UR1115, PSH, INRA, 84914, Avignon, France.
UR1052, GAFL, INRA, 84143, Montfavet, France.
Plant J. 2018 May;94(4):685-698. doi: 10.1111/tpj.13890. Epub 2018 Apr 17.
The concentrations of sugars in fruit vary with fruit development, environment and genotype. In general, there were weak correlations between the variations in sugar concentrations and the activities of enzymes directly related with the synthesis or degradation of sugars. This finding suggests that the relationships between enzyme activities and metabolites are often non-linear and are difficult to assess. To simulate the concentrations of sucrose, glucose, fructose and sorbitol during the development of peach fruit, a kinetic model of sugar metabolism was developed by taking advantage of recent profiling data. Cell compartmentation (cytosol and vacuole) was described explicitly, and data-driven enzyme activities were used to parameterize equations. The model correctly accounts for both annual and genotypic variations, which were observed in 10 genotypes derived from an interspecific cross. They provided important information on the mechanisms underlying the specification of phenotypic differences. In particular, the model supports the hypothesis that a difference in fructokinase affinity could be responsible for a low fructose-to-glucose ratio phenotype, which was observed in the studied population.
水果中的糖浓度随果实发育、环境和基因型而变化。一般来说,糖浓度的变化与直接参与糖合成或降解的酶的活性之间相关性很弱。这一发现表明,酶活性与代谢物之间的关系通常是非线性的,难以评估。为了模拟桃果实发育过程中蔗糖、葡萄糖、果糖和山梨醇的浓度,利用最近的分析数据,建立了一个糖代谢的动力学模型。该模型明确描述了细胞区室(细胞质和液泡),并使用数据驱动的酶活性对方程进行参数化。该模型正确地解释了 10 个源自种间杂交的基因型的年度和基因型变异,这些变异提供了关于表型差异背后机制的重要信息。特别是,该模型支持了这样一种假设,即果糖激酶亲和力的差异可能导致在研究人群中观察到的低果糖与葡萄糖比值表型。