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Molecular genetics of fructan metabolism in perennial ryegrass

机译:多年生黑麦草中果聚糖代谢的分子遗传学

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Fructans are the main storage carbohydrates of temperate grasses, sustaining regrowth immediately after defoliation, as well as contributing to the nutritive value of feed. Fructan metabolism is based on the substrate sucrose and involves fructosyltransferases (FTs) for biosynthesis and fructan exohydrolases (FEHs) for degradation. Sucrose is also utilized by invertases (INVs), which hydrolyse it into its constituent monosaccharides for use in metabolism. The isolation, molecular characterization, functional analysis, and phylogenetic relationships of genes encoding FTs, FEHs, and INVs from temperate grasses are reviewed, with an emphasis on perennial ryegrass ( Lolium perenne L.). The roles these enzymes play in fructan accumulation and remobilization, and future biotechnological applications in molecular plant breeding are discussed.
机译:果糖是温带草的主要储存碳水化合物,在落叶后立即维持再生长,并有助于提高饲料的营养价值。果聚糖的代谢是基于底物蔗糖,并且涉及果糖基转移酶(FTs)进行生物合成和果糖外水解酶(FEHs)进行降解。蔗糖还被蔗糖转化酶(INV)所利用,蔗糖将其水解成其组成的单糖,用于代谢。综述了温带草中编码FTs,FEHs和INV的基因的分离,分子特征,功能分析和系统发育关系,重点研究了多年生黑麦草(黑麦草)。这些酶在果聚糖的积累和迁移中发挥的作用,并讨论了在分子植物育种中未来的生物技术应用。

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