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宿主-饮食对. 的代谢的影响。

Host-Diet Effect on the Metabolism of .

机构信息

Department of Genetics, SOKENDAI University, Mishima 411-8540, Japan.

Department of Agricultural and Food Sciences, University of Bologna, 40127 Bologna, Italy.

出版信息

Genes (Basel). 2021 Apr 20;12(4):609. doi: 10.3390/genes12040609.

Abstract

has a diverse host range and shows several beneficial properties to the hosts. Many species should have co-evolved with their hosts, but the phylogeny of is dissimilar to that of host animals. The discrepancy could be linked to the niche-specific evolution due to hosts' dietary carbohydrates. We investigated the relationship between bifidobacteria and their host diet using a comparative genomics approach. Since carbohydrates are the main class of nutrients for bifidobacterial growth, we examined the distribution of carbohydrate-active enzymes, in particular glycoside hydrolases (GHs) that metabolize unique oligosaccharides. When bifidobacterial species are classified by their distribution of GH genes, five groups arose according to their hosts' feeding behavior. The distribution of GH genes was only weakly associated with the phylogeny of the host animals or with genomic features such as genome size. Thus, the hosts' dietary pattern is the key determinant of the distribution and evolution of GH genes.

摘要

具有广泛的宿主范围,并对宿主表现出多种有益特性。许多物种应该与其宿主共同进化,但的系统发育与宿主动物的系统发育不同。这种差异可能与由于宿主饮食中的碳水化合物而导致的特定生态位进化有关。我们使用比较基因组学方法研究了双歧杆菌与其宿主饮食之间的关系。由于碳水化合物是双歧杆菌生长的主要营养物质类别,因此我们研究了碳水化合物活性酶,特别是代谢独特低聚糖的糖苷水解酶 (GHs) 的分布。当根据其宿主的摄食行为对双歧杆菌物种进行分类时,根据宿主动物的系统发育或基因组大小等基因组特征,会出现五个组。GH 基因的分布与宿主动物的系统发育或基因组特征(如基因组大小)只有微弱的关联。因此,宿主的饮食模式是 GH 基因分布和进化的关键决定因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/501e/8074910/de22982eab3c/genes-12-00609-g001.jpg

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