Department of Wood Science, The University of British Columbia, Vancouver, BC, Canada.
J Exp Bot. 2012 Mar;63(5):2059-69. doi: 10.1093/jxb/err411. Epub 2011 Dec 22.
The raffinose family of oligosaccharides (RFOs) serve as transport carbohydrates in the phloem, storage compounds in sink tissues, and putative biological agents to combat both abiotic and biotic stress in several plant species. To investigate further the functional roles of this class of compounds in trees, two cDNAs encoding galactinol synthase (GolS, EC 2.4.1.123), which catalyses the first step in the biosynthesis of RFOs, were identified and cloned from hybrid poplar (Populus alba×grandidentata). Phylogenetic analyses of the Populus GolS isoforms with other known GolS proteins suggested a putative role for these enzymes during biotic or abiotic stress in hybrid poplar. The predicted protein sequences of both isoforms (Pa×gGolSI and Pa×gGolSII) showed characteristics of GolS proteins from other species, including a serine phosphorylation site and the ASAAP pentapeptide hydrophobic domain. Kinetic analyses of recombinant Pa×gGolSI and Pa×gGolSII resulted in K(m) values for UPD-galactose of 0.80 and 0.65 mM and V(max) values of 657.5 and 1245 nM min(-1), respectively. Pa×gGolSI inherently possessed a broader pH and temperature range when compared with Pa×gGolSII. Interestingly, spatial and temporal expression analyses revealed that Pa×gGolSII transcript levels varied seasonally, while Pa×gGolSI did not, implying temperature-regulated transcriptional control of this gene in addition to the observed thermosensitivity of the respective enzyme. This evidence suggested that Pa×gGolSI may be involved in basic metabolic activities such as storage, while Pa×gGolSII is probably involved in seasonal mobilization of carbohydrates.
棉子糖家族的低聚糖(RFOs)在韧皮部中作为运输碳水化合物,在汇组织中作为储存化合物,并且在几种植物物种中作为潜在的生物活性剂来对抗非生物和生物胁迫。为了进一步研究该类化合物在树木中的功能作用,从杂种白杨(Populus alba×grandidentata)中鉴定并克隆了两个编码半乳糖醇合酶(GolS,EC 2.4.1.123)的 cDNA,该酶催化 RFO 生物合成的第一步。杂种白杨的 Populus GolS 同工型与其他已知的 GolS 蛋白的系统发育分析表明,这些酶在杂种白杨的生物或非生物胁迫期间可能具有作用。这两种同工型(Pa×gGolSI 和 Pa×gGolSII)的预测蛋白序列均表现出其他物种的 GolS 蛋白的特征,包括丝氨酸磷酸化位点和 ASAAP 五肽疏水区。重组 Pa×gGolSI 和 Pa×gGolSII 的动力学分析导致 UPD-半乳糖的 K(m)值分别为 0.80 和 0.65 mM,V(max)值分别为 657.5 和 1245 nM min(-1)。与 Pa×gGolSII 相比,Pa×gGolSI 固有更宽的 pH 和温度范围。有趣的是,时空表达分析表明,Pa×gGolSII 的转录水平随季节变化,而 Pa×gGolSI 则没有,这表明除了观察到相应酶的热敏性外,该基因还受到温度调节的转录控制。这一证据表明,Pa×gGolSI 可能参与基本代谢活动,如储存,而 Pa×gGolSII 可能参与碳水化合物的季节性动员。