Evolutionary diversification of galactinol synthases in Rosaceae: adaptive roles of galactinol and raffinose during apple bud dormancy

棉子糖 生物 休眠 拟南芥 苹果属植物 植物 基因家族 基因 遗传学 基因组 生物化学 发芽 突变体 蔗糖
作者
Vítor da Silveira Falavigna,Diogo Denardi Porto,Yohanna Evelyn Miotto,Henrique Pessoa dos Santos,Paulo Ricardo Dias de Oliveira,Márcia Margis‐Pinheiro,Giancarlo Pasquali,Luís Fernando Revers
出处
期刊:Journal of Experimental Botany [Oxford University Press]
卷期号:69 (5): 1247-1259 被引量:42
标识
DOI:10.1093/jxb/erx451
摘要

Galactinol synthase (GolS) is a key enzyme in the biosynthetic pathway of raffinose family oligosaccharides (RFOs), which play roles in carbon storage, signal transduction, and osmoprotection. The present work assessed the evolutionary history of GolS genes across the Rosaceae using several bioinformatic tools. Apple (Malus × domestica) GolS genes were transcriptionally characterized during bud dormancy, in parallel with galactinol and raffinose measurements. Additionally, MdGolS2, a candidate to regulate seasonal galactinol and RFO content during apple bud dormancy, was functionally characterized in Arabidopsis. Evolutionary analyses revealed that whole genome duplications have driven GolS gene evolution and diversification in Rosaceae speciation. The strong purifying selection identified in duplicated GolS genes suggests that differential gene expression might define gene function better than protein structure. Interestingly, MdGolS2 was differentially expressed during bud dormancy, concomitantly with the highest galactinol and raffinose levels. One of the intrinsic adaptive features of bud dormancy is limited availability of free water; therefore, we generated transgenic Arabidopsis plants expressing MdGolS2. They showed higher galactinol and raffinose contents and increased tolerance to water deficit. Our results suggest that MdGolS2 is the major GolS responsible for RFO accumulation during apple dormancy, and these carbohydrates help to protect dormant buds against limited water supply.

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