 0.41μg/mL)溶解能力。通过 HPLC 和 LC-MS 分析证实了从这两种内生菌中提取的 IAA 的纯度。在这项研究中,Pseudomonas lurida RGDS03 抑制了两种广谱宿主病原菌疫霉属和拟盘多毛孢属的菌丝生长。然而,只有 Bacillus velezensis RCDL12 对拟盘多毛孢属表现出抗真菌活性。本研究还研究了分离物对水稻和绿豆幼苗生长促进能力。与对照植物(未处理)相比,Pseudomonas lurida RGDS03、Bacillus velezensis RCDL12 及其混合菌株在水稻(85-97%)和绿豆(86-99%)的种子萌发、营养生长(根和茎长度、鲜重和干重)和叶绿素含量方面表现出良好的生长促进作用。这项研究强调了来自杜鹃属的内生细菌的促生长和生物防治活性,并将其应用于提高作物发展以实现可持续农业。