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本文引用的文献

1
Mutations in EDM2 selectively affect silencing states of transposons and induce plant developmental plasticity.EDM2 突变选择性地影响转座子的沉默状态,并诱导植物发育可塑性。
Sci Rep. 2013;3:1701. doi: 10.1038/srep01701.
2
How important are transposons for plant evolution?转座子对植物进化有多重要?
Nat Rev Genet. 2013 Jan;14(1):49-61. doi: 10.1038/nrg3374.
3
MicroRNA regulation of plant innate immune receptors.MicroRNA 对植物先天免疫受体的调控。
Proc Natl Acad Sci U S A. 2012 Jan 31;109(5):1790-5. doi: 10.1073/pnas.1118282109. Epub 2012 Jan 18.
4
Mechanisms and consequences of alternative polyadenylation.可变多聚腺苷酸化的机制和后果。
Mol Cell. 2011 Sep 16;43(6):853-66. doi: 10.1016/j.molcel.2011.08.017.
5
Whole-genome sequencing of multiple Arabidopsis thaliana populations.多个拟南芥群体的全基因组测序。
Nat Genet. 2011 Aug 28;43(10):956-63. doi: 10.1038/ng.911.
6
NLR functions in plant and animal immune systems: so far and yet so close.NLR 在动植物免疫系统中的功能:似曾相识,却又如此不同。
Nat Immunol. 2011 Aug 18;12(9):817-26. doi: 10.1038/ni.2083.
7
EMSY-like genes are required for full RPP7-mediated race-specific immunity and basal defense in Arabidopsis.EMSY 样基因对于拟南芥中 RPP7 介导的完全专化性免疫和基础防御是必需的。
Mol Plant Microbe Interact. 2011 Dec;24(12):1573-81. doi: 10.1094/MPMI-05-11-0123.
8
Genome-wide landscape of polyadenylation in Arabidopsis provides evidence for extensive alternative polyadenylation.在拟南芥中进行的聚腺苷酸化全基因组景观研究为广泛存在的可变聚腺苷酸化提供了证据。
Proc Natl Acad Sci U S A. 2011 Jul 26;108(30):12533-8. doi: 10.1073/pnas.1019732108. Epub 2011 Jul 11.
9
A "mille-feuille" of silencing: epigenetic control of transposable elements.沉默的“千层酥”:转座元件的表观遗传调控
Biochim Biophys Acta. 2011 Aug;1809(8):452-8. doi: 10.1016/j.bbagrm.2011.04.001. Epub 2011 Apr 12.
10
Epigenetics in alternative pre-mRNA splicing.表观遗传学在可变剪接中的作用。
Cell. 2011 Jan 7;144(1):16-26. doi: 10.1016/j.cell.2010.11.056.

通过内含子 retrotransposon 的驯化,一种替代的多聚腺苷酸化机制被采用到拟南芥 RPP7 基因中。

An alternative polyadenylation mechanism coopted to the Arabidopsis RPP7 gene through intronic retrotransposon domestication.

机构信息

Center for Plant Cell Biology, Institute for Integrative Genome Biology, Department of Botany and Plant Sciences, University of California, Riverside, CA 92521.

出版信息

Proc Natl Acad Sci U S A. 2013 Sep 10;110(37):E3535-43. doi: 10.1073/pnas.1312545110. Epub 2013 Aug 12.

DOI:10.1073/pnas.1312545110
PMID:23940361
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3773791/
Abstract

Transposable elements (TEs) can drive evolution by creating genetic and epigenetic variation. Although examples of adaptive TE insertions are accumulating, proof that epigenetic information carried by such "domesticated" TEs has been coopted to control host gene function is still limited. We show that COPIA-R7, a TE inserted into the Arabidopsis thaliana disease resistance gene RPP7 recruited the histone mark H3K9me2 to this locus. H3K9me2 levels at COPIA-R7 affect the choice between two alternative RPP7 polyadenylation sites in the pre-mRNA and, thereby, influence the critical balance between RPP7-coding and non-RPP7-coding transcript isoforms. Function of RPP7 is fully dependent on high levels of H3K9me2 at COPIA-R7. We present a direct in vivo demonstration for cooption of a TE-associated histone mark to the epigenetic control of pre-mRNA processing and establish a unique mechanism for regulation of plant immune surveillance gene expression. Our results functionally link a histone mark to alternative polyadenylation and the balance between distinct transcript isoforms from a single gene.

摘要

转座元件 (TEs) 可以通过创造遗传和表观遗传变异来推动进化。虽然适应性 TE 插入的例子在不断增加,但证明这些“驯化”TE 所携带的表观遗传信息已被用来控制宿主基因功能的证据仍然有限。我们表明,插入拟南芥抗病基因 RPP7 中的 TE COPIA-R7 招募了组蛋白标记 H3K9me2 到该基因座。COPIA-R7 上的 H3K9me2 水平影响前体 mRNA 中两个替代 RPP7 多聚腺苷酸化位点之间的选择,从而影响 RPP7 编码和非 RPP7 编码转录本异构体之间的关键平衡。RPP7 的功能完全依赖于 COPIA-R7 上高水平的 H3K9me2。我们提供了一个直接的体内证据,证明了一个 TE 相关的组蛋白标记被用来表观遗传控制前体 mRNA 的加工,并建立了一个独特的机制来调节植物免疫监视基因的表达。我们的结果将一个组蛋白标记与单一基因的不同转录本异构体之间的交替多聚腺苷酸化和平衡功能联系起来。