Gene coexpression network analysis of galactomannan biosynthesis and endosperm maturation in species of the genus Coffea

胚乳 半乳甘露聚糖 生物 基因 阿拉伯半乳聚糖 棉子糖 生物化学 转录组 调节基因 贮藏蛋白 遗传学 生物合成 基因表达 植物 转录因子 细胞生物学 基因表达调控 截形苜蓿 细胞壁
作者
Stéphane Dussert,Anna K Stavrinides,Julien Serret,Virginie Vaissayre,Marie‐Christine Combes,Fabienne Morcillo,Eveline Lefort,Stéphanie Rialle,Hervé Etienne,Philippe Lashermes,Thierry Joët
出处
期刊:Plant Physiology and Biochemistry [Elsevier BV]
卷期号:229 (Pt D): 110771-110771 被引量:2
标识
DOI:10.1016/j.plaphy.2025.110771
摘要

In a few important plant families and genera, including Arecaceae, Fabaceae and the genus Coffea , the main seed storage polysaccharide is not starch but cell wall galactomannans. Such seeds are albuminous with a persistent copious living endosperm that accumulates galactomannans. However, our understanding of the regulation of endosperm maturation, cell wall formation and galactomannan biosynthesis in albuminous seeds remains very limited. To gain insights into these processes, a large RNA-seq dataset was produced (14 coffee species × 5 endosperm developmental stages) and scrutinized using gene coexpression network analysis. The network revealed tight transcriptional coordination of the core galactomannan biosynthetic machinery with nucleotide sugar synthesis and transport, arabinogalactan protein and cellulose synthesis, and regulation of the trans-Golgi network. The orchestration of galactomannan and oil accumulation during endosperm maturation appeared to be exerted by the transcription factors FUS3, WRINKLED1, SHINE2 and DREB2D. The latter was the only coexpression partner of galactomannan biosynthetic genes. Numerous key genes of galactomannan accumulation were significantly upregulated in coffee somatic embryos overexpressing DREB2D , which showed increased production of UDP-galactose and diversion towards raffinose family oligosaccharides. Further, most genes of the galactomannan coexpression module were identified as DREB2D target genes by DAP-seq analysis. • Coffee seeds accumulate large amounts of galactomannans in the endosperm cell walls • The transcriptional orchestration of storage reserve accumulation in albuminous seeds is poorly known • Gene coexpression network analysis reveals the set of transcription factors governing coffee endosperm maturation • DREB2D is identified as a major regulator of cell wall storage polysccaharide accumulation
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