首页> 外文期刊>Planta: An International Journal of Plant Biology >Whole transcriptome sequencing reveals genes involved in plastid/chloroplast division and development are regulated by the HP1/DDB1 at an early stage of tomato fruit development
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Whole transcriptome sequencing reveals genes involved in plastid/chloroplast division and development are regulated by the HP1/DDB1 at an early stage of tomato fruit development

机译:全转录组测序揭示在番茄果实发育的早期,参与质体/叶绿体分裂和发育的基因受HP1 / DDB1调控

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摘要

The phenotype of tomato high pigment-1 (hp1) mutant is characterized by overproduction of pigments including chlorophyll and carotenoids during fruit development and ripening. Although the increased plastid compartment size has been thought to largely attribute to the enhanced pigmentation, the molecular aspects of how the HP1/DDB1 gene manipulates plastid biogenesis and development are largely unknown. In the present study, we compared transcriptome profiles of immature fruit pericarp tissue between tomato cv. Ailsa Craig (WT) and its isogenic hp1 mutant. Over 20 million sequence reads, representing > 1.6 Gb sequence data per sample, were generated and assembled into 21,972 and 22,167 gene models in WT and hp1, respectively, accounting for over 60 % official gene models in both samples. Subsequent analyses revealed that 8,322 and 7,989 alternative splicing events, 8833 or 8510 extended 5′-UTRs, 8,263 or 8,939 extended 3′-UTRs, and 1,136 and 1,133 novel transcripts, exist in WT and hp1, respectively. Significant differences in expression level of 880 genes were detected between the WT and hp1, many of which are involved in signaling transduction, transcription regulation and biotic and abiotic stresses response. Distinctly, RNA-seq datasets, quantitative RT-PCR analyses demonstrate that, in hp1 mutant pericarp tissue at early developmental stage, an apparent expression alteration was found in several regulators directly involved in plastid division and development. These results provide a useful reference for a more accurate and more detailed characterization of the molecular process in the development and pigmentation of tomato fruits.
机译:番茄高色素-1(hp1)突变体的表型特征在于在果实发育和成熟期间色素的过度生产,包括叶绿素和类胡萝卜素。尽管增加的质体区室大小被认为主要归因于色素沉着的增加,但HP1 / DDB1基因如何操纵质体生物发生和发展的分子方面仍然未知。在本研究中,我们比较了番茄简历之间未成熟果实果皮组织的转录组概况。艾尔莎·克雷格(WT)及其同基因hp1突变体。产生了超过2000万个序列读数,代表每个样本> 1.6 Gb序列数据,并分别组装成WT和hp1的21972和22167基因模型,占两个样本中60%以上的官方基因模型。随后的分析表明,WT和hp1中分别存在8322和7989个可变剪接事件,8833或8510延伸的5'-UTR,8263或8939延伸的3'-UTR,以及1136和1133个新的转录本。 WT和hp1之间检测到880个基因的表达水平存在显着差异,其中许多与信号转导,转录调控以及生物和非生物胁迫反应有关。显然,RNA-seq数据集,定量RT-PCR分析表明,在发育早期的hp1突变果皮组织中,在直接参与质体分裂和发育的几种调节剂中发现了明显的表达改变。这些结果为更准确,更详细地表征番茄果实发育和色素沉着中的分子过程提供了有用的参考。

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