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腰果果实(Anacardium occidentale)基因型的转录组分析揭示了与假果发育过程中硬度和颜色相关的特定基因。

Transcriptome profiling of cashew apples (Anacardium occidentale) genotypes reveals specific genes linked to firmness and color during pseudofruit development.

机构信息

Departamento de Bioquímica e Biologia Molecular, Universidade Federal do Ceará, Campus do Pici, Fortaleza, CE, CEP 60440-554, Brazil.

Departamento de Análises Clínicas e Toxicológicas, Faculdade de Ciências Farmacêuticas, Universidade de São Paulo, São Paulo, SP, CEP 05508-900, Brazil.

出版信息

Plant Mol Biol. 2022 May;109(1-2):83-100. doi: 10.1007/s11103-022-01257-w. Epub 2022 Mar 25.

Abstract

We found 34 and 71 key genes potentially involved in flavonoid biosynthesis and cell wall disassembly, respectively, which could be associated with specific peel coloration and softening of each genotype. Cashew apple (Anacardium occidentale) has a great economic importance worldwide due to its high nutritional value, peculiar flavor and aroma. During ripening, the peduncle develops different peel color and becomes quickly fragile due to its oversoftening, impacting its consumers' acceptance. In view of this, the understanding about its transcriptional dynamics throughout ripening is imperative. In this study, we performed a transcriptome sequencing of two cashew apple genotypes (CCP 76 and BRS 265), presenting different firmness and color peel, in the immature and ripe stages. Comparative transcriptome analysis between immature and ripe cashew apple revealed 4374 and 3266 differentially expressed genes (DEGs) to CCP 76 and BRS 265 genotypes, respectively. These genes included 71 and 34 GDEs involved in the cell wall disassembly and flavonoid biosynthesis, respectively, which could be associated with firmness loss and anthocyanin accumulation during cashew apple development. Then, softer peduncle of CCP 76 could be justified by down-regulated EXP and up-regulation of genes involved in pectin degradation (PG, PL and PAE) and in cell wall biosynthesis. Moreover, genes related to flavonoid biosynthesis (PAL, C4H and CHS) could be associated with early high accumulation of anthocyanin in red-peel peduncle of BRS 265. Finally, expression patterns of the selected genes were tested by real-time quantitative PCR (qRT-PCR), and the qRT-PCR results were consistent with transcriptome data. The information generated in this work will provide insights into transcriptome responses to cashew apple ripening and hence, it will be helpful for cashew breeding programs aimed at developing genotypes with improved quality traits.

摘要

我们分别发现了 34 个和 71 个可能参与类黄酮生物合成和细胞壁解体的关键基因,这些基因可能与每个基因型的特定果皮颜色和软化有关。腰果(Anacardium occidentale)因其高营养价值、独特的风味和香气而在全球范围内具有重要的经济意义。在成熟过程中,由于过度软化,果柄会呈现出不同的果皮颜色,并迅速变得脆弱,从而影响消费者的接受度。鉴于此,了解其在成熟过程中的转录动态至关重要。在这项研究中,我们对两个具有不同硬度和果皮颜色的腰果品种(CCP 76 和 BRS 265)的未成熟和成熟阶段进行了转录组测序。未成熟和成熟的腰果果实之间的比较转录组分析显示,CCP 76 和 BRS 265 基因型分别有 4374 个和 3266 个差异表达基因(DEGs)。这些基因包括 71 个和 34 个与细胞壁解体和类黄酮生物合成有关的 GDEs,这可能与腰果果实发育过程中硬度的丧失和花青素的积累有关。此外,CCP 76 果柄较软可能是由于 EXP 下调和与果胶降解(PG、PL 和 PAE)和细胞壁生物合成相关的基因上调所致。此外,与类黄酮生物合成相关的基因(PAL、C4H 和 CHS)可能与 BRS 265 红色果皮果柄中花青素的早期高积累有关。最后,通过实时定量 PCR(qRT-PCR)检测了所选基因的表达模式,qRT-PCR 结果与转录组数据一致。这项工作所产生的信息将深入了解腰果果实成熟过程中的转录组反应,从而有助于开发具有改良品质特性的腰果品种的选育计划。

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