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Seasonal variation in non-structural carbohydrates sucrolytic activity and secondary metabolites in deciduous and perennial Diospyros species sampled in Western Mexico

机译:西墨西哥州落叶和多年生柿属植物中非结构性碳水化合物硫糖分解活性和次生代谢产物的季节性变化

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摘要

This study was performed to test the working hypothesis that the primary determinants influencing seasonal driven modifications in carbon mobilization and other key biochemical parameters in leaves of poorly known Diospyros digyna (Ddg; semi-domesticated; perennial) and D. rekoi (Dre; undomesticated; deciduous) trees are determined by environmental growing conditions, agronomic management and physiological plasticity. Thus, biochemical changes in leaves of both trees were recorded seasonally during two successive fruiting years. Trees were randomly sampled in Western Mexico habitats with differing soil quality, climatic conditions, luminosity, and cultivation practices. Leaves of Ddg had consistently higher total chlorophyll contents (CT) that, unexpectedly, peaked in the winter of 2015. In Dre, the highest leaf CT values recorded in the summer of 2015 inversely correlated with low average luminosity and high Chl a/ Chlb ratios. The seasonal CT variations in Dre were congruent with varying luminosity, whereas those in Ddg were probably affected by other factors, such as fluctuating leaf protein contents and the funneling of light energy to foliar non-structural carbohydrates (NSCs) accumulation, which were consistently higher than those detected in Dre leaves. Seasonal foliar NSC fluctuations in both species were in agreement with the carbon (C) demands of flowering, fruiting and/ or leaf regrowth. Seasonal changes in foliar hexose to sucrose (Hex/ Suc) ratios coincided with cell wall invertase activity in both species. In Dre, high Hex/ Suc ratios in spring leaves possibly allowed an accumulation of phenolic acids, not observed in Ddg. The above results supported the hypothesis proposed by showing that leaf responses to changing environmental conditions differ in perennial and deciduous Diospyros trees, including a dynamic adjustment of NSCs to supply the C demands imposed by reproduction, leaf regrowth and, possibly, stress.
机译:进行这项研究是为了检验工作假设,即主要的决定因素会影响众所周知的Diospyros digyna(Ddg;半驯化;多年生)和D.rekoi(Dre;未驯化;未驯化; D。落叶乔木是由环境生长条件,农艺管理和生理可塑性决定的。因此,在连续两个结果年中,季节性记录了两棵树的叶子的生化变化。在西墨西哥生境中随机取样树木,其土壤质量,气候条件,光度和耕作方法均不同。 Ddg的叶片始终具有较高的总叶绿素含量(CT),出乎意料的是,在2015年冬季达到峰值。在Dre,2015年夏季记录的最高叶片CT值与低平均发光度和高Chla / Chlb比值成反比。 。 Dre的季节性CT变化与亮度变化一致,而Ddg的季节性CT变化可能受到其他因素的影响,例如叶蛋白含量的波动以及光能向叶面非结构性碳水化合物(NSC)积累的集中,这些因素一直较高比Dre叶子中检测到的要高。这两个物种的季节性叶面NSC波动与开花,结果和/或叶片再生的碳(C)需求一致。在两个物种中,叶状己糖与蔗糖(Hex / Suc)之比的季节性变化与细胞壁转化酶活性相吻合。在Dre中,春叶中较高的Hex / Suc比可能允许酚酸积累,而Ddg中未观察到。上述结果通过显示多年生和落叶柿属植物叶片对变化的环境条件的响应不同而支持了这一假设,其中包括动态调整NSC来满足繁殖,叶片再生和可能的胁迫对碳的需求。

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