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与两种盐生植物根际和根内相关的细菌多样性:[具体植物名称1]和[具体植物名称2] 。 (你原文中植物名称部分缺失,这里用[具体植物名称1]和[具体植物名称2]替代了)

Bacterial Diversity Associated With the Rhizosphere and Endosphere of Two Halophytes: and .

作者信息

Yamamoto Kosuke, Shiwa Yuh, Ishige Taichiro, Sakamoto Hikaru, Tanaka Keisuke, Uchino Masataka, Tanaka Naoto, Oguri Suguru, Saitoh Hiromasa, Tsushima Seiya

机构信息

Department of Molecular Microbiology, Faculty of Life Sciences, Tokyo University of Agriculture, Tokyo, Japan.

NODAI Genome Research Center, Tokyo University of Agriculture, Tokyo, Japan.

出版信息

Front Microbiol. 2018 Nov 28;9:2878. doi: 10.3389/fmicb.2018.02878. eCollection 2018.

Abstract

Root-associated microbial communities are very important in the adaptation of halophytes to coastal environments. However, little has been reported on microbial community structures related to halophytes, or on comparisons of their compositions among halophytic plant species. Here, we studied the diversity and community structure of both rhizosphere and root endosphere bacteria in two halophytic plants: and . We sampled the rhizosphere, the root endosphere, and bulk control soil samples, and performed bacterial 16S rRNA sequencing using the Illumina MiSeq platform to characterize the bacterial community diversities in the rhizosphere and root endosphere of both halophytes. Among the . samples, the richness and diversity of bacteria in the rhizosphere were higher than those in the root endosphere but were lower than those of the bulk soil. In contrast for . , the bulk soil, the rhizosphere, and the root endosphere all had similar bacterial richness and diversity. The number of unique operational taxonomic units within the root endosphere, the rhizosphere, and the bulk soil were 181, 366, and 924 in . and 126, 416, and 596 in . , respectively, implying habitat-specific patterns for each halophyte. In total, 35 phyla and 566 genera were identified. The dominant phyla across all samples were and . was extremely abundant in the root endosphere from . . Beneficial bacterial genera were enriched in the root endosphere and rhizosphere in both halophytes. , , and were highly abundant in . , whereas and were highly abundant in . A principal coordinate analysis demonstrated significant differences in the microbiota composition associated with the plant species and type of sample. These results strongly indicate that there are clear differences in bacterial community structure and diversity between . and . . This is the first report to characterize the root microbiome of . , and to compare the diversity and community structure of rhizosphere and root endosphere bacteria between . and . .

摘要

根际相关微生物群落对于盐生植物适应沿海环境非常重要。然而,关于与盐生植物相关的微生物群落结构,或不同盐生植物物种间其组成的比较,报道较少。在此,我们研究了两种盐生植物(此处缺失两种盐生植物的具体名称)根际和根内细菌的多样性及群落结构。我们采集了根际、根内和对照土壤样本,并使用Illumina MiSeq平台进行细菌16S rRNA测序,以表征这两种盐生植物根际和根内的细菌群落多样性。在(此处缺失相关描述)样本中,根际细菌的丰富度和多样性高于根内,但低于对照土壤。相比之下,对于(此处缺失相关描述),对照土壤、根际和根内的细菌丰富度和多样性相似。在(此处缺失相关描述)中,根内、根际和对照土壤中独特的可操作分类单元数量分别为181、366和924,在(此处缺失相关描述)中分别为126、416和596,这意味着每种盐生植物都有特定的生境模式。总共鉴定出35个门和566个属。所有样本中的优势门为(此处缺失相关描述)。(此处缺失相关描述)在(此处缺失相关描述)的根内极为丰富。两种盐生植物的根内和根际均富集了有益细菌属。(此处缺失相关描述)在(此处缺失相关描述)中含量很高,而(此处缺失相关描述)在(此处缺失相关描述)中含量很高。主坐标分析表明,与植物物种和样本类型相关的微生物群组成存在显著差异。这些结果有力地表明,(此处缺失相关描述)和(此处缺失相关描述)之间的细菌群落结构和多样性存在明显差异。这是首次对(此处缺失相关描述)的根微生物组进行表征,并比较(此处缺失相关描述)和(此处缺失相关描述)根际和根内细菌的多样性及群落结构的报告。

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