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. 的进化遗传学

Evolutionary Genetics of .

机构信息

Department of Biology, University of Pennsylvania, 433 South University Ave, Philadelphia, PA 19104, USA.

Centre for Research on the Ecology and Evolution of Diseases (CREES), MiVEGEC, University of Montpellier - CNRS - IRD, Montpellier, France.

出版信息

Curr Issues Mol Biol. 2021;42:97-112. doi: 10.21775/cimb.042.097. Epub 2020 Dec 8.

Abstract

The genus consists of evolutionarily and genetically diverse bacterial species that cause a variety of diseases in humans and domestic animals. These vector-borne spirochetes can be classified into two major evolutionary groups, the Lyme borreliosis clade and the relapsing fever clade, both of which have complex transmission cycles during which they interact with multiple host species and arthropod vectors. Molecular, ecological, and evolutionary studies have each provided significant contributions towards our understanding of the natural history, biology and evolutionary genetics of species; however, integration of these studies is required to identify the evolutionary causes and consequences of the genetic variation within and among species. For example, molecular and genetic studies have identified the adaptations that maximize fitness components throughout the lifecycle and enhance transmission efficacy but provide limited insights into the evolutionary pressures that have produced them. Ecological studies can identify interactions between species and the vertebrate hosts and arthropod vectors they encounter and the resulting impact on the geographic distribution and abundance of spirochetes but not the genetic or molecular basis underlying these interactions. In this review we discuss recent findings on the evolutionary genetics from both of the evolutionarily distinct clades of species. We focus on connecting molecular interactions to the ecological processes that have driven the evolution and diversification of species in order to understand the current distribution of genetic and molecular variation within and between species.

摘要

该属包含在进化和遗传上具有多样性的细菌物种,这些细菌会引起人类和家畜的多种疾病。这些通过媒介传播的螺旋体可以分为两个主要的进化群,即莱姆病螺旋体群和回归热螺旋体群,它们在复杂的传播周期中与多种宿主物种和节肢动物媒介相互作用。分子、生态和进化研究都对我们理解 物种的自然历史、生物学和进化遗传学做出了重大贡献;然而,需要整合这些研究来确定 物种内部和之间遗传变异的进化原因和后果。例如,分子和遗传研究确定了在整个生命周期中最大限度地提高适应度成分并增强传播效率的适应性,但对产生这些适应性的进化压力提供的见解有限。生态研究可以识别 物种与它们遇到的脊椎动物宿主和节肢动物媒介之间的相互作用,以及这些相互作用对螺旋体地理分布和丰度的影响,但无法解释这些相互作用的遗传或分子基础。在这篇综述中,我们讨论了来自进化上截然不同的 物种进化枝的进化遗传学的最新发现。我们专注于将分子相互作用与推动 物种进化和多样化的生态过程联系起来,以了解 物种内部和之间遗传和分子变异的当前分布。

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Competition Between Strains of in Immature Ticks Is Not Affected by Season.在不成熟的蜱虫中,菌株之间的竞争不受季节影响。
Front Cell Infect Microbiol. 2019 Dec 19;9:431. doi: 10.3389/fcimb.2019.00431. eCollection 2019.
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Controversies in bacterial taxonomy: The example of the genus Borrelia.细菌分类学中的争议:以博莱氏菌属为例。
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