首页> 外文期刊>Acta Physiologiae Plantarum >Identification of desiccation-regulated genes by cDNA-AFLP in Haberlea rhodopensis: a resurrection plant
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Identification of desiccation-regulated genes by cDNA-AFLP in Haberlea rhodopensis: a resurrection plant

机译:利用cDNA-AFLP鉴定Haberlea红景天中的干燥调控基因:一种复活植物

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The Balkan endemic plant species Haberlea rhodopensis belongs to the group of resurrection plants. The members of this small group of angiosperms tolerate extreme dehydration of their vegetative tissues, which are able to recover very rapidly upon rehydration. In this respect, resurrection plants are a unique model intensively studied to reveal the secrets of desiccation tolerance. To date, the knowledge on the molecular biology of H. rhodopensis is very limited. Here, we report on the application of a cDNA-AFLP analysis to examine gene expression in leaves of Haberlea during dehydration. Twenty transcripts among 33 sequenced cDNA fragments appear to be involved in energy metabolism, transport, cell-wall biogenesis, signal transduction, or are probably transcription regulators according to their putative function. Expression patterns of two up-regulated (HrhDR8, HrhDR35) and two down-regulated (HrhDR6, HrhDR25) transcripts were verified by sqRT-PCR analysis at different stages of water stress. The results demonstrated that two up-regulated transcripts HrhDR8 and HrhDR35 encoding putative succinate-dehydrogenase and xyloglucan endotransglucosylase/hydrolase (XTH), respectively, were induced during early stage of dehydration, persist in desiccated state, and subsequent rehydration of Haberlea. Their possible involvement in drought tolerance is discussed.
机译:巴尔干特有植物Haberlea rhodopensis属于复活植物。这小群被子植物的成员可以忍受其营养组织的极度脱水,这些组织在脱水后能够很快恢复。在这方面,复活植物是经过深入研究以揭示干燥耐受性秘密的独特模型。迄今为止,关于红球菌的分子生物学的知识非常有限。在这里,我们报道了cDNA-AFLP分析在脱水过程中检查Haberlea叶片中基因表达的应用。 33个测序的cDNA片段中有20个转录物似乎参与了能量代谢,转运,细胞壁生物发生,信号转导,或者根据其假定功能可能是转录调节因子。通过sqRT-PCR分析在水分胁迫的不同阶段验证了两个上调(HrhDR8,HrhDR35)和两个下调(HrhDR6,HrhDR25)转录本的表达模式。结果表明,在脱水的早期阶段分别诱导了两个假定上调的琥珀酸脱氢酶和木葡聚糖内切葡糖苷酶/水解酶(XTH)的转录本HrhDR8和HrhDR35,并持续​​处于干燥状态,随后进行了Haberlea的补液。他们可能参与抗旱性进行了讨论。

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