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鸟类基因组学对野生动物保护的价值。

The value of avian genomics to the conservation of wildlife.

作者信息

Romanov Michael N, Tuttle Elaina M, Houck Marlys L, Modi William S, Chemnick Leona G, Korody Marisa L, Mork Emily M Stremel, Otten Christie A, Renner Tanya, Jones Kenneth C, Dandekar Sugandha, Papp Jeanette C, Da Yang, Green Eric D, Magrini Vincent, Hickenbotham Matthew T, Glasscock Jarret, McGrath Sean, Mardis Elaine R, Ryder Oliver A

机构信息

Genetics Division, San Diego Zoo's Institute for Conservation Research, Zoological Society of San Diego, Arnold and Mabel Beckman Center for Conservation Research, 15600 San Pasqual Valley Rd., Escondido, CA 92027, USA.

出版信息

BMC Genomics. 2009 Jul 14;10 Suppl 2(Suppl 2):S10. doi: 10.1186/1471-2164-10-S2-S10.

Abstract

BACKGROUND

Genomic studies in non-domestic avian models, such as the California condor and white-throated sparrow, can lead to more comprehensive conservation plans and provide clues for understanding mechanisms affecting genetic variation, adaptation and evolution.Developing genomic tools and resources including genomic libraries and a genetic map of the California condor is a prerequisite for identification of candidate loci for a heritable embryonic lethal condition. The white-throated sparrow exhibits a stable genetic polymorphism (i.e. chromosomal rearrangements) associated with variation in morphology, physiology, and behavior (e.g., aggression, social behavior, sexual behavior, parental care).In this paper we outline the utility of these species as well as report on recent advances in the study of their genomes.

RESULTS

Genotyping of the condor resource population at 17 microsatellite loci provided a better assessment of the current population's genetic variation. Specific New World vulture repeats were found in the condor genome. Using condor BAC library and clones, chicken-condor comparative maps were generated. A condor fibroblast cell line transcriptome was characterized using the 454 sequencing technology.Our karyotypic analyses of the sparrow in combination with other studies indicate that the rearrangements in both chromosomes 2m and 3a are complex and likely involve multiple inversions, interchromosomal linkage, and pleiotropy. At least a portion of the rearrangement in chromosome 2m existed in the common ancestor of the four North American species of Zonotrichia, but not in the one South American species, and that the 2m form, originally thought to be the derived condition, might actually be the ancestral one.

CONCLUSION

Mining and characterization of candidate loci in the California condor using molecular genetic and genomic techniques as well as linkage and comparative genomic mapping will eventually enable the identification of carriers of the chondrodystrophy allele, resulting in improved genetic management of this disease.In the white-throated sparrow, genomic studies, combined with ecological data, will help elucidate the basis of genic selection in a natural population. Morphs of the sparrow provide us with a unique opportunity to study intraspecific genomic differences, which have resulted from two separate yet linked evolutionary trajectories. Such results can transform our understanding of evolutionary and conservation biology.

摘要

背景

在诸如加州兀鹫和白喉带鹀等非家养鸟类模型中开展基因组研究,能够促成更全面的保护计划,并为理解影响遗传变异、适应和进化的机制提供线索。开发包括基因组文库和加州兀鹫遗传图谱在内的基因组工具和资源,是鉴定一种可遗传的胚胎致死病症候选基因座的先决条件。白喉带鹀表现出一种稳定的遗传多态性(即染色体重排),与形态、生理和行为(如攻击性、社会行为、性行为、亲代抚育)的变异相关。在本文中,我们概述了这些物种的效用,并报告了它们基因组研究的最新进展。

结果

对兀鹫资源群体在17个微卫星基因座上进行基因分型,能更好地评估当前群体的遗传变异。在兀鹫基因组中发现了特定的新大陆秃鹫重复序列。利用兀鹫细菌人工染色体文库和克隆构建了鸡 - 兀鹫比较图谱。使用454测序技术对兀鹫成纤维细胞系转录组进行了表征。我们对白喉带鹀的核型分析以及其他研究表明,2m和3a染色体的重排都很复杂,可能涉及多次倒位、染色体间连锁和多效性。2m染色体上至少一部分重排在北美四种狐色雀鹀的共同祖先中就已存在,但在南美一种雀鹀中不存在,而且最初被认为是衍生状态的2m形式,实际上可能是祖先形式。

结论

利用分子遗传和基因组技术以及连锁和比较基因组图谱对加州兀鹫的候选基因座进行挖掘和表征,最终将能够鉴定软骨发育不良等位基因的携带者,从而改善对这种疾病的遗传管理。在白喉带鹀中,基因组研究与生态数据相结合,将有助于阐明自然种群中基因选择的基础。白喉带鹀的形态为我们提供了一个独特的机会来研究种内基因组差异,这种差异源于两条独立但相互关联的进化轨迹。这些结果能够改变我们对进化生物学和保护生物学的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c63c/2966331/be573ba2d4cf/1471-2164-10-S2-S10-1.jpg

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