Key Laboratory of Horticultural Plant Biology, Ministry of Education, Huazhong Agricultural University, Wuhan, China.
Plant Biotechnol J. 2021 Jul;19(7):1337-1353. doi: 10.1111/pbi.13549. Epub 2021 Feb 16.
Citrus fruit has a unique structure with soft leathery peel and pulp containing vascular bundles and several segments with many juice sacs. The function and morphology of each fruit tissue are different. Therefore, analysis at the organ-wide or mixed-tissue level inevitably obscures many tissue-specific phenomena. High-throughput RNA sequencing was used to profile Citrus sinensis fruit development based on four fruit tissue types and six development stages from young fruits to ripe fruits. Using a coexpression network analysis, modules of coexpressed genes and hub genes of tissue-specific networks were identified. Of particular, importance is the discovery of the regulatory network of phytohormones during citrus fruit development and ripening. A model was proposed to illustrate how ABF2 mediates the ABA signalling involved in sucrose transport, chlorophyll degradation, auxin homoeostasis, carotenoid and ABA biosynthesis, and cell wall metabolism during citrus fruit development. Moreover, we depicted the detailed spatiotemporal expression patterns of the genes involved in sucrose and citric acid metabolism in citrus fruit and identified several key genes that may play crucial roles in sucrose and citric acid accumulation in the juice sac, such as SWEET15 and CsPH8. The high spatial and temporal resolution of our data provides important insights into the molecular networks underlying citrus fruit development and ripening.
柑橘果实具有独特的结构,其果皮柔软革质,果肉中含有维管束和几个富含许多汁液囊的节段。每个果实组织的功能和形态都不同。因此,在器官整体或混合组织水平上的分析不可避免地掩盖了许多组织特异性现象。本研究使用高通量 RNA 测序,基于四种果实组织类型和从幼果到成熟果实的六个发育阶段,对柑橘果实发育进行了分析。通过共表达网络分析,鉴定了组织特异性网络的共表达基因模块和枢纽基因。特别重要的是,发现了在柑橘果实发育和成熟过程中植物激素的调控网络。提出了一个模型来说明 ABF2 如何介导与蔗糖转运、叶绿素降解、生长素稳态、类胡萝卜素和 ABA 生物合成以及细胞壁代谢相关的 ABA 信号,这在柑橘果实发育过程中起作用。此外,我们描绘了柑橘果实中蔗糖和柠檬酸代谢相关基因的详细时空表达模式,并鉴定了几个可能在汁囊中的蔗糖和柠檬酸积累中起关键作用的关键基因,如 SWEET15 和 CsPH8。我们数据的高时空分辨率为柑橘果实发育和成熟的分子网络提供了重要的见解。