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Maturation proteins and sugars in desiccation tolerance of developing soybean seeds.发育中的大豆种子耐干燥性中的成熟蛋白和糖。
Plant Physiol. 1992 Sep;100(1):225-30. doi: 10.1104/pp.100.1.225.
2
Molecular genetic perspectives on cross-talk and specificity in abiotic stress signalling in plants.植物非生物胁迫信号传导中相互作用与特异性的分子遗传学观点
J Exp Bot. 2004 Jan;55(395):225-36. doi: 10.1093/jxb/erh005. Epub 2003 Dec 12.
3
Two different heat shock transcription factors regulate immediate early expression of stress genes in Arabidopsis.两种不同的热休克转录因子调节拟南芥中应激基因的即时早期表达。
Mol Genet Genomics. 2004 Feb;271(1):11-21. doi: 10.1007/s00438-003-0954-8. Epub 2003 Dec 4.
4
Down-regulating alpha-galactosidase enhances freezing tolerance in transgenic petunia.下调α-半乳糖苷酶可增强转基因矮牵牛的抗冻性。
Plant Physiol. 2003 Oct;133(2):901-9. doi: 10.1104/pp.103.024554. Epub 2003 Sep 18.
5
Arabidopsis hot mutants define multiple functions required for acclimation to high temperatures.拟南芥热突变体定义了适应高温所需的多种功能。
Plant Physiol. 2003 Jun;132(2):757-67. doi: 10.1104/pp.102.017145. Epub 2003 Apr 17.
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Expression of a GALACTINOL SYNTHASE gene in tomato seeds is up-regulated before maturation desiccation and again after imbibition whenever radicle protrusion is prevented.半乳糖醇合成酶基因在番茄种子中的表达在成熟脱水前上调,并且在吸胀后只要胚根突出受到抑制就会再次上调。
Plant Physiol. 2003 Mar;131(3):1347-59. doi: 10.1104/pp.016386.
7
The hot and the classic.热门与经典。
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8
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。
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9
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。
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10
Metabolism of the Raffinose Family Oligosaccharides in Leaves of Ajuga reptans L. (Cold Acclimation, Translocation, and Sink to Source Transition: Discovery of Chain Elongation Enzyme).筋骨草叶片中棉子糖家族寡糖的代谢(冷驯化、转运及库源转变:链延伸酶的发现)
Plant Physiol. 1994 Aug;105(4):1335-1345. doi: 10.1104/pp.105.4.1335.

半乳糖醇合酶1。一种新型热激因子靶基因,负责拟南芥中热诱导的棉子糖家族寡糖的合成。

Galactinol synthase1. A novel heat shock factor target gene responsible for heat-induced synthesis of raffinose family oligosaccharides in Arabidopsis.

作者信息

Panikulangara Tressa Jacob, Eggers-Schumacher Gabriele, Wunderlich Markus, Stransky Harald, Schöffl Fritz

机构信息

Zentrum für Molekularbiologie der Pflanzen, Allgemeine Genetik , Universität Tübingen, D-72076 Tubingen, Germany.

出版信息

Plant Physiol. 2004 Oct;136(2):3148-58. doi: 10.1104/pp.104.042606. Epub 2004 Oct 1.

DOI:10.1104/pp.104.042606
PMID:15466240
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC523375/
Abstract

Heat shock factors (HSFs) are transcriptional regulators of the heat shock response. The major target of HSFs are the genes encoding heat shock proteins (HSPs), which are known to have a protective function that counteracts cytotoxic effects. To identify other HSF target genes, which may be important determinants for the generation of stress tolerance in Arabidopsis, we screened a library enriched for genes that are up-regulated in HSF3 (AtHsfA1b)-overexpressing transgenic plants (TPs). Galactinol synthase1 (GolS1) is one of the genes that is heat-inducible in wild type, but shows constitutive mRNA levels in HSF3 TPs. The generation and analysis of TPs containing GolS1-promoter::beta-glucuronidase-reporter gene constructs showed that, upon heat stress, the expression is transcriptionally controlled and occurs in all vegetative tissues. Functional consequences of GolS1 expression were investigated by the quantification of raffinose, stachyose, and galactinol contents in wild type, HSF3 TPs, and two different GolS1 knockout mutants (gols1-1 and gols1-2). This analysis demonstrates that (1) raffinose content in leaves increases upon heat stress in wild-type but not in the GolS1 mutant plants; and (2) the level of raffinose is enhanced and stachyose is present at normal temperature in HSF3 TPs. These data provide evidence that GolS1 is a novel HSF target gene, which is responsible for heat stress-dependent synthesis of raffinose, a member of the raffinose family oligosaccharides. The biological function of this osmoprotective substance and the role of HSF-dependent genes in this biochemical pathway are discussed.

摘要

热休克因子(HSFs)是热休克反应的转录调节因子。HSFs的主要靶标是编码热休克蛋白(HSPs)的基因,已知这些基因具有抵消细胞毒性作用的保护功能。为了鉴定其他可能是拟南芥中产生胁迫耐受性的重要决定因素的HSF靶基因,我们筛选了一个文库,该文库富含在过表达HSF3(AtHsfA1b)的转基因植物(TPs)中上调的基因。棉子糖合酶1(GolS1)是在野生型中受热诱导但在HSF3 TPs中显示组成型mRNA水平的基因之一。对含有GolS1启动子::β-葡萄糖醛酸酶报告基因构建体的TPs进行生成和分析表明,在热胁迫下,该表达受转录控制且发生在所有营养组织中。通过定量野生型、HSF3 TPs和两个不同的GolS1敲除突变体(gols1-1和gols1-2)中的棉子糖、水苏糖和棉子糖含量,研究了GolS1表达的功能后果。该分析表明:(1)野生型植物在热胁迫下叶片中的棉子糖含量增加,而在GolS1突变体植物中则没有增加;(2)HSF3 TPs在常温下棉子糖水平升高且存在水苏糖。这些数据提供了证据,证明GolS1是一个新的HSF靶基因,它负责热胁迫依赖的棉子糖合成,棉子糖是棉子糖家族寡糖的成员之一。本文讨论了这种渗透保护物质的生物学功能以及HSF依赖基因在该生化途径中的作用。