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本文引用的文献

1
EVIDENCE FOR SELECTION ON SENSORY STRUCTURES IN A CAVE POPULATION OF GAMMARUS MINUS (AMPHIPODA).对洞穴种群微小长臂虾(端足目)感觉结构选择的证据
Evolution. 1989 May;43(3):688-693. doi: 10.1111/j.1558-5646.1989.tb04267.x.
2
The complex origin of Astyanax cavefish.阿氏小鳍脂鲤的复杂起源。
BMC Evol Biol. 2012 Jun 30;12:105. doi: 10.1186/1471-2148-12-105.
3
Parallel reduction in expression of the eye development gene hedgehog in separately derived cave populations of the amphipod Gammarus minus.眼发育基因 hedgehog 在分别独立进化的等足目(amphipod)双刺猛水蚤(Gammarus minus)洞穴种群中的表达平行减少。
J Evol Biol. 2012 May;25(5):995-1001. doi: 10.1111/j.1420-9101.2012.02481.x. Epub 2012 Mar 29.
4
Speciation in caves: experimental evidence that permanent darkness promotes reproductive isolation.洞穴物种形成:永久性黑暗促进生殖隔离的实验证据。
Biol Lett. 2011 Dec 23;7(6):909-12. doi: 10.1098/rsbl.2011.0237. Epub 2011 May 11.
5
Genetic basis of eye and pigment loss in the cave crustacean, Asellus aquaticus.眼和色素缺失的遗传基础在洞穴甲壳动物,水生栉水虱。
Proc Natl Acad Sci U S A. 2011 Apr 5;108(14):5702-7. doi: 10.1073/pnas.1013850108. Epub 2011 Mar 21.
6
When Indian crabs were not yet Asian--biogeographic evidence for Eocene proximity of India and Southeast Asia.当印度螃蟹尚未进入亚洲时——印度和东南亚在始新世的接近提供了生物地理证据。
BMC Evol Biol. 2010 Sep 17;10:287. doi: 10.1186/1471-2148-10-287.
7
Ancient origin of a Western Mediterranean radiation of subterranean beetles.西方地中海地区地下甲虫辐射的古老起源。
BMC Evol Biol. 2010 Jan 28;10:29. doi: 10.1186/1471-2148-10-29.
8
Regressive evolution in Astyanax cavefish.阿氏盲鮰的退化进化。
Annu Rev Genet. 2009;43:25-47. doi: 10.1146/annurev-genet-102108-134216.
9
Relaxed selection in the wild.野外的宽松选择。
Trends Ecol Evol. 2009 Sep;24(9):487-96. doi: 10.1016/j.tree.2009.03.010. Epub 2009 Jun 6.
10
Recent divergence with gene flow in Tennessee cave salamanders (Plethodontidae: Gyrinophilus) inferred from gene genealogies.从基因谱系推断田纳西洞穴蝾螈(隐鳃鲵科:脊口螈属)近期的基因流与分化情况
Mol Ecol. 2008 May;17(9):2258-75. doi: 10.1111/j.1365-294X.2008.03750.x. Epub 2008 Apr 10.

洞穴蟹眼部缩小的趋同演化特征表明,选择而非中性突变是导致其眼部缩小的驱动因素。

Rapid evolution of troglomorphic characters suggests selection rather than neutral mutation as a driver of eye reduction in cave crabs.

机构信息

Department of Biological Sciences, National University of Singapore, Singapore, Republic of Singapore.

出版信息

Biol Lett. 2013 Jan 23;9(2):20121098. doi: 10.1098/rsbl.2012.1098. Print 2013 Apr 23.

DOI:10.1098/rsbl.2012.1098
PMID:23345534
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3639761/
Abstract

This study asked whether reductive traits in cave organisms evolve at a slower pace (suggesting neutral evolution under relaxed selection) than constructive changes, which are likely to evolve under directional selection. We investigated 11 subterranean and seven surface populations of Sundathelphusa freshwater crabs on Bohol Island, Philippines, and examined constructive traits associated with improved food finding in darkness (increased leg and setae length) and reductive traits (reduced cornea size and eyestalk length). All changes occurred rapidly, given that the age of the most recent common ancestor was estimated to be 722-271 ka based on three mitochondrial markers. In order to quantify the speed of character change, we correlated the degree of morphological change with genetic distances between surface and subterranean individuals. The temporal pattern of character change following the transition to subterranean life was indistinguishable for constructive and reductive traits, characterized by an immediate onset and rapid evolutionary change. We propose that the evolution of these reductive traits-just like constructive traits-is most likely driven by strong directional selection.

摘要

本研究旨在探讨洞穴生物的简化特征是否比建设性变化进化得更慢(暗示在放松选择下的中性进化),而建设性变化可能是在定向选择下进化的。我们调查了菲律宾薄荷岛的 11 个地下和 7 个地表种群的 Sundathelphusa 淡水蟹,并研究了与在黑暗中寻找食物的能力提高相关的建设性特征(腿和刚毛长度增加)和简化特征(角膜大小和眼柄长度减小)。鉴于最近共同祖先的年龄基于三个线粒体标记估计为 722-271 ka,所有变化都发生得非常迅速。为了量化特征变化的速度,我们将形态变化的程度与地表和地下个体之间的遗传距离进行了相关分析。从过渡到地下生活开始,建设性特征和简化特征的特征变化的时间模式没有区别,其特征是立即开始并迅速进化。我们提出,这些简化特征的进化——就像建设性特征一样——很可能是由强烈的定向选择驱动的。