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针叶树基因组学与适应性:处于遗传多样性和基因组功能的交叉点

Conifer genomics and adaptation: at the crossroads of genetic diversity and genome function.

作者信息

Prunier Julien, Verta Jukka-Pekka, MacKay John J

机构信息

Centre for Forest Research and Institute for Systems and Integrative Biology, Université Laval, Quebec, QC, G1V 0A6, Canada.

Friedrich Miescher Laboratory of the Max Planck Society, Spemannstrasse 39, Tübingen, 72076, Germany.

出版信息

New Phytol. 2016 Jan;209(1):44-62. doi: 10.1111/nph.13565. Epub 2015 Jul 22.

Abstract

Conifers have been understudied at the genomic level despite their worldwide ecological and economic importance but the situation is rapidly changing with the development of next generation sequencing (NGS) technologies. With NGS, genomics research has simultaneously gained in speed, magnitude and scope. In just a few years, genomes of 20-24 gigabases have been sequenced for several conifers, with several others expected in the near future. Biological insights have resulted from recent sequencing initiatives as well as genetic mapping, gene expression profiling and gene discovery research over nearly two decades. We review the knowledge arising from conifer genomics research emphasizing genome evolution and the genomic basis of adaptation, and outline emerging questions and knowledge gaps. We discuss future directions in three areas with potential inputs from NGS technologies: the evolutionary impacts of adaptation in conifers based on the adaptation-by-speciation model; the contributions of genetic variability of gene expression in adaptation; and the development of a broader understanding of genetic diversity and its impacts on genome function. These research directions promise to sustain research aimed at addressing the emerging challenges of adaptation that face conifer trees.

摘要

尽管针叶树在全球生态和经济方面具有重要意义,但在基因组水平上一直未得到充分研究。不过,随着下一代测序(NGS)技术的发展,这种情况正在迅速改变。借助NGS,基因组学研究在速度、规模和范围上都有了同步提升。在短短几年内,已经对几种针叶树进行了20 - 24千兆碱基的基因组测序,预计在不久的将来还会有其他几种针叶树完成测序。近二十年来,近期的测序计划以及遗传图谱构建、基因表达谱分析和基因发现研究都带来了生物学见解。我们回顾了针叶树基因组学研究产生的知识,重点关注基因组进化和适应的基因组基础,并概述了新出现的问题和知识空白。我们讨论了三个领域的未来方向,这些方向可能会受益于NGS技术:基于物种形成适应模型的针叶树适应的进化影响;基因表达的遗传变异性在适应中的作用;以及对遗传多样性及其对基因组功能影响的更广泛理解的发展。这些研究方向有望维持旨在应对针叶树面临的新出现的适应挑战的研究。

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