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RELAX: Detecting Relaxed Selection in a Phylogenetic Framework

机译:放松:在系统发育框架中检测轻松的选择

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摘要

Relaxation of selective strength, manifested as a reduction in the efficiency or intensity of natural selection, can drive evolutionary innovation and presage lineage extinction or loss of function. Mechanisms through which selection can be relaxed range from the removal of an existing selective constraint to a reduction in effective population size. Standard methods for estimating the strength and extent of purifying or positive selection from molecular sequence data are not suitable for detecting relaxed selection, because they lack power and can mistake an increase in the intensity of positive selection for relaxation of both purifying and positive selection. Here, we present a general hypothesis testing framework (RELAX) for detecting relaxed selection in a codon-based phylogenetic framework. Given two subsets of branches in a phylogeny, RELAX can determine whether selective strength was relaxed or intensified in one of these subsets relative to the other. We establish the validity of our test via simulations and show that it can distinguish between increased positive selection and a relaxation of selective strength. We also demonstrate the power of RELAX in a variety of biological scenarios where relaxation of selection has been hypothesized or demonstrated previously. We find that obligate and facultative γ-proteobacteria endosymbionts of insects are under relaxed selection compared with their free-living relatives and obligate endosymbionts are under relaxed selection compared with facultative endosymbionts. Selective strength is also relaxed in asexual Daphnia pulex lineages, compared with sexual lineages. Endogenous, nonfunctional, bornavirus-like elements are found to be under relaxed selection compared with exogenous Borna viruses. Finally, selection on the short-wavelength sensitive, SWS1, opsin genes in echolocating and nonecholocating bats is relaxed only in lineages in which this gene underwent pseudogenization; however, selection on the functional medium/long-wavelength sensitive opsin, M/LWS1, is found to be relaxed in all echolocating bats compared with nonecholocating bats.
机译:选择性强度的放松表现为自然选择效率或强度的降低,可以推动进化创新并预示着谱系的灭绝或功能丧失。可以放松选择的机制范围从删除现有的选择约束到有效人口规模的减少。从分子序列数据估算纯化或阳性选择的强度和程度的标准方法不适合检测宽松的选择,因为它们缺乏功效,并且可能将阳性选择强度的增加误认为用于纯化和阳性选择的松弛。在这里,我们提出了一个一般的假设测试框架(RELAX),用于检测基于密码子的系统发育框架中的宽松选择。给定系统发育中的两个分支子集,RELAX可以确定相对于另一个子集而言,其中一个子集的选择性强度是放松还是增强。我们通过模拟确定了测试的有效性,并表明它可以区分增加的阳性选择和松弛的选择强度。我们还展示了RELAX在各种假设或先前证明的放宽选择的生物学情况下的强大功能。我们发现昆虫的专性和兼性γ-变形杆菌内共生体与其自由生活的亲戚相比处于放松选择下,而兼性内共生的昆虫处于专心选择中。与性世系相比,无性蚤属谱系的选择强度也得到了放松。与外源性博尔纳病毒相比,发现内源性,非功能性,类似博纳病毒的元件处于宽松选择之下。最后,仅在回波定位和非回波定位蝙蝠中对短波敏感的SWS1,视蛋白基因进行选择,只有在对该基因进行假基因化的谱系中,才可以放宽选择。然而,发现与所有非回声蝙蝠相比,功能性中/长波长敏感视蛋白M / LWS1的选择在所有回声蝙蝠中都放宽了。

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