IRD, Cirad, Univ. Montpellier, Interactions Plantes Microorganismes Environnement (IPME), 34394, Montpellier, France.
College of Science, Health, Engineering and Education, Murdoch University, Perth, Australia.
BMC Genomics. 2020 Mar 6;21(1):214. doi: 10.1186/s12864-020-6623-z.
Cupriavidus strain STM 6070 was isolated from nickel-rich soil collected near Koniambo massif, New Caledonia, using the invasive legume trap host Mimosa pudica. STM 6070 is a heavy metal-tolerant strain that is highly effective at fixing nitrogen with M. pudica. Here we have provided an updated taxonomy for STM 6070 and described salient features of the annotated genome, focusing on heavy metal resistance (HMR) loci and heavy metal efflux (HME) systems.
The 6,771,773 bp high-quality-draft genome consists of 107 scaffolds containing 6118 protein-coding genes. ANI values show that STM 6070 is a new species of Cupriavidus. The STM 6070 symbiotic region was syntenic with that of the M. pudica-nodulating Cupriavidus taiwanensis LMG 19424. In contrast to the nickel and zinc sensitivity of C. taiwanensis strains, STM 6070 grew at high Ni and Zn concentrations. The STM 6070 genome contains 55 genes, located in 12 clusters, that encode HMR structural proteins belonging to the RND, MFS, CHR, ARC3, CDF and P-ATPase protein superfamilies. These HMR molecular determinants are putatively involved in arsenic (ars), chromium (chr), cobalt-zinc-cadmium (czc), copper (cop, cup), nickel (nie and nre), and silver and/or copper (sil) resistance. Seven of these HMR clusters were common to symbiotic and non-symbiotic Cupriavidus species, while four clusters were specific to STM 6070, with three of these being associated with insertion sequences. Within the specific STM 6070 HMR clusters, three novel HME-RND systems (nieIC cep nieBA, czcC2B2A2, and hmxB zneAC zneR hmxS) were identified, which constitute new candidate genes for nickel and zinc resistance.
STM 6070 belongs to a new Cupriavidus species, for which we have proposed the name Cupriavidus neocaledonicus sp. nov.. STM6070 harbours a pSym with a high degree of gene conservation to the pSyms of M. pudica-nodulating C. taiwanensis strains, probably as a result of recent horizontal transfer. The presence of specific HMR clusters, associated with transposase genes, suggests that the selection pressure of the New Caledonian ultramafic soils has driven the specific adaptation of STM 6070 to heavy-metal-rich soils via horizontal gene transfer.
Cupriavidus 菌株 STM 6070 是从新喀里多尼亚孔亚曼博块状镍矿区采集的富含镍土壤中分离出来的,使用的是入侵豆科植物陷阱宿主含羞草。STM 6070 是一种重金属耐受菌株,与含羞草共生时具有高效固氮能力。在这里,我们提供了 STM 6070 的更新分类学,并描述了注释基因组的显著特征,重点是重金属抗性(HMR)基因座和重金属外排(HME)系统。
6771773bp 的高质量草案基因组由 107 个支架组成,包含 6118 个蛋白质编码基因。ANI 值表明 STM 6070 是 Cupriavidus 的一个新种。STM 6070 的共生区与含羞草结瘤 Cupriavidus taiwanensis LMG 19424 的共生区具有同源性。与 C. taiwanensis 菌株对镍和锌的敏感性不同,STM 6070 可以在高镍和锌浓度下生长。STM 6070 基因组包含 55 个基因,位于 12 个簇中,这些基因编码属于 RND、MFS、CHR、ARC3、CDF 和 P-ATPase 蛋白超家族的 HMR 结构蛋白。这些 HMR 分子决定因素可能参与砷(ars)、铬(chr)、钴-锌-镉(czc)、铜(cop、cup)、镍(nie 和 nre)以及银和/或铜(sil)抗性。这 55 个基因中的 7 个存在于共生和非共生 Cupriavidus 物种中,而 4 个簇是 STM 6070 所特有的,其中 3 个与插入序列有关。在特定的 STM 6070 HMR 簇中,鉴定出了三个新的 HME-RND 系统(nieIC cep nieBA、czcC2B2A2 和 hmxB zneACzneR hmxS),它们构成了镍和锌抗性的新候选基因。
STM 6070 属于一个新的 Cupriavidus 种,我们提议将其命名为 Cupriavidus neocaledonicus sp. nov.。STM6070 拥有一个 pSym,与含羞草结瘤 C. taiwanensis 菌株的 pSym 具有高度的基因保守性,这可能是由于最近的水平转移。特定 HMR 簇的存在,与转座酶基因有关,表明新喀里多尼亚超镁铁质土壤的选择压力通过水平基因转移导致 STM 6070 对富含重金属的土壤具有特定的适应性。