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本文引用的文献

1
Epigenetic basis of morphological variation and phenotypic plasticity in Arabidopsis thaliana.拟南芥形态变异和表型可塑性的表观遗传基础
Plant Cell. 2015 Feb;27(2):337-48. doi: 10.1105/tpc.114.133025. Epub 2015 Feb 10.
2
Genetic resources for quantitative trait analysis: novelty and efficiency in design from an Arabidopsis perspective.数量性状分析的遗传资源:从拟南芥角度看设计中的新颖性与效率
Curr Opin Plant Biol. 2014 Apr;18:103-9. doi: 10.1016/j.pbi.2014.02.011. Epub 2014 Mar 20.
3
Mapping the epigenetic basis of complex traits.绘制复杂性状的表观遗传基础图谱。
Science. 2014 Mar 7;343(6175):1145-8. doi: 10.1126/science.1248127. Epub 2014 Feb 6.
4
Exploiting natural variation in Arabidopsis.利用拟南芥中的自然变异。
Methods Mol Biol. 2014;1062:139-53. doi: 10.1007/978-1-62703-580-4_6.
5
Multi-dimensional regulation of metabolic networks shaping plant development and performance.代谢网络的多维调控塑造植物的发育和性能。
J Exp Bot. 2012 May;63(9):3353-65. doi: 10.1093/jxb/err373. Epub 2011 Dec 3.
6
Epigenetic contribution to stress adaptation in plants.植物应激适应的表观遗传学贡献。
Curr Opin Plant Biol. 2011 Jun;14(3):267-74. doi: 10.1016/j.pbi.2011.03.004. Epub 2011 Mar 28.
7
Bursts of retrotransposition reproduced in Arabidopsis.逆转座爆发在拟南芥中得以重现。
Nature. 2009 Sep 17;461(7262):423-6. doi: 10.1038/nature08351. Epub 2009 Sep 6.
8
Assessing the impact of transgenerational epigenetic variation on complex traits.评估跨代表观遗传变异对复杂性状的影响。
PLoS Genet. 2009 Jun;5(6):e1000530. doi: 10.1371/journal.pgen.1000530. Epub 2009 Jun 26.
9
HSP90 affects the expression of genetic variation and developmental stability in quantitative traits.热休克蛋白90(HSP90)影响数量性状中遗传变异的表达及发育稳定性。
Proc Natl Acad Sci U S A. 2008 Feb 26;105(8):2963-8. doi: 10.1073/pnas.0712200105. Epub 2008 Feb 19.

表观遗传变异有助于拟南芥的环境适应性。

Epigenetic variation contributes to environmental adaptation of Arabidopsis thaliana.

作者信息

Kooke Rik, Keurentjes Joost J B

机构信息

a Laboratory of Genetics; Wageningen University ; Wageningen , The Netherlands.

b Laboratory of Plant Physiology; Wageningen University ; Wageningen , The Netherlands.

出版信息

Plant Signal Behav. 2015;10(9):e1057368. doi: 10.1080/15592324.2015.1057368.

DOI:10.1080/15592324.2015.1057368
PMID:26237693
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4883878/
Abstract

Epigenetic variation is frequently observed in plants and direct relationships between differences in DNA methylation and phenotypic responses to changing environments have often been described. The identification of contributing genetic loci, however, was until recently hampered by the lack of suitable genome wide mapping resources that specifically segregate for epigenetic marks. The development of epi-RIL populations in the model species Arabidopsis thaliana has alleviated this obstacle, enabling the accurate genetic analysis of epigenetic variation. Comprehensive morphological phenotyping of a ddm1 derived epi-RIL population in different environments and subsequent epi-QTL mapping revealed a high number of epi-QTLs and pleiotropic effects of several DMRs on numerous traits. For a number of these epi-QTLs epistatic interactions could be observed, further adding to the complexity of epigenetic regulation. Moreover, linkage to epigenetic marks indicated a specific role for DNA-methylation variation, rather than TE transposition, in plastic responses to changing environments. These findings provide supportive evidence for a role of epigenetic regulation in evolutionary and adaptive processes.

摘要

表观遗传变异在植物中经常被观察到,并且DNA甲基化差异与对变化环境的表型反应之间的直接关系也经常被描述。然而,直到最近,由于缺乏专门针对表观遗传标记进行分离的合适全基因组图谱资源,对相关基因座的鉴定受到了阻碍。模式植物拟南芥中表观重组自交系群体的发展缓解了这一障碍,使得对表观遗传变异进行准确的遗传分析成为可能。对一个由ddm1衍生的表观重组自交系群体在不同环境下进行全面的形态表型分析,随后进行表观数量性状位点(epi-QTL)定位,结果显示出大量的epi-QTL以及几个差异甲基化区域(DMR)对众多性状的多效性影响。对于其中许多epi-QTL,可以观察到上位性相互作用,这进一步增加了表观遗传调控的复杂性。此外,与表观遗传标记的连锁表明,在对变化环境的可塑性反应中,DNA甲基化变异而非转座元件(TE)转座具有特定作用。这些发现为表观遗传调控在进化和适应过程中的作用提供了支持性证据。