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本文引用的文献

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PLANT COLD ACCLIMATION: Freezing Tolerance Genes and Regulatory Mechanisms.植物冷驯化:抗冻基因与调控机制
Annu Rev Plant Physiol Plant Mol Biol. 1999 Jun;50:571-599. doi: 10.1146/annurev.arplant.50.1.571.
2
ICE1: a regulator of cold-induced transcriptome and freezing tolerance in Arabidopsis.ICE1:拟南芥中冷诱导转录组和抗冻性的调控因子。
Genes Dev. 2003 Apr 15;17(8):1043-54. doi: 10.1101/gad.1077503. Epub 2003 Apr 2.
3
Transcriptome changes for Arabidopsis in response to salt, osmotic, and cold stress.拟南芥响应盐、渗透和冷胁迫的转录组变化。
Plant Physiol. 2002 Dec;130(4):2129-41. doi: 10.1104/pp.008532.
4
OSM1/SYP61: a syntaxin protein in Arabidopsis controls abscisic acid-mediated and non-abscisic acid-mediated responses to abiotic stress.OSM1/SYP61:拟南芥中的一种 syntaxin 蛋白控制脱落酸介导和非脱落酸介导的对非生物胁迫的反应。
Plant Cell. 2002 Dec;14(12):3009-28. doi: 10.1105/tpc.006981.
5
Transcription factor CBF4 is a regulator of drought adaptation in Arabidopsis.转录因子CBF4是拟南芥干旱适应性的调节因子。
Plant Physiol. 2002 Oct;130(2):639-48. doi: 10.1104/pp.006478.
6
Arabidopsis transcriptome profiling indicates that multiple regulatory pathways are activated during cold acclimation in addition to the CBF cold response pathway.拟南芥转录组分析表明,除了CBF冷响应途径外,在低温驯化过程中还有多个调控途径被激活。
Plant Cell. 2002 Aug;14(8):1675-90. doi: 10.1105/tpc.003483.
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Signal transduction leading to low-temperature tolerance in Arabidopsis thaliana.拟南芥中导致低温耐受性的信号转导。
Philos Trans R Soc Lond B Biol Sci. 2002 Jul 29;357(1423):871-5. doi: 10.1098/rstb.2002.1096.
8
Monitoring the expression profiles of 7000 Arabidopsis genes under drought, cold and high-salinity stresses using a full-length cDNA microarray.使用全长cDNA微阵列监测7000个拟南芥基因在干旱、寒冷和高盐胁迫下的表达谱。
Plant J. 2002 Aug;31(3):279-92. doi: 10.1046/j.1365-313x.2002.01359.x.
9
A mitochondrial complex I defect impairs cold-regulated nuclear gene expression.线粒体复合体I缺陷会损害冷调节核基因表达。
Plant Cell. 2002 Jun;14(6):1235-51. doi: 10.1105/tpc.010433.
10
Cell signaling during cold, drought, and salt stress.寒冷、干旱和盐胁迫下的细胞信号传导。
Plant Cell. 2002;14 Suppl(Suppl):S165-83. doi: 10.1105/tpc.000596.

拟南芥同源异型域转录因子基因HOS9通过一条不依赖CBF的途径介导耐寒性。

An Arabidopsis homeodomain transcription factor gene, HOS9, mediates cold tolerance through a CBF-independent pathway.

作者信息

Zhu Jianhua, Shi Huazhong, Lee Byeong-ha, Damsz Barbara, Cheng Shie, Stirm Vicki, Zhu Jian-Kang, Hasegawa Paul M, Bressan Ray A

机构信息

Department of Horticulture and Landscape Architecture, Purdue University, West Lafayette, IN 47907, USA.

出版信息

Proc Natl Acad Sci U S A. 2004 Jun 29;101(26):9873-8. doi: 10.1073/pnas.0403166101. Epub 2004 Jun 17.

DOI:10.1073/pnas.0403166101
PMID:15205481
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC470766/
Abstract

To investigate essential components mediating stress signaling in plants, we initiated a large-scale stress response screen using Arabidopsis plants carrying the firefly luciferase reporter gene under the control of the stress-responsive RD29A promoter. Here we report the identification and characterization of a mutant, hos9-1 (for high expression of osmotically responsive genes), in which the reporter construct was hyperactivated by low temperature, but not by abscisic acid or salinity stress. The mutants grow more slowly, and flower later, than do wild-type plants and are more sensitive to freezing, both before and after acclimation, than the wild-type plants. The HOS9 gene encodes a putative homeodomain transcription factor that is localized to the nucleus. HOS9 is constitutively expressed and not further induced by cold stress. Cold treatment increased the level of transcripts of the endogenous RD29A, and some other stress-responsive genes, to a higher level in hos9-1 than in wild-type plants. However, the C repeat/dehydration responsive element-binding factor (CBF) transcription factor genes that mediate a part of cold acclimation in Arabidopsis did not have their response to cold altered by the hos9-1 mutation. Correspondingly, microarray analysis showed that none of the genes affected by the hos9-1 mutation are controlled by the CBF family. Together, these results suggest that HOS9 is important for plant growth and development, and for a part of freezing tolerance, by affecting the activity of genes independent of the CBF pathway.

摘要

为了研究介导植物应激信号的关键成分,我们利用在应激响应型RD29A启动子控制下携带萤火虫荧光素酶报告基因的拟南芥植株,开展了大规模应激反应筛选。在此,我们报告了一个突变体hos9-1(渗透响应基因高表达)的鉴定和特征,在该突变体中,报告基因构建体被低温超激活,但不受脱落酸或盐胁迫激活。与野生型植株相比,这些突变体生长更缓慢,开花更晚,并且在驯化前后都比野生型植株对冷冻更敏感。HOS9基因编码一种假定的同源异型域转录因子,定位于细胞核。HOS9组成型表达,不受冷胁迫进一步诱导。冷处理使hos9-1中内源性RD29A和其他一些应激响应基因的转录本水平比野生型植株升高到更高水平。然而,介导拟南芥部分冷驯化的C重复/脱水响应元件结合因子(CBF)转录因子基因对冷的响应并未因hos9-1突变而改变。相应地,微阵列分析表明,受hos9-1突变影响的基因均不受CBF家族控制。总之,这些结果表明,HOS9通过影响独立于CBF途径的基因活性,对植物生长发育以及部分耐冻性具有重要作用。