Gangl Roman, Tenhaken Raimund
Department of Cell Biology, Division of Plant Physiology, University of Salzburg Salzburg, Austria.
Front Plant Sci. 2016 Jul 26;7:1115. doi: 10.3389/fpls.2016.01115. eCollection 2016.
Raffinose synthase 5 (AtRS5, At5g40390) was characterized from Arabidopsis as a recombinant enzyme. It has a far higher affinity for the substrates galactinol and sucrose than any other raffinose synthase previously reported. In addition raffinose synthase 5 is also working as a galactosylhydrolase, degrading galactinol, and raffinose under certain conditions. Together with raffinose synthase 4, which is predominantly a stachyose synthase, both enzymes contribute to the raffinose family oligosaccharide (RFO) accumulation in seeds. A double knockout in raffinose synthase 4 and raffinose synthase 5 (ΔAtRS4,5) was generated, which is devoid of RFOs in seeds. Unstressed leaves of 4 week old ΔAtRS4,5 plants showed drastically 23.8-fold increased concentrations of galactinol. Unexpectedly, raffinose appeared again in drought stressed ΔAtRS4,5 plants, but not under other abiotic stress conditions. Drought stress leads to novel transcripts of raffinose synthase 6 suggesting that this isoform is a further stress inducible raffinose synthase in Arabidopsis. ΔAtRS4,5 seeds showed a 5 days delayed germination phenotype in darkness and an elevated expression of the transcription factor phytochrome interacting factor 1 (AtPIF1) target gene AtPIF6, being a repressor of germination. This prolonged dormancy is not seen during germination in the light. Exogenous galactose partially promotes germination of ΔAtRS4,5 seeds in the dark suggesting that RFOs act as a galactose store and repress AtPIF6 transcripts.
棉子糖合酶5(AtRS5,At5g40390)作为一种重组酶从拟南芥中得到鉴定。它对底物肌醇半乳糖苷和蔗糖的亲和力远高于此前报道的任何其他棉子糖合酶。此外,棉子糖合酶5在某些条件下还作为一种半乳糖基水解酶发挥作用,降解肌醇半乳糖苷和棉子糖。与主要作为水苏糖合酶的棉子糖合酶4一起,这两种酶都有助于种子中棉子糖家族寡糖(RFO)的积累。构建了棉子糖合酶4和棉子糖合酶5的双敲除植株(ΔAtRS4,5),其种子中不含RFO。4周龄ΔAtRS4,5植株未受胁迫的叶片中肌醇半乳糖苷浓度急剧增加了23.8倍。出乎意料的是,干旱胁迫下的ΔAtRS4,5植株中再次出现了棉子糖,但在其他非生物胁迫条件下则没有。干旱胁迫导致棉子糖合酶6产生新的转录本,这表明该同工型是拟南芥中另一种受胁迫诱导的棉子糖合酶。ΔAtRS4,5种子在黑暗中表现出发芽延迟5天的表型,并且转录因子光敏色素相互作用因子1(AtPIF1)的靶基因AtPIF6的表达升高,AtPIF6是发芽的抑制因子。在光照下发芽时未观察到这种延长的休眠现象。外源半乳糖部分促进了ΔAtRS4,5种子在黑暗中的发芽,这表明RFO作为半乳糖储存库并抑制AtPIF6转录本。