Dumschott Kathryn, Richter Andreas, Loescher Wayne, Merchant Andrew
Faculty of Agriculture and Environment, The University of Sydney, Sydney, NSW, 2006, Australia.
Department of Microbiology and Ecosystem Science, University of Vienna, Vienna, Austria.
Phytochemistry. 2017 Dec;144:243-252. doi: 10.1016/j.phytochem.2017.09.019. Epub 2017 Oct 3.
The occurrence of sugar alcohols is ubiquitous among plants. Physiochemical properties of sugar alcohols suggest numerous primary and secondary functions in plant tissues and are often well documented. In addition to functions arising from physiochemical properties, the synthesis of sugar alcohols may have significant influence over photosynthetic, respiratory, and developmental processes owing to their function as a large sink for photosynthates. Sink strength is demonstrated by the high concentrations of sugar alcohols found in plant tissues and their ability to be readily transported. The plant scale distribution and physiochemical function of these compounds renders them strong candidates for functioning as stress metabolites. Despite this, several aspects of sugar alcohol biosynthesis and function are poorly characterised namely: 1) the quantitative characterisation of carbon flux into the sugar alcohol pool; 2) the molecular control governing sugar alcohol biosynthesis on a quantitative basis; 3) the role of sugar alcohols in plant growth and ecology; and 4) consequences of sugar alcohol synthesis for yield production and yield quality. We highlight the need to adopt new approaches to investigating sugar alcohol biosynthesis using modern technologies in gene expression, metabolic flux analysis and agronomy. Combined, these approaches will elucidate the impact of sugar alcohol biosynthesis on growth, stress tolerance, yield and yield quality.
糖醇在植物中普遍存在。糖醇的物理化学性质表明其在植物组织中具有多种主要和次要功能,并且这些功能通常有充分的文献记载。除了由物理化学性质产生的功能外,糖醇的合成可能因其作为光合产物的巨大库的功能而对光合作用、呼吸作用和发育过程产生重大影响。植物组织中糖醇的高浓度及其易于运输的能力证明了库强度。这些化合物在植物尺度上的分布和物理化学功能使其成为作为胁迫代谢物发挥作用的有力候选者。尽管如此,糖醇生物合成和功能的几个方面仍未得到充分表征,即:1)进入糖醇库的碳通量的定量表征;2)定量控制糖醇生物合成的分子机制;3)糖醇在植物生长和生态学中的作用;4)糖醇合成对产量和品质的影响。我们强调需要采用新方法,利用基因表达、代谢通量分析和农学等现代技术来研究糖醇生物合成。综合这些方法将阐明糖醇生物合成对生长、胁迫耐受性、产量和品质的影响。