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本文引用的文献

1
A Reversible Photoreaction Controlling Seed Germination.一种控制种子萌发的可逆光反应。
Proc Natl Acad Sci U S A. 1952 Aug;38(8):662-6. doi: 10.1073/pnas.38.8.662.
2
BAS1 and SOB7 act redundantly to modulate Arabidopsis photomorphogenesis via unique brassinosteroid inactivation mechanisms.BAS1和SOB7通过独特的油菜素内酯失活机制,以冗余方式调控拟南芥的光形态建成。
Plant J. 2005 Apr;42(1):23-34. doi: 10.1111/j.1365-313X.2005.02358.x.
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The Dof transcription factor OBP3 modulates phytochrome and cryptochrome signaling in Arabidopsis.Dof转录因子OBP3调节拟南芥中的光敏色素和隐花色素信号传导。
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Molecular mechanism of gibberellin signaling in plants.植物中赤霉素信号传导的分子机制。
Annu Rev Plant Biol. 2004;55:197-223. doi: 10.1146/annurev.arplant.55.031903.141753.
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Regulation of disease resistance pathways by AP2/ERF transcription factors.AP2/ERF转录因子对抗病途径的调控
Curr Opin Plant Biol. 2004 Aug;7(4):465-71. doi: 10.1016/j.pbi.2004.04.007.
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Genome-wide ORFeome cloning and analysis of Arabidopsis transcription factor genes.拟南芥转录因子基因的全基因组开放阅读框克隆与分析
Plant Physiol. 2004 Jun;135(2):773-82. doi: 10.1104/pp.104.042176.
7
GCR1 can act independently of heterotrimeric G-protein in response to brassinosteroids and gibberellins in Arabidopsis seed germination.在拟南芥种子萌发过程中,GCR1能够独立于异源三聚体G蛋白对油菜素内酯和赤霉素作出反应。
Plant Physiol. 2004 Jun;135(2):907-15. doi: 10.1104/pp.104.038992. Epub 2004 Jun 4.
8
Della proteins and gibberellin-regulated seed germination and floral development in Arabidopsis.拟南芥中Della蛋白与赤霉素调控种子萌发和花发育
Plant Physiol. 2004 Jun;135(2):1008-19. doi: 10.1104/pp.104.039578. Epub 2004 Jun 1.
9
Arabidopsis MPSS. An online resource for quantitative expression analysis.拟南芥大规模平行签名测序。用于定量表达分析的在线资源。
Plant Physiol. 2004 Jun;135(2):801-13. doi: 10.1104/pp.104.039495. Epub 2004 Jun 1.
10
dwarf and delayed-flowering 1, a novel Arabidopsis mutant deficient in gibberellin biosynthesis because of overexpression of a putative AP2 transcription factor.矮化和开花延迟1,一种拟南芥新突变体,由于一个假定的AP2转录因子过表达而缺乏赤霉素生物合成。
Plant J. 2004 Mar;37(5):720-9. doi: 10.1111/j.1365-313x.2003.01998.x.

同源基因SOB2/DRN-LIKE的错误表达揭示了拟南芥AP2转录因子叶状叶柄在赤霉素诱导的种子萌发中的新作用。

A new role for the Arabidopsis AP2 transcription factor, LEAFY PETIOLE, in gibberellin-induced germination is revealed by the misexpression of a homologous gene, SOB2/DRN-LIKE.

作者信息

Ward Jason M, Smith Alison M, Shah Purvi K, Galanti Sarah E, Yi Hankuil, Demianski Agnes J, van der Graaff Eric, Keller Beat, Neff Michael M

机构信息

Department of Biology, Washington University, St. Louis, Missouri 63130, USA.

出版信息

Plant Cell. 2006 Jan;18(1):29-39. doi: 10.1105/tpc.105.036707. Epub 2005 Dec 9.

DOI:10.1105/tpc.105.036707
PMID:16339853
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1323482/
Abstract

Gibberellic acid (GA) promotes germination, stem/hypocotyl elongation, and leaf expansion during seedling development. Using activation-tagging mutagenesis, we identified a mutation, sob2-D (for suppressor of phytochromeB-4 [phyB-4]#2 dominant), which suppresses the long-hypocotyl phenotype of a phyB missense allele, phyB-4. This mutant phenotype is caused by the overexpression of an APETALA2 transcription factor, SOB2, also called DRN-like. SOB2/DRN-like transcript is not detectable in wild-type seedling or adult tissues via RT-PCR analysis, suggesting that SOB2/DRN-like may not be involved in seedling development under normal conditions. Adult sob2-D phyB-4 plants have curled leaves and club-like siliques, resembling plants that overexpress a closely related gene, LEAFY PETIOLE (LEP). Hypocotyls of a LEP-null allele, lep-1, are shorter in the light and dark, suggesting LEP involvement in seedling development. This aberrant hypocotyl phenotype is due at least in part to a delay in germination. In addition, lep-1 is less responsive to GA and more sensitive to the GA biosynthesis inhibitor paclobutrazol, indicating that LEP is a positive regulator of GA-induced germination. RT-PCR shows that LEP transcript accumulates in wild-type seeds during imbibition and germination, and the transcript levels of REPRESSOR OF ga1-3-LIKE2 (RGL2), a negative regulator of GA signaling during germination, is unaffected in lep-1. These results suggest LEP is a positive regulator of GA-induced germination acting independently of RGL2. An alternative model places LEP downstream of RGL2 in the GA-signaling cascade.

摘要

赤霉素(GA)在幼苗发育过程中促进种子萌发、茎/下胚轴伸长和叶片扩展。利用激活标签诱变技术,我们鉴定出了一个突变体sob2-D(phytochromeB-4 [phyB-4]#2显性抑制子),它可以抑制phyB错义等位基因phyB-4的长下胚轴表型。这种突变体表型是由一个APETALA2转录因子SOB2(也称为DRN-like)的过表达引起的。通过RT-PCR分析,在野生型幼苗或成年组织中检测不到SOB2/DRN-like转录本,这表明SOB2/DRN-like在正常条件下可能不参与幼苗发育。成年sob2-D phyB-4植株有卷曲的叶子和棒状的角果,类似于过表达一个密切相关基因LEAFY PETIOLE(LEP)的植株。LEP无效等位基因lep-1的下胚轴在光照和黑暗条件下都较短,这表明LEP参与幼苗发育。这种异常的下胚轴表型至少部分是由于萌发延迟。此外,lep-1对GA的反应较弱,对GA生物合成抑制剂多效唑更敏感,这表明LEP是GA诱导萌发的正调节因子。RT-PCR显示,LEP转录本在野生型种子吸胀和萌发过程中积累,而萌发过程中GA信号的负调节因子ga1-3-LIKE2抑制子(RGL2)的转录水平在lep-1中不受影响。这些结果表明LEP是GA诱导萌发的正调节因子,其作用独立于RGL2。另一种模型将LEP置于GA信号级联反应中RGL2的下游。