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盲穴居鱼类复杂的颅面变化由基因对称和不对称位点介导。

Complex craniofacial changes in blind cave-dwelling fish are mediated by genetically symmetric and asymmetric loci.

作者信息

Gross Joshua B, Krutzler Amanda J, Carlson Brian M

机构信息

Department of Biological Sciences, University of Cincinnati, Cincinnati, Ohio 45221.

出版信息

Genetics. 2014 Apr;196(4):1303-19. doi: 10.1534/genetics.114.161661. Epub 2014 Feb 4.

Abstract

The genetic regulators of regressive craniofacial morphologies are poorly understood. To shed light on this problem, we examined the freshwater fish Astyanax mexicanus, a species with surface-dwelling and multiple independent eyeless cave-dwelling forms. Changes affecting the skull in cavefish include morphological alterations to the intramembranous circumorbital bones encircling the eye. Many of these modifications, however, have evolved separately from eye loss, such as fragmentation of the third suborbital bone. To understand the genetic architecture of these eye-independent craniofacial alterations, we developed and scored 33 phenotypes in the context of an F2 hybrid mapping pedigree bred from Pachón cavefish and surface fish. We discovered several individuals exhibiting dramatic left-right differences in bone formation, such as extensive fragmentation on the right side only. This observation, along with well-known eye size asymmetry in natural cave-dwelling animals, led us to further evaluate left-right genetic differences for the craniofacial complex. We discovered three phenotypes, inclusive of bone fragmentation and fusion, which demonstrated a directional heritable basis only on one side. Interestingly, the overall areas of affected bones were genetically symmetric. Phenotypic effect plots of these novel craniofacial QTL revealed that cave alleles are associated with abnormal conditions such as bony fusion and fragmentation. Moreover, many linked loci overlapped with other cave-associated traits, suggesting regressive craniofacial changes may evolve through linkage or as antagonistic pleiotropic consequences of cave-associated adaptations. These novel findings illuminate significant craniofacial changes accompanying evolution in complete darkness and reveal complex changes to the skull differentially influenced by genetic changes affecting the left and right sides.

摘要

人们对退行性颅面形态的基因调控因素了解甚少。为了阐明这一问题,我们研究了淡水鱼墨西哥丽脂鲤,该物种有表层栖息型和多种独立的无眼洞穴栖息型。洞穴鱼颅骨的变化包括环绕眼睛的膜内眶周骨的形态改变。然而,其中许多变化是与眼睛退化分开进化的,比如第三眶下骨的碎片化。为了了解这些与眼睛无关的颅面改变的遗传结构,我们在由帕琼洞穴鱼和表层鱼培育的F2杂交图谱谱系背景下,开发并对33种表型进行了评分。我们发现了几个个体在骨形成上表现出显著的左右差异,比如仅右侧出现广泛的碎片化。这一观察结果,连同天然洞穴栖息动物中众所周知的眼睛大小不对称现象,促使我们进一步评估颅面部复合体的左右基因差异。我们发现了三种表型,包括骨碎片化和融合,它们仅在一侧表现出定向遗传基础。有趣的是,受影响骨骼的总面积在基因上是对称的。这些新的颅面数量性状基因座的表型效应图显示,洞穴等位基因与诸如骨融合和碎片化等异常情况相关。此外,许多连锁基因座与其他洞穴相关性状重叠,这表明退行性颅面变化可能通过连锁或作为洞穴相关适应的拮抗性多效后果而进化。这些新发现揭示了在完全黑暗环境中进化过程中伴随的显著颅面变化,并揭示了颅骨的复杂变化受到影响左右两侧的基因变化的差异影响。

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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.
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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.

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