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Genome-wide identification and expression analyses of genes involved in raffinose accumulation in sesame

机译:芝麻中棉子糖积累相关基因的全基因组鉴定和表达分析

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Sesame (Sesamum indicum L.) is an important oilseed crop. However, multiple abiotic stresses severely affect sesame growth and production. Raffinose family oligosaccharides (RFOs), such as raffinose and stachyose, play an important role in desiccation tolerance of plants and developing seeds. In the present study, three types of key enzymes, galactinol synthase (GolS), raffinose synthase (RafS) and stachyose synthase (StaS), responsible for the biosynthesis of RFOs were identified at the genome-wide scale in sesame. A total of 7 SiGolS and 15 SiRS genes were identified in the sesame genome. Transcriptome analyses showed that SiGolS and SiRS genes exhibited distinct expression profiles in different tissues and seed developmental stages. Comparative expression analyses under various abiotic stresses indicated that most of SiGolS and SiRS genes were significantly regulated by drought, osmotic, salt, and waterlogging stresses, but slightly affected by cold stress. The up-regulation of several SiGolS and SiRS genes by multiple abiotic stresses suggested their active implication in sesame abiotic stress responses. Taken together, these results shed light on the RFOs-mediated abiotic stress resistance in sesame and provide a useful framework for improving abiotic stress resistance of sesame through genetic engineering.
机译:芝麻(Sesamum indicum L.)是重要的油料作物。但是,多种非生物胁迫会严重影响芝麻的生长和产量。棉子糖家族的寡糖(RFO),例如棉子糖和水苏糖,在植物的脱水耐受性和种子发育中起着重要的作用。在本研究中,在芝麻全基因组范围内,确定了三种类型的关键酶,半乳糖醇合酶(GolS),棉子糖合酶(RafS)和水苏糖合酶(StaS),它们负责RFO的生物合成。芝麻基因组中总共鉴定出7个SiGolS和15个SiRS基因。转录组分析表明,SiGolS和SiRS基因在不同组织和种子发育阶段表现出不同的表达特征。在各种非生物胁迫下的比较表达分析表明,大部分SiGolS和SiRS基因受干旱,渗透,盐和涝渍胁迫的显着调控,但受寒冷胁迫的影响较小。多种非生物胁迫对几种SiGolS和SiRS基因的上调表明它们在芝麻非生物胁迫反应中具有积极意义。综上,这些结果揭示了RFO介导的芝麻非生物胁迫抗性,并为通过基因工程改善芝麻非生物胁迫抗性提供了有用的框架。

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