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本文引用的文献

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Ocellar adaptations for dim light vision in a nocturnal bee.在一种夜间蜜蜂中,用于暗光视觉的眼小窝适应。
J Exp Biol. 2011 Apr 15;214(Pt 8):1283-93. doi: 10.1242/jeb.050427.
2
Nocturnal insects use optic flow for flight control.夜间昆虫利用光流进行飞行控制。
Biol Lett. 2011 Aug 23;7(4):499-501. doi: 10.1098/rsbl.2010.1205. Epub 2011 Feb 9.
3
Effects of rapid global warming at the Paleocene-Eocene boundary on neotropical vegetation.古新世-始新世之交的快速全球变暖对新热带植被的影响。
Science. 2010 Nov 12;330(6006):957-61. doi: 10.1126/science.1193833.
4
Structural divergence and functional versatility of the rhodopsin superfamily.视紫红质超家族的结构分化和功能多样性。
Photochem Photobiol Sci. 2010 Nov;9(11):1458-65. doi: 10.1039/c0pp00236d. Epub 2010 Oct 8.
5
Two new species of nocturnal bees of the genus Megalopta (Hymenoptera: Halictidae) with keys to species.巨无霸蜂属(膜翅目:隧蜂科)两种新的夜行蜜蜂及物种检索表
Rev Biol Trop. 2010 Mar;58(1):255-63. doi: 10.15517/rbt.v58i1.5207.
6
Differences in photoreceptor processing speed for chromatic and achromatic vision in the bumblebee, Bombus terrestris.熊蜂(Bombus terrestris)对彩色和非彩色视觉的感光器处理速度的差异。
J Neurosci. 2010 Mar 17;30(11):3896-903. doi: 10.1523/JNEUROSCI.5700-09.2010.
7
The evolution of phototransduction from an ancestral cyclic nucleotide gated pathway.从祖先的环核苷酸门控途径进化而来的光转导。
Proc Biol Sci. 2010 Jul 7;277(1690):1963-9. doi: 10.1098/rspb.2009.1797. Epub 2010 Mar 10.
8
Parallel and convergent evolution of the dim-light vision gene RH1 in bats (Order: Chiroptera).蝙蝠(翼手目)中暗光视觉基因 RH1 的平行和趋同进化。
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9
The evolution of bat pollination: a phylogenetic perspective.蝙蝠传粉的进化:系统发育视角
Ann Bot. 2009 Nov;104(6):1017-43. doi: 10.1093/aob/mcp197. Epub 2009 Sep 29.
10
The evolution of phototransduction and eyes.光转导与眼睛的进化。
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光生态位入侵:暗光觅食熊蜂(Halictidae)的系统发育历史。

Photic niche invasions: phylogenetic history of the dim-light foraging augochlorine bees (Halictidae).

机构信息

Smithsonian Tropical Research Institute, Apartado Postal 0843-03092, Balboa, Ancón, República de Panamá.

出版信息

Proc Biol Sci. 2012 Feb 22;279(1729):794-803. doi: 10.1098/rspb.2011.1355. Epub 2011 Jul 27.

DOI:10.1098/rspb.2011.1355
PMID:21795273
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3248740/
Abstract

Most bees rely on flowering plants and hence are diurnal foragers. From this ancestral state, dim-light foraging in bees requires significant adaptations to a new photic environment. We used DNA sequences to evaluate the phylogenetic history of the most diverse clade of Apoidea that is adapted to dim-light environments (Augochlorini: Megalopta, Megaloptidia and Megommation). The most speciose lineage, Megalopta, is distal to the remaining dim-light genera, and its closest diurnal relative (Xenochlora) is recovered as a lineage that has secondarily reverted to diurnal foraging. Tests for adaptive protein evolution indicate that long-wavelength opsin shows strong evidence of stabilizing selection, with no more than five codons (2%) under positive selection, depending on analytical procedure. In the branch leading to Megalopta, the amino acid of the single positively selected codon is conserved among ancestral Halictidae examined, and is homologous to codons known to influence molecular structure at the chromophore-binding pocket. Theoretically, such mutations can shift photopigment λ(max) sensitivity and enable visual transduction in alternate photic environments. Results are discussed in light of the available evidence on photopigment structure, morphological specialization and biogeographic distributions over geological time.

摘要

大多数蜜蜂依赖开花植物,因此是昼行性觅食者。从这个祖先状态开始,蜜蜂在弱光环境下觅食需要对新的光环境进行重大适应。我们使用 DNA 序列来评估适应弱光环境的 Apoidea 中最多样化的类群(金小蜂科:巨蜂属、巨蜂属和巨种属)的系统发育历史。最多样化的谱系巨蜂属与其余的弱光属相距较远,其最接近的昼行性相关物种(异黄胸木蜂属)被认为是一个已经重新进化为昼行性觅食的谱系。适应性蛋白进化的测试表明,长波视蛋白显示出强烈的稳定选择证据,根据分析程序,只有不到五个密码子(2%)受到正选择。在导致巨蜂属的分支中,单一正选择密码子的氨基酸在被检查的祖先木蜂科中保守,并且与已知影响发色团结合口袋分子结构的密码子同源。从理论上讲,这种突变可以改变视蛋白 λ(max)的敏感性,并使视觉转导在替代的光环境中进行。结果根据可用的光色素结构、形态特化和地质时间内的生物地理分布证据进行了讨论。