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甜橙[Citrus sinensis (L.) Osbeck]果实发育过程中一个自发突变体的转录组分析

Transcriptome analysis of a spontaneous mutant in sweet orange [Citrus sinensis (L.) Osbeck] during fruit development.

作者信息

Liu Qing, Zhu Andan, Chai Lijun, Zhou Wenjing, Yu Keqin, Ding Jian, Xu Juan, Deng Xiuxin

机构信息

National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

J Exp Bot. 2009;60(3):801-13. doi: 10.1093/jxb/ern329. Epub 2009 Feb 13.

Abstract

Bud mutations often arise in citrus. The selection of mutants is one of the most important breeding channels in citrus. However, the molecular basis of bud mutation has rarely been studied. To identify differentially expressed genes in a spontaneous sweet orange [C. sinensis (L.) Osbeck] bud mutation which causes lycopene accumulation, low citric acid, and high sucrose in fruit, suppression subtractive hybridization and microarray analysis were performed to decipher this bud mutation during fruit development. After sequencing of the differentially expressed clones, a total of 267 non-redundant transcripts were obtained and 182 (68.2%) of them shared homology (E-value < or = 1x10(-10)) with known gene products. Few genes were constitutively up- or down-regulated (fold change > or = 2) in the bud mutation during fruit development. Self-organizing tree algorithm analysis results showed that 95.1% of the differentially expressed genes were extensively coordinated with the initiation of lycopene accumulation. Metabolic process, cellular process, establishment of localization, response to stimulus, and biological regulation-related transcripts were among the most regulated genes. These genes were involved in many biological processes such as organic acid metabolism, lipid metabolism, transport, and pyruvate metabolism, etc. Moreover, 13 genes which were differentially regulated at 170 d after flowering shared homology with previously described signal transduction or transcription factors. The information generated in this study provides new clues to aid in the understanding of bud mutation in citrus.

摘要

柑橘中经常会出现芽变。突变体的选择是柑橘最重要的育种途径之一。然而,芽变的分子基础鲜有研究。为了鉴定一个导致果实中番茄红素积累、柠檬酸含量低和蔗糖含量高的自发甜橙[C. sinensis (L.) Osbeck]芽变中的差异表达基因,在果实发育过程中,采用抑制性消减杂交和微阵列分析来解析这种芽变。对差异表达克隆进行测序后,共获得267个非冗余转录本,其中182个(68.2%)与已知基因产物具有同源性(E值≤1×10⁻¹⁰)。在果实发育过程中,芽变中很少有基因组成型上调或下调(倍数变化≥2)。自组织树算法分析结果表明,95.1%的差异表达基因与番茄红素积累的起始广泛协调。代谢过程、细胞过程、定位的建立、对刺激的反应以及与生物调节相关的转录本是调控程度最高的基因之一。这些基因参与了许多生物过程,如有机酸代谢、脂质代谢、运输和丙酮酸代谢等。此外,在开花后170天差异调控的13个基因与先前描述的信号转导或转录因子具有同源性。本研究产生的信息为帮助理解柑橘芽变提供了新线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b516/2652045/9b92bfddea3a/jexbotern329f01_lw.jpg

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