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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >The evolution of phylogenetic differences in the efficiency of digestion in ruminants.
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The evolution of phylogenetic differences in the efficiency of digestion in ruminants.

机译:反刍动物消化效率的系统发育差异进化。

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This study investigates, for the first time (to our knowledge) for any animal group, the evolution of phylogenetic differences in fibre digestibility across a wide range of feeds that differ in potential fibre digestibility (fibre to lignin ratio) in ruminants. Data, collated from the literature, were analysed using a linear mixed model that allows for different sources of random variability, covariates and fixed effects, as well as controlling for phylogenetic relatedness. This approach overcomes the problem of defining boundaries to separate different ruminant feeding styles (browsers, mixed feeders and grazers) by using two covariates that describe the browser-grazer continuum (proportion of grass and proportion of browse in the natural diet of a species). The results indicate that closely related species are more likely to have similar values of fibre digestibility than species that are more distant in the phylogenetic tree. Body mass did not have any significant effect on fibre digestibility. Fibre digestibility is estimated to increase with the proportion of grass and to decrease with the proportion of browse in the natural diet that characterizes the species. We applied an evolutionary model to infer rates of evolution and ancestral states of fibre digestibility; the model indicates that the rate of evolution of fibre digestibility accelerated across time. We suggest that this could be caused by a combination of increasing competition among ruminant species and adaptation to diets rich in fibre, both related to climatically driven environmental changes in the past few million years.
机译:这项研究首次(据我们所知)针对任何动物组,研究了反刍动物中潜在纤维消化率(纤维与木质素比例)不同的各种饲料中纤维消化率的系统发育差异的演变。使用线性混合模型分析从文献整理的数据,该模型允许使用不同来源的随机变异性,协变量和固定效应,并控制系统发育相关性。这种方法克服了通过使用描述浏览器-放牧者连续体(草的比例和浏览量在自然物种中的比例)的两个协变量来定义边界以区分不同的反刍动物喂养方式(浏览器,混合饲养者和放牧者)的问题。结果表明,与亲缘关系密切的物种相比,在系统发育树中距离较远的物种更有可能具有相似的纤维消化率。体重对纤维的消化率没有显着影响。纤维的消化率估计随着草的比例增加而增加,并且随着表征该物种的自然饮食中的浏览比例降低。我们应用了进化模型来推断纤维消化率的进化速率和祖先状态。该模型表明纤维消化率的演变速率随时间而加快。我们认为,这可能是由于反刍动物之间日益激烈的竞争以及对富含纤维的饮食的适应所造成的,这两者都与过去几百万年来气候驱动的环境变化有关。

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