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Journal of Soils and Sediments - Viruses are the most abundant biological entities and play significant biological roles in marine system. However, little is known about their biodiversity in mud...  相似文献   
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稻瘟病是水稻重要病害之一,严重影响水稻的产量与品质。培育抗性品种是防治稻瘟病最经济、环保的方式。稻瘟病抗性基因的鉴定与挖掘是开展抗病育种的基础与前提。本课题组前期对419份广西水稻地方品种核心种质进行简化基因组测序,获得208,993个高质量SNP标记。本研究采用苗期喷雾接种方法,研究了该419份核心种质对7个稻瘟病生理小种的抗性,并根据表型和基因型数据,利用一般线性模型(general linear model,GLM)和混合线性模型(mixed linear model,MLM)进行全基因组关联分析。2种模型下共检测到20个位点,其中GLM检测到20个位点,MLM检测到1个位点,Chr12_10803913位点在2种模型下都检测到。17个位点与前人定位的基因/QTLs重叠,其余3个是新位点,分别为Chr3_18302718、Chr3_18302744及Chr5_10379127位点。在20个显著关联位点上下游各150 kb的基因组区域中共筛选出候选基因323个,初步确定8个候选基因与抗病相关,其中LOC_Os12g18360(Pita)、LOC_Os12g18729(Ptr)为已知克隆的基因,LOC_Os03g32100、LOC_Os03g32180和LOC_Os05g18090为新位点附近筛选到的候选基因。本研究结果为稻瘟病抗性位点挖掘与稻瘟病相关基因克隆提供了科学依据。  相似文献   
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Purpose

Glaciers of the Tianshan Mountains have been geographically isolated for a long time with little human interference. This study aimed to understand the viral community structures and their ecological functions in a unique glacier soil.

Materials and methods

The abundances of purified virus particles and bacteria in the glacier soil were examined using epifluorescence microscopy and quantitative PCR of the 16S rRNA gene, respectively. Metagenomic analysis was employed to investigate the taxonomic and functional compositions as well as the phylogenetic relationship of the functional genes of the viruses in the glacier soil.

Results and discussion

A total of eight double-stranded DNA (dsDNA) virus families were identified in the glacier soil, with Siphoviridae, Podoviridae, and Myoviridae being the more abundant families. The diverse dsDNA viruses and few ssDNA and other types of viruses formed the unique community structure of viruses in the Tianshan Mountains glacier soil. The functional genes identified from the virome mainly belonged to phage-related proteins. The phage terminase of Caudovirales presented high diversity, and its amino acid sequences were different from those in other environments.

Conclusions

The results showed a unique viral diversity and taxonomic composition in the glacier soil, which suggests the significant ecological role of Caudovirales in this environment.

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