Kratochwil Claudius F, Meyer Axel
Chair in Zoology and Evolutionary Biology, Department of Biology, University of Konstanz, Konstanz, Germany; Zukunftskolleg, University of Konstanz, Konstanz, Germany.
Bioessays. 2015 Feb;37(2):213-26. doi: 10.1002/bies.201400142. Epub 2014 Nov 7.
The analysis of genetic and epigenetic mechanisms of the genotype-phenotypic connection has, so far, only been possible in a handful of genetic model systems. Recent technological advances, including next-generation sequencing methods such as RNA-seq, ChIP-seq and RAD-seq, and genome-editing approaches including CRISPR-Cas, now permit to address these fundamental questions of biology also in organisms that have been studied in their natural habitats. We provide an overview of the benefits and drawbacks of these novel techniques and experimental approaches that can now be applied to ecological and evolutionary vertebrate models such as sticklebacks and cichlid fish. We can anticipate that these new methods will increase the understanding of the genetic and epigenetic factors influencing adaptations and phenotypic variation in ecological settings. These new arrows in the methodological quiver of ecologist will drastically increase the understanding of the genetic basis of adaptive traits - leading to a further closing of the genotype-phenotype gap.
迄今为止,基因型与表型联系的遗传和表观遗传机制分析仅在少数遗传模型系统中得以实现。包括RNA测序(RNA-seq)、染色质免疫沉淀测序(ChIP-seq)和简化基因组测序(RAD-seq)等新一代测序方法,以及包括CRISPR-Cas在内的基因组编辑方法等近期技术进展,如今使得在自然栖息地中研究的生物体中也能够解决这些生物学基本问题。我们概述了这些现在可应用于诸如棘鱼和丽鱼科鱼类等生态和进化脊椎动物模型的新技术和实验方法的优缺点。我们可以预期,这些新方法将增进对影响生态环境中适应性和表型变异的遗传和表观遗传因素的理解。生态学家方法宝库中的这些新工具将极大地增进对适应性性状遗传基础的理解——从而进一步缩小基因型与表型之间的差距。