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Compatible and Incompatible Pollen-Styles Interaction in Pyrus communis L. Show Different Transglutaminase Features Polyamine Pattern and Metabolomics Profiles

机译:花梨样式兼容和不兼容的花粉型相互作用显示不同的转谷氨酰胺酶特性多胺模式和代谢组学配置文件。

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摘要

Pollen-stigma interaction is a highly selective process, which leads to compatible or incompatible pollination, in the latter case, affecting quantitative and qualitative aspects of productivity in species of agronomic interest. While the genes and the corresponding protein partners involved in this highly specific pollen-stigma recognition have been studied, providing important insights into pollen-stigma recognition in self-incompatible (SI), many other factors involved in the SI response are not understood yet. This work concerns the study of transglutaminase (TGase), polyamines (PAs) pattern and metabolomic profiles following the pollination of Pyrus communis L. pistils with compatible and SI pollen in order to deepen their possible involvement in the reproduction of plants. Immunolocalization, abundance and activity of TGase as well as the content of free, soluble-conjugated and insoluble-bound PAs have been investigated. 1H NMR-profiling coupled with multivariate data treatment (PCA and PLS-DA) allowed to compare, for the first time, the metabolic patterns of not-pollinated and pollinated styles. Results clearly indicate that during the SI response TGase activity increases, resulting in the accumulation of PAs conjugated to hydroxycinnamic acids and other small molecules. Metabolomic analysis showed a remarkable differences between pollinated and not-pollinated styles, where, except for glucose, all the other metabolites where less concentrated. Moreover, styles pollinated with compatible pollen showed the highest amount of sucrose than SI pollinated ones, which, in turn, contained highest amount of all the other metabolites, including aromatic compounds, such as flavonoids and a cynnamoil derivative.
机译:花粉-柱头相互作用是一个高度选择性的过程,它导致相容的或不相容的授粉,在后一种情况下,会影响农艺学物种的生产力的数量和质量方面。虽然已经研究了涉及这种高度特定的花粉-柱头识别的基因和相应的蛋白质伴侣,从而为自不相容(SI)中的花粉-柱头识别提供了重要的见识,但还不清楚与SI反应有关的许多其他因素。这项工作涉及对Pyrus communis L.雌蕊用兼容的和SI花粉授粉后的转谷氨酰胺酶(TGase),多胺(PAs)模式和代谢组学谱的研究,以加深它们可能参与植物繁殖。已经研究了TGase的免疫定位,丰度和活性以及游离,可溶结合的和不可溶结合的PA的含量。 1 H NMR谱分析和多元数据处理(PCA和PLS-DA)首次允许比较未授粉和授粉型的代谢模式。结果清楚地表明,在SI反应期间,TGase活性增加,导致与羟基肉桂酸和其他小分子缀合的PA积累。代谢组学分析显示,授粉和未授粉形式之间存在显着差异,除葡萄糖外,其他所有代谢物的浓度均较低。此外,用兼容花粉授粉的花型显示出的蔗糖量比SI授粉花型的蔗糖量最高,而SI授粉花粉则包含所有其他代谢物(包括芳族化合物,如黄酮类化合物和肉桂油衍生物)中的蔗糖含量最高。

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