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1
Phylogenetics and divergence times of Papilioninae (Lepidoptera) with special reference to the enigmatic genera Teinopalpus and Meandrusa.凤蝶亚科(鳞翅目)的系统发育与分歧时间,特别提及神秘的属——喙凤蝶属和斑凤蝶属。
Cladistics. 2011 Apr;27(2):113-137. doi: 10.1111/j.1096-0031.2010.00326.x.
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Establishing criteria for higher-level classification using molecular data: the systematics of Polyommatus blue butterflies (Lepidoptera, Lycaenidae).利用分子数据建立高级分类标准:多彩蓝蝶(鳞翅目,灰蝶科)的系统学
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Evolutionary perspectives on human nutrition: The influence of brain and body size on diet and metabolism.人类营养的进化观点:大脑和身体大小对饮食及新陈代谢的影响。
Am J Hum Biol. 1994;6(1):77-88. doi: 10.1002/ajhb.1310060111.
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Life-history evolution in the anthropocene: effects of increasing nutrients on traits and trade-offs.人类世的生活史演变:营养增加对性状及权衡的影响
Evol Appl. 2015 Aug;8(7):635-49. doi: 10.1111/eva.12272. Epub 2015 Jun 13.
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Phylogenomics provides strong evidence for relationships of butterflies and moths.系统发生基因组学为蝴蝶和蛾类的关系提供了强有力的证据。
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Anthropogenic changes in sodium affect neural and muscle development in butterflies.人为改变钠会影响蝴蝶的神经和肌肉发育。
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Host plant utilization, host range oscillations and diversification in nymphalid butterflies: a phylogenetic investigation.寄主植物利用、寄主范围波动和半蛱蝶科蝴蝶的多样化:系统发育研究。
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The genomic signature of dog domestication reveals adaptation to a starch-rich diet.犬类驯化的基因组特征揭示了其对富含淀粉饮食的适应。
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With that diet, you will go far: trait-based analysis reveals a link between rapid range expansion and a nitrogen-favoured diet.有了那种饮食,你会走得更远:基于特征的分析揭示了快速的分布范围扩张和偏爱氮的饮食之间的联系。
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营养塑造了物种间的生活史进化。

Nutrition shapes life-history evolution across species.

作者信息

Swanson Eli M, Espeset Anne, Mikati Ihab, Bolduc Isaac, Kulhanek Robert, White William A, Kenzie Susan, Snell-Rood Emilie C

机构信息

Department of Ecology, Evolution, and Behavior, University of Minnesota-Twin Cities, St Paul, MN 55108, USA.

Department of Ecology, Evolution, and Behavior, University of Minnesota-Twin Cities, St Paul, MN 55108, USA Department of Biology, University of Nevada-Reno, Reno, NV 89509, USA.

出版信息

Proc Biol Sci. 2016 Jul 13;283(1834). doi: 10.1098/rspb.2015.2764.

DOI:10.1098/rspb.2015.2764
PMID:27412282
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4947880/
Abstract

Nutrition is a key component of life-history theory, yet we know little about how diet quality shapes life-history evolution across species. Here, we test whether quantitative measures of nutrition are linked to life-history evolution across 96 species of butterflies representing over 50 independent diet shifts. We find that butterflies feeding on high nitrogen host plants as larvae are more fecund, but their eggs are smaller relative to their body size. Nitrogen and sodium content of host plants are also both positively related to eye size. Some of these relationships show pronounced lineage-specific effects. Testis size is not related to nutrition. Additionally, the evolutionary timing of diet shifts is not important, suggesting that nutrition affects life histories regardless of the length of time a species has been adapting to its diet. Our results suggest that, at least for some lineages, species with higher nutrient diets can invest in a range of fitness-related traits like fecundity and eye size while allocating less to each egg as offspring have access to a richer diet. These results have important implications for the evolution of life histories in the face of anthropogenic changes in nutrient availability.

摘要

营养是生活史理论的关键组成部分,但我们对饮食质量如何塑造物种间的生活史进化知之甚少。在此,我们测试了营养的定量指标是否与代表50多个独立饮食转变的96种蝴蝶的生活史进化相关。我们发现,幼虫以高氮寄主植物为食的蝴蝶繁殖力更强,但其卵相对于体型来说更小。寄主植物的氮和钠含量也都与眼睛大小呈正相关。其中一些关系显示出明显的谱系特异性效应。睾丸大小与营养无关。此外,饮食转变的进化时间并不重要,这表明营养对生活史的影响与一个物种适应其饮食的时间长短无关。我们的结果表明,至少对于某些谱系来说,营养丰富的饮食的物种可以在一系列与适合度相关的性状上投入资源,如繁殖力和眼睛大小,同时由于后代能获得更丰富的饮食,每个卵分配的资源较少。这些结果对于面对营养可利用性的人为变化时生活史的进化具有重要意义。