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本文引用的文献

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A GENERAL THEORY OF CLUTCH SIZE.窝卵数的一般理论。
Evolution. 1966 Jun;20(2):174-184. doi: 10.1111/j.1558-5646.1966.tb03353.x.
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Whole-genome analyses resolve early branches in the tree of life of modern birds.全基因组分析解决了现代鸟类生命之树早期分支的问题。
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Comparative genomics reveals insights into avian genome evolution and adaptation.比较基因组学揭示了鸟类基因组进化和适应的见解。
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Proportional accumulation of yolk proteins derived from multiple vitellogenins is precisely regulated during vitellogenesis in striped bass (Morone saxatilis).条纹鲈(Morone saxatilis)在卵黄发生过程中,源自多种卵黄蛋白原的卵黄蛋白的比例积累受到精确调控。
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Experimental cooling during incubation leads to reduced innate immunity and body condition in nestling tree swallows.孵化期间的实验性降温会导致巢生树燕的先天免疫和身体状况下降。
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Evolution and differential expression of a vertebrate vitellogenin gene cluster.脊椎动物卵黄蛋白原基因簇的进化与差异表达
BMC Evol Biol. 2009 Jan 5;9:2. doi: 10.1186/1471-2148-9-2.
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The worldwide variation in avian clutch size across species and space.全球范围内鸟类窝卵数在物种和空间上的差异。
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9
Conserved and variant molecular and functional features of multiple egg yolk precursor proteins (vitellogenins) in white perch (Morone americana) and other teleosts.白鲈(美洲漠斑牙鲆)及其他硬骨鱼中多种卵黄前体蛋白(卵黄原蛋白)的保守和变异分子及功能特征
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10
Phylogeny and classification of the Old World Emberizini (Aves, Passeriformes).旧大陆鹀科(雀形目,鸟类)的系统发育与分类
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分子水平上的生活史进化:鸟类卵黄生成素的适应性氨基酸组成

Life-history evolution at the molecular level: adaptive amino acid composition of avian vitellogenins.

作者信息

Hughes Austin L

机构信息

Department of Biological Sciences, University of South Carolina, Columbia, SC 29208, USA

出版信息

Proc Biol Sci. 2015 Aug 7;282(1812):20151105. doi: 10.1098/rspb.2015.1105.

DOI:10.1098/rspb.2015.1105
PMID:26224713
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4528526/
Abstract

Avian genomes typically encode three distinct vitellogenin (VTG) egg yolk proteins (VTG1, VTG2 and VTG3), which arose by gene duplication prior to the most recent common ancestor of birds. Analysis of VTG sequences from 34 avian species in a phylogenetic framework supported the hypothesis that VTG amino acid composition has co-evolved with embryo incubation time. Embryo incubation time was positively correlated with the proportions of dietary essential amino acids (EAAs) in VTG1 and VTG2, and with the proportion of sulfur-containing amino acids in VTG3. These patterns were seen even when only semi-altricial and/or altricial species were considered, suggesting that the duration of embryo incubation is a major selective factor on the amino acid composition of VTGs, rather than developmental mode alone. The results are consistent with the hypothesis that the level of EAAs provided to the egg represents an adaptation to the loss of amino acids through breakdown over the course of incubation and imply that life-history phenotypes and VTG amino acid composition have co-evolved throughout the evolutionary history of birds.

摘要

鸟类基因组通常编码三种不同的卵黄蛋白原(VTG)蛋黄蛋白(VTG1、VTG2和VTG3),它们是在鸟类最近的共同祖先之前通过基因复制产生的。在系统发育框架内对34种鸟类的VTG序列进行分析,支持了VTG氨基酸组成与胚胎孵化时间共同进化的假说。胚胎孵化时间与VTG1和VTG2中膳食必需氨基酸(EAA)的比例以及VTG3中含硫氨基酸的比例呈正相关。即使仅考虑半早成和/或晚成物种,也能观察到这些模式,这表明胚胎孵化持续时间是VTG氨基酸组成的主要选择因素,而不仅仅是发育模式。这些结果与以下假说一致,即提供给卵的EAA水平代表了对孵化过程中氨基酸分解损失的一种适应,并暗示生活史表型和VTG氨基酸组成在鸟类的整个进化历史中共同进化。