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巴基斯坦尼尔氏菌新种NCCP-28的基因组和分类学特征:一种从巴基斯坦豆科植物根际分离出的新型耐抗生素和耐重金属细菌。

Genomic and taxonomic characterization of Niallia pakistanensis sp. nov. NCCP-28: a novel antibiotic-resistant and heavy-metal-tolerant bacterium isolated from the legume rhizosphere in Pakistan.

作者信息

Manzoor Sadia, Abbas Saira, Zulfiqar Sobia, Wu Dildar, Wang Hong-Chuan, Li Wen-Jun, Arshad Muhammad, Ahmed Iftikhar

机构信息

National Culture Collection of Pakistan (NCCP), Land Resources Research Institute (LRRI), National Agricultural Research Centre (NARC), Park Road, Islamabad, Pakistan.

Institute of Environmental Sciences and Engineering, School of Civil and Environmental Engineering, National University of Sciences and Technology (NUST), Islamabad, Pakistan.

出版信息

Antonie Van Leeuwenhoek. 2025 Jul 23;118(9):122. doi: 10.1007/s10482-025-02132-6.

Abstract

Soil microbes play a crucial role in biogeochemical cycling and are a valuable resource for discovering novel taxa with environmental applications. This study aimed to explore rhizospheric microbial diversity for potential biotechnological and ecological relevance. The taxonomic placement of strain NCCP-28 was determined through polyphasic characterization. Isolated from the rhizospheric soil of a legume, strain NCCP-28 exhibited Gram-positive, motile, aerobic, and rod-shaped cells that produced endospores. Additionally, it tested negative for oxidase but positive for catalase. The cells were grown at a pH range of 6‒10 (optimum of 7.0) or over a 20‒45 °C range (optimum of 30 °C) and could thrive in 0‒10% NaCl (optimum of 1% w/v). Strain NCCP-28 also tolerated heavy metals, including chromium (450 ppm), copper (300 ppm), and zinc (550 ppm). Phylogenetic analysis based on the 16S rRNA gene sequence revealed that strain NCCP-28 is closely related to Niallia nealsonii DSM 15077, exhibiting 97.79% sequence similarity. However, strain NCCP-28 formed a distinct and well-supported clade in the phylogenomic tree, clearly separating it from its nearest relatives. This distinction was further substantiated by whole-genome comparisons, including digital DNA-DNA hybridization (dDDH) and average nucleotide identity (ANI) values, which collectively support the classification of strain NCCP-28 as a novel species within the genus Niallia. Phosphatidylethanolamine, phosphatidylglycerol, diphosphatidylglycerol and unknown amino phospholipids were included in the polar lipid profile of the strain. The predominant fatty acids (> 10%) included anteiso-C, iso-C, and C. However, MK-7 and MK-8 are respiratory quinones. Strain NCCP-28 classified as a distinct species within the genus Niallia based on its phylogenetic, phenotypic, chemotaxonomic and genotypic traits and was designated the type strain NCCP-28 (CGMCC1.62018 = GDMCC1.4390), which was named Niallia pakistanensis sp. nov. These findings emphasize microbial systematics, environmental microbiology, and functional genomics. The ecological origin, genomic insights, and adaptive traits of strain NCCP-28 support its potential application in environmental sustainability and microbial biotechnology.

摘要

土壤微生物在生物地球化学循环中发挥着关键作用,是发现具有环境应用价值新分类群的宝贵资源。本研究旨在探索根际微生物多样性,以了解其潜在的生物技术和生态相关性。通过多相表征确定了菌株NCCP - 28的分类地位。菌株NCCP - 28从豆科植物的根际土壤中分离得到,呈革兰氏阳性,具运动性,好氧,细胞呈杆状且能产生内生孢子。此外,它氧化酶检测呈阴性,但过氧化氢酶检测呈阳性。细胞在pH值6 - 10(最适pH为7.0)或20 - 45°C范围(最适温度为30°C)内生长,并且能在0 - 10% NaCl(最适浓度为1% w/v)中生长。菌株NCCP - 28还能耐受重金属,包括铬(450 ppm)、铜(300 ppm)和锌(550 ppm)。基于16S rRNA基因序列的系统发育分析表明,菌株NCCP - 28与尼尔森尼亚菌Niallia nealsonii DSM 15077密切相关,序列相似性为97.79%。然而,菌株NCCP - 28在系统发育基因组树中形成了一个独特且得到有力支持的分支,明显与其最亲近的亲缘种区分开来。通过全基因组比较,包括数字DNA - DNA杂交(dDDH)和平均核苷酸同一性(ANI)值,进一步证实了这种差异,这些结果共同支持将菌株NCCP - 28归类为尼尔森尼亚菌属内的一个新物种。该菌株的极性脂质谱中包括磷脂酰乙醇胺、磷脂酰甘油、二磷脂酰甘油和未知氨基磷脂。主要脂肪酸(> 10%)包括anteiso - C、iso - C和C。然而,MK - 7和MK - 8是呼吸醌。基于其系统发育、表型、化学分类和基因型特征,菌株NCCP - 28被归类为尼尔森尼亚菌属内的一个独特物种,并被指定为模式菌株NCCP - 28(CGMCC1.62018 = GDMCC1.4390),命名为巴基斯坦尼尔森尼亚菌Niallia pakistanensis sp. nov。这些发现强调了微生物系统学、环境微生物学和功能基因组学。菌株NCCP - 28的生态起源、基因组见解和适应性特征支持其在环境可持续性和微生物生物技术中的潜在应用。

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