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乳制品和非乳制品分离株中的倍性变异

Ploidy Variation in Separates Dairy and Non-dairy Isolates.

作者信息

Ortiz-Merino Raúl A, Varela Javier A, Coughlan Aisling Y, Hoshida Hisashi, da Silveira Wendel B, Wilde Caroline, Kuijpers Niels G A, Geertman Jan-Maarten, Wolfe Kenneth H, Morrissey John P

机构信息

School of Medicine, UCD Conway Institute, University College Dublin, Dublin, Ireland.

School of Microbiology, Centre for Synthetic Biology and Biotechnology, Environmental Research Institute, APC Microbiome Institute, University College Cork, Cork, Ireland.

出版信息

Front Genet. 2018 Mar 21;9:94. doi: 10.3389/fgene.2018.00094. eCollection 2018.

Abstract

is traditionally associated with fermented dairy products, but can also be isolated from diverse non-dairy environments. Because of thermotolerance, rapid growth and other traits, many different strains are being developed for food and industrial applications but there is, as yet, little understanding of the genetic diversity or population genetics of this species. shows a high level of phenotypic variation but the only phenotype that has been clearly linked to a genetic polymorphism is lactose utilisation, which is controlled by variation in the gene. The genomes of several strains have been sequenced in recent years and, in this study, we sequenced a further nine strains from different origins. Analysis of the Single Nucleotide Polymorphisms (SNPs) in 14 strains was carried out to examine genome structure and genetic diversity. SNP diversity in is relatively high, with up to 3% DNA sequence divergence between alleles. It was found that the isolates include haploid, diploid, and triploid strains, as shown by both SNP analysis and flow cytometry. Diploids and triploids contain long genomic tracts showing loss of heterozygosity (LOH). All six isolates from dairy environments were diploid or triploid, whereas 6 out 7 isolates from non-dairy environment were haploid. This also correlated with the presence of functional alleles only in dairy haplotypes. The diploids were hybrids between a non-dairy and a dairy haplotype, whereas triploids included three copies of a dairy haplotype.

摘要

传统上它与发酵乳制品相关,但也可从多种非乳制品环境中分离得到。由于其耐热性、快速生长及其他特性,许多不同菌株正被开发用于食品和工业应用,但目前对该物种的遗传多样性或群体遗传学了解甚少。它表现出高水平的表型变异,但唯一已明确与遗传多态性相关的表型是乳糖利用,这由 基因的变异控制。近年来已对多个菌株的基因组进行了测序,在本研究中,我们又对来自不同来源的九个菌株进行了测序。对 14 个菌株中的单核苷酸多态性(SNP)进行分析以研究基因组结构和遗传多样性。 中的 SNP 多样性相对较高,等位基因之间的 DNA 序列差异高达 3%。通过 SNP 分析和流式细胞术均表明,分离株包括单倍体、二倍体和三倍体菌株。二倍体和三倍体包含显示杂合性缺失(LOH)的长基因组片段。所有六个来自乳制品环境的分离株均为二倍体或三倍体,而七个来自非乳制品环境的分离株中有六个是单倍体。这也与仅在乳制品单倍型中存在功能性 等位基因相关。二倍体是一个非乳制品单倍型和一个乳制品单倍型之间的杂种,而三倍体包括一个乳制品单倍型的三个拷贝。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd60/5871668/f72d36d149de/fgene-09-00094-g0001.jpg

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