Instituto Agronômico do Paraná (IAPAR), Laboratório de Biotecnologia Vegetal, Londrina PR, Brazil.
Plant Physiol Biochem. 2011 Apr;49(4):441-8. doi: 10.1016/j.plaphy.2011.01.023. Epub 2011 Feb 1.
Galactinol synthase (EC 2.4.1.123; GolS) catalyzes the first step in the synthesis of raffinose family oligosaccharides (RFOs). Their accumulation in response to abiotic stresses implies a role for RFOs in stress adaptation. In this study, the expression patterns of three isoforms of galactinol synthase (CaGolS1-2-3) from Coffea arabica were evaluated in response to water deficit, salinity and heat stress. All CaGolS isoforms were highly expressed in leaves while little to no expression were detected in flower buds, flowers, plagiotropic shoots, roots, endosperm and pericarp of mature fruits. Transcriptional analysis indicated that the genes were differentially regulated under water deficit, high salt and heat stress. CaGolS1 isoform is constitutively expressed in plants under normal growth conditions and was the most responsive during all stress treatments. CaGolS2 is unique among the three isoforms in that it was detected only under severe water deficit and salt stresses. CaGolS3 was primarily expressed under moderate and severe drought. This isoform was induced only at the third day of heat and under high salt stress. The increase in GolS transcription was not reflected into the amount of galactinol in coffee leaves, as specific glycosyltransferases most likely used galactinol to transfer galactose units to higher homologous oligosaccharides, as suggested by the increase of raffinose and stachyose during the stresses.
半乳糖苷酶合酶(EC 2.4.1.123;GolS)催化棉子糖家族低聚糖(RFOs)合成的第一步。它们对非生物胁迫的积累意味着 RFOs 在适应胁迫中起作用。在这项研究中,评估了来自咖啡(Coffea arabica)的三种半乳糖苷酶合酶同工型(CaGolS1-2-3)对水分亏缺、盐度和热胁迫的表达模式。所有 CaGolS 同工型在叶片中高度表达,而在花蕾、花朵、平卧茎、根、成熟果实的胚乳和果皮中几乎检测不到表达。转录分析表明,这些基因在水分亏缺、高盐和热胁迫下差异表达。CaGolS1 同工型在正常生长条件下在植物中组成型表达,并且在所有胁迫处理中最具反应性。CaGolS2 在三种同工型中是独特的,因为它仅在严重水分亏缺和盐胁迫下检测到。CaGolS3 主要在中度和重度干旱下表达。该同工型仅在热胁迫的第三天和高盐胁迫下被诱导。GolS 转录的增加并没有反映在咖啡叶片中的半乳糖醇含量上,因为特定的糖基转移酶很可能将半乳糖醇用于将半乳糖单位转移到同源性更高的低聚糖上,正如在胁迫期间棉子糖和水苏糖的增加所表明的那样。