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对野生葡萄花转录组的深入分析揭示了与性别决定相关的未开发基因组区域。

Deep analysis of wild Vitis flower transcriptome reveals unexplored genome regions associated with sex specification.

作者信息

Ramos Miguel Jesus Nunes, Coito João Lucas, Fino Joana, Cunha Jorge, Silva Helena, de Almeida Patrícia Gomes, Costa Maria Manuela Ribeiro, Amâncio Sara, Paulo Octávio S, Rocheta Margarida

机构信息

Universidade de Lisboa, Instituto Superior de Agronomia, LEAF, Linking Landscape, Environment, Agriculture and Food, Tapada da Ajuda, 1359-017, Lisboa, Portugal.

Computational Biology and Population Genomics Group, Centre for Ecology, Evolution and Environmental Changes, Faculdade de Ciências, Universidade de Lisboa, 1749-016, Lisboa, Portugal.

出版信息

Plant Mol Biol. 2017 Jan;93(1-2):151-170. doi: 10.1007/s11103-016-0553-9. Epub 2016 Oct 24.

DOI:10.1007/s11103-016-0553-9
PMID:27778293
Abstract

RNA-seq of Vitis during early stages of bud development, in male, female and hermaphrodite flowers, identified new loci outside of annotated gene models, suggesting their involvement in sex establishment. The molecular mechanisms responsible for flower sex specification remain unclear for most plant species. In the case of V. vinifera ssp. vinifera, it is not fully understood what determines hermaphroditism in the domesticated subspecies and male or female flowers in wild dioecious relatives (Vitis vinifera ssp. sylvestris). Here, we describe a de novo assembly of the transcriptome of three flower developmental stages from the three Vitis vinifera flower types. The validation of de novo assembly showed a correlation of 0.825. The main goals of this work were the identification of V. v. sylvestris exclusive transcripts and the characterization of differential gene expression during flower development. RNA from several flower developmental stages was used previously to generate Illumina sequence reads. Through a sequential de novo assembly strategy one comprehensive transcriptome comprising 95,516 non-redundant transcripts was assembled. From this dataset 81,064 transcripts were annotated to V. v. vinifera reference transcriptome and 11,084 were annotated against V. v. vinifera reference genome. Moreover, we found 3368 transcripts that could not be mapped to Vitis reference genome. From all the non-redundant transcripts that were assembled, bioinformatics analysis identified 133 specific of V. v. sylvestris and 516 transcripts differentially expressed among the three flower types. The detection of transcription from areas of the genome not currently annotated suggests active transcription of previously unannotated genomic loci during early stages of bud development.

摘要

对葡萄属植物芽发育早期阶段的雄花、雌花和两性花进行RNA测序,在注释基因模型之外鉴定出了新的基因座,表明它们参与性别确立。对于大多数植物物种而言,负责花性别决定的分子机制仍不清楚。就酿酒葡萄亚种酿酒葡萄而言,目前尚不完全清楚是什么决定了驯化亚种中的两性花以及野生雌雄异株近缘种(野生葡萄亚种)中的雄花或雌花。在这里,我们描述了对三种葡萄属植物花型三个花发育阶段转录组的从头组装。从头组装的验证显示相关性为0.825。这项工作的主要目标是鉴定野生葡萄亚种特有的转录本以及花发育过程中差异基因表达的特征。先前已使用来自几个花发育阶段的RNA来生成Illumina序列读数。通过顺序从头组装策略,组装了一个包含95,516个非冗余转录本的综合转录组。从该数据集中,81,064个转录本被注释到酿酒葡萄参考转录组,11,084个转录本被注释到酿酒葡萄参考基因组。此外,我们发现3368个转录本无法映射到葡萄属参考基因组。在所有组装的非冗余转录本中,生物信息学分析鉴定出133个野生葡萄亚种特有的转录本以及516个在三种花型中差异表达的转录本。在基因组当前未注释区域检测到转录,表明在芽发育早期之前未注释的基因组位点存在活跃转录。

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本文引用的文献

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