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野生番茄自然种群中胁迫响应基因的序列进化与表达调控

Sequence evolution and expression regulation of stress-responsive genes in natural populations of wild tomato.

作者信息

Fischer Iris, Steige Kim A, Stephan Wolfgang, Mboup Mamadou

机构信息

Section of Evolutionary Biology, Department of Biology II, University of Munich, Planegg-Martinsried, Germany.

出版信息

PLoS One. 2013 Oct 18;8(10):e78182. doi: 10.1371/journal.pone.0078182. eCollection 2013.

Abstract

The wild tomato species Solanum chilense and S. peruvianum are a valuable non-model system for studying plant adaptation since they grow in diverse environments facing many abiotic constraints. Here we investigate the sequence evolution of regulatory regions of drought and cold responsive genes and their expression regulation. The coding regions of these genes were previously shown to exhibit signatures of positive selection. Expression profiles and sequence evolution of regulatory regions of members of the Asr (ABA/water stress/ripening induced) gene family and the dehydrin gene pLC30-15 were analyzed in wild tomato populations from contrasting environments. For S. chilense, we found that Asr4 and pLC30-15 appear to respond much faster to drought conditions in accessions from very dry environments than accessions from more mesic locations. Sequence analysis suggests that the promoter of Asr2 and the downstream region of pLC30-15 are under positive selection in some local populations of S. chilense. By investigating gene expression differences at the population level we provide further support of our previous conclusions that Asr2, Asr4, and pLC30-15 are promising candidates for functional studies of adaptation. Our analysis also demonstrates the power of the candidate gene approach in evolutionary biology research and highlights the importance of wild Solanum species as a genetic resource for their cultivated relatives.

摘要

野生番茄物种智利番茄(Solanum chilense)和秘鲁番茄(S. peruvianum)是研究植物适应性的宝贵非模式系统,因为它们生长在面临许多非生物限制的多样环境中。在此,我们研究干旱和低温响应基因调控区域的序列进化及其表达调控。这些基因的编码区域先前已显示出正选择的特征。我们分析了来自不同环境的野生番茄种群中Asr(脱落酸/水分胁迫/成熟诱导)基因家族成员和脱水素基因pLC30 - 15调控区域的表达谱和序列进化。对于智利番茄,我们发现,与来自较为湿润地区的材料相比,来自非常干旱环境的材料中的Asr4和pLC30 - 15对干旱条件的响应似乎要快得多。序列分析表明,Asr2的启动子和pLC30 - 15的下游区域在智利番茄的一些当地种群中受到正选择。通过在种群水平上研究基因表达差异,我们进一步支持了我们之前的结论,即Asr2、Asr4和pLC30 - 15是适应性功能研究的有前景的候选基因。我们的分析还证明了候选基因方法在进化生物学研究中的作用,并突出了野生茄属物种作为其栽培亲缘种遗传资源的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f172/3799731/3c640392fe42/pone.0078182.g001.jpg

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