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野生型和 ABA 缺陷型番茄根系共生特征的变化伴随着特定的转录组改变。

Variations in the mycorrhization characteristics in roots of wild-type and ABA-deficient tomato are accompanied by specific transcriptomic alterations.

机构信息

Departmento de Microbiología del sueloy sistemas simbióticos, Estación Experimental del Zaidín, Spain.

出版信息

Mol Plant Microbe Interact. 2010 May;23(5):651-64. doi: 10.1094/MPMI-23-5-0651.

Abstract

Abscissic acid (ABA) determines mycorrhiza functionality and arbuscule development. In this study, we performed transcriptome analysis in response to different mycorrhization status according to the ABA content in the root to identify genes that may play a role in arbuscule functionality. Affymetrix Tomato GeneChip (approximately 10,000 probes) allowed us to detect and compare the transcriptional root profiling of tomato (Solanum lycopersicum) wild-type and ABA-deficient sitiens plants colonized by Glomus intraradices. A number of identified genes in tomato belong to a category of genes already described as "mycorrhizal core-set" in other host plants. The impairment in arbuscular mycorrhiza (AM) formation in ABA-deficient mutants was associated with upregulation of genes related to defense and cell wall modification, whereas functional mycorrhization in wild-type plants was associated with activation of genes related to isoprenoid metabolism. The oxylipin pathway was activated in tomato mycorrhizal roots at late stages of interaction, and was related to the control of fungal spread in roots, not with the establishment of the symbiosis. Induction of selected genes, representing a range of biological functions and representative of the three sets of genes specifically upregulated in the different plant phenotype, was confirmed by quantitative reverse-transcription polymerase chain reaction, and their response to phythohormone treatment was tested, showing that ethylene and jasmonic acid are key regulators of gene expression during AM development. Comparative analysis of mycorrhiza upregulated functional categories revealed significant changes in gene expression associated with the different mycorrhization status according to the ABA content in the roots.

摘要

脱落酸 (ABA) 决定了菌根的功能和丛枝的发育。在这项研究中,我们根据根系中的 ABA 含量进行了转录组分析,以确定可能在丛枝功能中发挥作用的基因,从而研究不同的菌根化状态。Affymetrix 番茄基因芯片(约 10000 个探针)允许我们检测和比较番茄(Solanum lycopersicum)野生型和 ABA 缺陷型 sitiens 植物在被 Glomus intraradices 定殖时的根系转录组。在番茄中鉴定的许多基因属于一类在其他宿主植物中被描述为“菌根核心集合”的基因。ABA 缺陷突变体中丛枝菌根(AM)形成的损伤与防御和细胞壁修饰相关基因的上调有关,而野生型植物中功能性菌根化与异戊烯代谢相关基因的激活有关。在番茄菌根根的晚期相互作用中,氧化脂素途径被激活,与控制真菌在根中的扩散有关,而与共生的建立无关。通过定量反转录聚合酶链反应证实了选择基因的诱导,这些基因代表了一系列生物学功能,并且代表了在不同植物表型中特异性上调的三组基因,它们对植物激素处理的反应也进行了测试,表明乙烯和茉莉酸是 AM 发育过程中基因表达的关键调节剂。对菌根上调功能类别的比较分析揭示了与根系中 ABA 含量相关的不同菌根化状态下基因表达的显著变化。

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