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柑橘中的基因表达分析揭示了赤霉素在光合作用和胁迫方面的作用。

Gene expression analysis in citrus reveals the role of gibberellins on photosynthesis and stress.

作者信息

Huerta Laura, Forment Javier, Gadea José, Fagoaga Carmen, Peña Leandro, Pérez-Amador Miguel A, García-Martínez José Luis

机构信息

Instituto de Biología Molecular y Celular de Plantas (IBMCP), Universidad Politécnica de Valencia-CSIC, Valencia, Spain.

出版信息

Plant Cell Environ. 2008 Nov;31(11):1620-33. doi: 10.1111/j.1365-3040.2008.01870.x. Epub 2008 Aug 22.

Abstract

The effect of gibberellins (GA) on internode transcriptome was investigated in transgenic Carrizo citrange (Citrus sinensis x Poncirus trifoliata) plants overexpressing endogenous CcGA20ox1 (encoding a GA biosynthetic gene), and in non-transformed explants treated with GA(3), using a citrus cDNA microarray. Substantial modulation of gene expression was found in sense CcGA20ox plants. Extensive up-regulation of genes involved in photosynthesis and carbon utilization, and down-regulation of those involved in protein synthesis and ribosome biogenesis were shown for the first time in plants with higher GA content. Importantly, increase of net photosynthesis in attached leaves was also demonstrated. Expression of other genes belonging to functional groups not reported previously to be regulated by GA (mainly abiotic and biotic stresses, and cuticle biosynthesis), and genes involved in cell division and cell wall architecture were also differentially expressed. Culture of citrus explants for 24 h in GA(3) solution produced much lower changes in the transcriptome compared with CcGA20ox plants (1.6% versus 16%, respectively, of total genes in the microarray), suggesting that most of the changes observed in CcGA20ox plants were a consequence of a long-standing GA effect. Interestingly, genes related to abiotic and biotic stresses were similarly modulated in transgenics and GA(3)-treated explants.

摘要

利用柑橘cDNA微阵列,研究了赤霉素(GA)对过表达内源性CcGA20ox1(编码一种GA生物合成基因)的转基因卡里佐枳橙(Citrus sinensis x Poncirus trifoliata)植株以及用GA(3)处理的未转化外植体节间转录组的影响。在正义CcGA20ox植株中发现了基因表达的显著调控。首次在GA含量较高的植株中发现,参与光合作用和碳利用的基因大量上调,而参与蛋白质合成和核糖体生物发生的基因下调。重要的是,还证实了附着叶片的净光合作用增加。属于以前未报道受GA调控的功能组的其他基因(主要是非生物和生物胁迫以及角质层生物合成)以及参与细胞分裂和细胞壁结构的基因也有差异表达。与CcGA20ox植株相比,柑橘外植体在GA(3)溶液中培养24小时后,转录组的变化要小得多(分别占微阵列中总基因的1.6%和16%),这表明在CcGA20ox植株中观察到的大多数变化是长期GA效应的结果。有趣的是,转基因植株和GA(3)处理的外植体中与非生物和生物胁迫相关的基因受到类似的调控。

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