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首页> 外文期刊>Molecular Biotechnology >Identification of Aluminum-Regulated Genes by cDNA-AFLP Analysis of Roots in Two Contrasting Genotypes of Highbush Blueberry (Vaccinium corymbosum L.)
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Identification of Aluminum-Regulated Genes by cDNA-AFLP Analysis of Roots in Two Contrasting Genotypes of Highbush Blueberry (Vaccinium corymbosum L.)

机译:通过cDNA-AFLP分析,鉴定两种不同基因型的高丛蓝莓(Vaccinium corymbosum L.)根系的铝调控基因

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摘要

To investigate the molecular mechanisms of Al3+-stress in blueberry, a cDNA-amplified fragment length polymorphism (cDNA-AFLP) analysis was employed to identify Al-regulated genes in roots of contrasting genotypes of highbush blueberry (Brigitta, Al3+-resistant and Bluegold, Al3+-sensitive). Plants grown in hydroponic culture were treated with 0 and 100 μM Al3+ and collected at different times over 48 h. Seventy transcript-derived fragments (TDFs) were identified as being Al3+ responsive, 31 of which showed significant homology to genes with known or putative functions. Twelve TDFs were homologous to uncharacterized genes and 27 did not have significant matches. The expression pattern of several of the genes with known functions in other species was confirmed by quantitative relative real-time RT-PCR. Twelve genes of known or putative function were related to cellular metabolism, nine associated to stress responses and other transcription and transport facilitation processes. Genes involved in signal transduction, photosynthetic and energy processes were also identified, suggesting that a multitude of processes are implicated in the Al3+-stress response as reported previously for other species. The Al3+-stress response genes identified in this study could be involved in Al3+-resistance in woody plants.
机译:为了研究蓝莓中Al3 +胁迫的分子机制,采用cDNA扩增片段长度多态性(cDNA-AFLP)分析来鉴定高灌木蓝莓(Brigitta,Al3 + < / sup>耐蓝金,对Al3 + 敏感)。用0和100μMAl3 + 处理在水培培养中生长的植物,并在48小时内的不同时间进行收集。鉴定出70个转录本片段(TDFs)对Al3 +具有响应性,其中31个与已知或推定功能的基因具有显着同源性。 12个TDF与未鉴定的基因同源,其中27个没有明显的匹配。通过定量相对实时RT-PCR证实了几种在其他物种中具有已知功能的基因的表达模式。十二个已知功能或推定功能的基因与细胞代谢有关,九个基因与应激反应以及其他转录和运输促进过程有关。还鉴定了与信号转导,光合作用和能量过程有关的基因,这表明与其他物种先前报道的有关Al3 +-应激反应的过程涉及许多过程。本研究确定的Al3 + -胁迫反应基因可能与木本植物的Al3 + 抗性有关。

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