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2
Jasmonate inhibits COP1 activity to suppress hypocotyl elongation and promote cotyledon opening in etiolated Arabidopsis seedlings.茉莉酸抑制拟南芥黄化幼苗中COP1的活性,从而抑制下胚轴伸长并促进子叶张开。
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本文引用的文献

1
Jasmonate inhibits COP1 activity to suppress hypocotyl elongation and promote cotyledon opening in etiolated Arabidopsis seedlings.茉莉酸抑制拟南芥黄化幼苗中COP1的活性,从而抑制下胚轴伸长并促进子叶张开。
Plant J. 2017 Jun;90(6):1144-1155. doi: 10.1111/tpj.13539. Epub 2017 Apr 29.
2
Jasmonate action in plant growth and development.茉莉酸在植物生长发育中的作用。
J Exp Bot. 2017 Mar 1;68(6):1349-1359. doi: 10.1093/jxb/erw495.
3
Jasmonate signaling and manipulation by pathogens and insects.茉莉酸信号传导以及病原体和昆虫对其的操控
J Exp Bot. 2017 Mar 1;68(6):1371-1385. doi: 10.1093/jxb/erw478.
4
Seedlings Transduce the Depth and Mechanical Pressure of Covering Soil Using COP1 and Ethylene to Regulate EBF1/EBF2 for Soil Emergence.幼苗利用COP1和乙烯感知覆盖土壤的深度和机械压力,以调节EBF1/EBF2实现出土。
Curr Biol. 2016 Jan 25;26(2):139-149. doi: 10.1016/j.cub.2015.11.053. Epub 2015 Dec 31.
5
Beyond repression of photomorphogenesis: role switching of COP/DET/FUS in light signaling.超越光形态建成的抑制:COP/DET/FUS在光信号传导中的作用转换
Curr Opin Plant Biol. 2014 Oct;21:96-103. doi: 10.1016/j.pbi.2014.07.003. Epub 2014 Jul 25.
6
Ethylene-orchestrated circuitry coordinates a seedling's response to soil cover and etiolated growth.乙烯调控的电路协调幼苗对土壤覆盖和黄化生长的反应。
Proc Natl Acad Sci U S A. 2014 Mar 18;111(11):3913-20. doi: 10.1073/pnas.1402491111. Epub 2014 Mar 5.
7
MYC2: the master in action.MYC2:行动中的大师。
Mol Plant. 2013 May;6(3):686-703. doi: 10.1093/mp/sss128. Epub 2012 Nov 9.
8
Photomorphogenesis.光形态建成
Arabidopsis Book. 2002;1:e0054. doi: 10.1199/tab.0054. Epub 2002 Aug 12.
9
Derepression of ethylene-stabilized transcription factors (EIN3/EIL1) mediates jasmonate and ethylene signaling synergy in Arabidopsis.解除乙烯稳定的转录因子(EIN3/EIL1)对茉莉酸和乙烯信号协同作用的调控在拟南芥中起作用。
Proc Natl Acad Sci U S A. 2011 Jul 26;108(30):12539-44. doi: 10.1073/pnas.1103959108. Epub 2011 Jul 7.
10
Jasmonate perception by inositol-phosphate-potentiated COI1-JAZ co-receptor.茉莉酸感知的肌醇磷酸盐增强型 COI1-JAZ 共受体。
Nature. 2010 Nov 18;468(7322):400-5. doi: 10.1038/nature09430. Epub 2010 Oct 6.

茉莉酸抑制拟南芥幼苗的土壤萌发。

Jasmonate suppresses seedling soil emergence in Arabidopsis thaliana.

机构信息

a Jiangsu Key Laboratory for Biodiversity and Biotechnology , College of Life Sciences, Nanjing Normal University , Nanjing , China.

出版信息

Plant Signal Behav. 2017 Jun 3;12(6):e1330239. doi: 10.1080/15592324.2017.1330239. Epub 2017 May 23.

DOI:10.1080/15592324.2017.1330239
PMID:28534718
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5566255/
Abstract

In addition to defense response, phytohormone jasmonate participates in various plant growth and developmental processes. Nonetheless, its role in the seedling stage is not well defined. We recently report that jasmonate suppresses hypocotyl elongation and promotes cotyledon unfolding in etiolated Arabidopsis seedlings. The molecular basis underlying this phenotype is that jasmonate treatment reduces the biochemical activity of CONSTITUTIVE PHOTOMORPHOGENIC 1 (COP1) to stabilize several COP1-targetted transcription factors for eliciting a proportion of light responsive transcriptome. We further reveal that jasmonate receptor CORONATINE INSENSITIVE 1 (COI1) and bHLH transcription factor MYC2 are required for the suppression of COP1 activity. Because elongated hypocotyl and closed cotyledons secure the success for seedling soil emergence, here we investigate seedling soil emergence under jasmonate treatment and find that jasmonate reduces the seedling emerging rates in the wild-type plants. Consistent with the largely insensitive to jasmonate in the suppression of skotomorphogenesis, the soil emerging rates in coi1 or myc2 mutants are almost not altered in the presence of jasmonate. Our data addendum describe that jasmonate-triggered inhibition of etiolation growth results in the defects in seedling soil emergence and suggest that defense-stimulated jasmonate biosynthesis might affect seedling germination in soil.

摘要

除了防御反应,植物激素茉莉酸还参与了各种植物生长和发育过程。然而,它在幼苗阶段的作用尚未得到明确的定义。我们最近报告称,茉莉酸抑制下胚轴伸长并促进黄化拟南芥幼苗子叶展开。这种表型的分子基础是,茉莉酸处理降低了组成型光形态建成 1(COP1)的生化活性,以稳定几种 COP1 靶向转录因子,从而引发部分光响应转录组。我们进一步揭示,茉莉酸受体 CORONATINE INSENSITIVE 1(COI1)和 bHLH 转录因子 MYC2 是抑制 COP1 活性所必需的。因为伸长的下胚轴和闭合的子叶确保了幼苗在土壤中成功出苗,因此我们在茉莉酸处理下研究了幼苗在土壤中的出苗情况,发现茉莉酸降低了野生型植物的出苗率。与茉莉酸在抑制暗形态建成方面的敏感性不同,在 COI1 或 myc2 突变体中,即使存在茉莉酸,幼苗在土壤中的出苗率也几乎没有改变。我们的数据补充描述了茉莉酸触发的暗形态建成抑制导致幼苗在土壤中出苗的缺陷,并表明防御刺激的茉莉酸生物合成可能会影响土壤中的幼苗萌发。