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首页> 外文期刊>Standards in Genomic Sciences >High-quality permanent draft genome sequence of the Bradyrhizobium elkanii type strain USDA 76 T , isolated from Glycine max (L.) Merr
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High-quality permanent draft genome sequence of the Bradyrhizobium elkanii type strain USDA 76 T , isolated from Glycine max (L.) Merr

机译:分离自甘氨酸最大(L.)Merr的Bradyrhizobium elkanii型菌株USDA 76 T的高质量永久基因组序列

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Bradyrhizobium elkanii USDA 76supT/sup (INSCD?=?ARAG00000000), the type strain for Bradyrhizobium elkanii , is an aerobic, motile, Gram-negative, non-spore-forming rod that was isolated from an effective nitrogen-fixing root nodule of Glycine max (L. Merr) grown in the USA. Because of its significance as a microsymbiont of this economically important legume, B. elkanii USDA 76supT/sup was selected as part of the DOE Joint Genome Institute 2010 Genomic Encyclopedia for Bacteria and Archaea-Root Nodule Bacteria sequencing project. Here the symbiotic abilities of B. elkanii USDA 76supT/sup are described, together with its genome sequence information and annotation. The 9,484,767 bp?high-quality draft genome is arranged in 2 scaffolds of 25 contigs, containing 9060 protein-coding genes and 91 RNA-only encoding genes. The B. elkanii USDA 76supT/sup genome contains a low GC content region with symbiotic nod and fix genes, indicating the presence of a symbiotic island integration. A comparison of five B. elkanii genomes that formed a clique revealed that 356 of the 9060 protein coding genes of USDA 76supT/sup were unique, including 22 genes of an intact resident prophage. A conserved set of 7556 genes were also identified for this species, including genes encoding a general secretion pathway as well as type II, III, IV and VI secretion system proteins. The type III secretion system has previously been characterized as a host determinant for Rj and/or rj soybean cultivars. Here we show that the USDA 76supT/sup genome contains genes encoding all the type III secretion system components, including a translocon complex protein NopX required for the introduction of effector proteins into host cells. While many bradyrhizobial strains are unable to nodulate the soybean cultivar Clark ( rj1 ), USDA 76supT/sup was able to elicit nodules on Clark ( rj1 ), although in reduced numbers, when plants were grown in Leonard jars containing sand or vermiculite. In these conditions, we postulate that the presence of NopX allows USDA 76supT/sup to introduce various effector molecules into this host to enable nodulation.
机译:拟南芥USDA 76 T (INSCD?=?ARAG00000000),是拟南芥的好氧型,运动型,革兰氏阴性,无芽孢的杆,与有效氮分离美国生长的最大大豆(L. Merr)的固定根瘤。由于其作为这种经济上重要的豆类的微共生体的重要性,B。elkanii USDA 76 T 被选为DOE联合基因组研究所2010年细菌基因组百科全书和古细菌根瘤细菌测序项目的一部分。这里描述了B. elkanii USDA 76 T 的共生能力,以及其基因组序列信息和注释。 9,484,767 bp?高质量的基因组基因被安排在25个重叠群的2个支架中,其中包含9060个蛋白质编码基因和91个仅RNA编码基因。 B. elkanii USDA 76 T 基因组包含一个低GC含量区域,具有共生点头和固定基因,表明存在共生岛整合。对五个形成集团的B. elkanii基因组的比较表明,USDA 76 T 的9060种蛋白质编码基因中有356个是独特的,包括22个完整的常驻噬菌体基因。还为该物种鉴定了7556个保守基因集,包括编码一般分泌途径以及II,III,IV和VI型分泌系统蛋白的基因。先前已将III型分泌系统表征为Rj和/或rj大豆品种的宿主决定因素。在这里,我们显示USDA 76 T 基因组包含编码所有III型分泌系统成分的基因,包括将效应子蛋白引入宿主细胞所需的translocon复合蛋白NopX。虽然许多缓生根瘤菌菌株无法根结大豆品种克拉克(rj1),但当植物在装有伦纳德(Leonard)广口瓶中种植时,USDA 76 T 能够在克拉克(rj1)上引起根瘤,尽管数量减少。沙子或ver石。在这些条件下,我们推测NopX的存在使USDA 76 T 可以将各种效应分子引入该宿主以实现结瘤。

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