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Comparative Analysis of Fruit Transcriptome in Tomato (Solanum lycopersicum) Genotypes with Contrasting Lycopene Contents

机译:番茄番茄红素含量不同的番茄(Solanum lycopersicum)基因型果实转录组的比较分析

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摘要

Carotenoid metabolism is regulated by several genes encoding carotenoid biosynthetic pathway enzymes. In the present study, a fruit transcriptome in tomato (Solanum lycopersicum) was compared between high lycopene accumulating genotype EC-521086 and low lycopene accumulating genotype VRT-32-1 at three different stages (green, breaker and red) of fruit ripening. This analysis led to the identification of 2,558 differentially expressed genes at three stages of fruit ripening. Among these genes, 123 were carotenoid-correlated genes. Quantitative RT-PCR analysis revealed high expression of genes encoding enzymes involved in lycopene biosynthesis like IPP isomerase, phytoene synthase, phytoene desaturase, z-carotene desaturase; and comparatively lower expression of genes encoding enzymes involved in lycopene catabolism like lycopene cyclase, carotenoid e-ring hydroxylase, zeaxanthin epoxidase, violaxanthin de-epoxidase and neoxanthin synthase in EC-521086, thereby possibly explaining the high lycopene content in EC-521086 as compared with the low lycopene genotype VRT-32-1. Further, the EC-521086 genotype exhibited high expression of the TOMATO AGAMOUS-LIKE 1 (TAGL1) MADS box gene-a positive regulator of lycopene accumulation-at breaker stage, and low expression of the ethylene receptor LeETR4 gene-a negative regulator of trans-lycopene and beta-carotene accumulation, at the red stage of fruit ripening. Our results clearly demonstrate the role of specific genes in accumulation of high lycopene in the EC-521086 tomato genotype during the fruit ripening processes.
机译:类胡萝卜素的代谢受几种编码类胡萝卜素生物合成途径酶的基因的调节。在本研究中,比较了番茄成熟期三个不同阶段(绿色,破碎和红色)的番茄红素累积基因组EC-521086和番茄红素低累积基因型VRT-32-1之间的转录组。该分析导致在果实成熟的三个阶段鉴定出2558个差异表达基因。在这些基因中,有123个是类胡萝卜素相关基因。定量RT-PCR分析表明,编码参与番茄红素生物合成的酶的基因高表达,如IPP异构酶,八氢番茄红素合酶,八氢番茄红素脱氢酶,z-胡萝卜素脱氢酶。并且在EC-521086中编码与番茄红素分解代谢有关的酶(如番茄红素环化酶,类胡萝卜素e环羟化酶,玉米黄质环氧酶,紫黄质脱环氧酶和新黄质合酶)的基因表达相对较低,从而可能解释了EC-521086中番茄红素含量较高具有低番茄红素基因型VRT-32-1。此外,EC-521086基因型在破碎期表现出高表达的TOMATO AGAMOUS-LIKE 1(TAGL1)MADS box基因-番茄红素积累的正调控子,而乙烯受体LeETR4基因的低表达-反式负调控子-番茄红素和β-胡萝卜素的积累,在果实成熟的红色阶段。我们的结果清楚地证明了特定基因在果实成熟过程中EC-521086番茄基因型中高番茄红素积累中的作用。

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