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Phospholipases Dα and δ are involved in local and systemic wound responses of cotton (G. hirsutum)

机译:磷脂酶Dα和δ参与棉花的局部和全身伤口反应( G。hirsutum

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Phospholipases D (PLDs) catabolize structural phospholipids to produce phosphatidic acid (PtdOH), a lipid playing central role in signalling pathways in animal, yeast and plant cells. In animal cells two PLD genes have been studied while in model plant Arabidopsis twelve genes exist, classified in six classes (α-ζ). This underlines the role of these enzymes in plant responses to environmental stresses. However, information concerning the PLD involvement in the widely cultivated and economically important cotton plant responses is very limited. The aim of this report was to study the activity of conventional cotton PLD and its participation in plant responses to mechanical wounding, which resembles both biotic and abiotic stresses. PLDα activity was identified and further characterized by transphosphatidylation reaction. Upon wounding, cotton leaf responses consist of an acute in vitro increase of PLDα activity in both wounded and systemic tissue. However, determination of the in vivo PtdOH levels under the same wounding conditions revealed a rapid PtdOH formation only in wounded leaves and a late response of a PtdOH increase in both tissues. Εxpression analysis of PLDα and PLDδ isoforms showed mRNA accumulation of both isoforms in the wounded tissue, but only PLDδ exerts a high and sustainable expression in systemic leaves, indicating that this isoform is mainly responsible for the systemic wound-induced PtdOH production. Therefore, our data suggest that PLDα and PLDδ isoforms are involved in different steps in cotton wound signalling. Highlights ? PLDα activity and PtdOH levels rapidly increase in wounded cotton leaves. ? PLDα is also activated rapidly in systemic tissue. ? Doubling of PtdOH levels occurs as a late response in both wounded and systemic tissue. ? PLDδ (but not PLDα) exerts a high and sustainable expression in systemic leaves. ? PLDα and PLDδ are involved in different steps in cotton wound signalling.
机译:磷脂酶D(PLD)分解代谢结构性磷脂,产生磷脂酸(PtdOH),磷脂在动植物,酵母和植物细胞的信号通路中起着关键作用。在动物细胞中,已经研究了两个PLD基因,而在拟南芥中,存在十二个基因,分为六类(α-ζ)。这强调了这些酶在植物对环境胁迫的反应中的作用。但是,有关PLD参与广泛种植且具有重要经济意义的棉花植株响应的信息非常有限。本报告的目的是研究常规棉花PLD的活性及其对植物对机械伤害的反应的参与,这类似于生物和非生物胁迫。鉴定了PLDα活性并通过转磷脂酰化反应进一步表征。受伤后,棉叶反应包括受伤和全身组织中PLDα活性的急性体外增加。但是,在相同的伤口条件下测定体内PtdOH的水平表明,仅在受伤的叶子中会快速形成PtdOH,而在两个组织中PtdOH的后期反应都会增加。对PLDα和PLDδ同工型的表达分析表明,这两种同工型的mRNA在伤口组织中蓄积,但是只有PLDδ在全身叶片中表达高而可持续的表达,表明该同工型主要负责全身性伤口诱导的PtdOH的产生。因此,我们的数据表明PLDα和PLDδ同工型参与棉花伤口信号传递的不同步骤。强调 ?受伤的棉叶中PLDα活性和PtdOH水平迅速增加。 ? PLDα在全身组织中也被迅速激活。 ?在受伤和全身组织中,PtdOH水平加倍都作为晚期反应发生。 ? PLDδ(但不是PLDα)在系统叶片中发挥高而可持续的表达。 ? PLDα和PLDδ参与棉花伤口信号传导的不同步骤。

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