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首页> 外文期刊>Journal of Experimental Botany >Apoplastic and intracellular plant sugars regulate developmental transitions in witches' broom disease of cacao
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Apoplastic and intracellular plant sugars regulate developmental transitions in witches' broom disease of cacao

机译:妊娠和细胞内植物糖调节巫婆扫帚疾病中的发育过渡

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摘要

Witches' broom disease (WBD) of cacao differs from other typical hemibiotrophic plant diseases by its unusually long biotrophic phase. Plant carbon sources have been proposed to regulate WBD developmental transitions; however, nothing is known about their availability at the plant-fungus interface, the apoplastic fluid of cacao. Data are provided supporting a role for the dynamics of soluble carbon in the apoplastic fluid in prompting the end of the biotrophic phase of infection. Carbon depletion and the consequent fungal sensing of starvation were identified as key signalling factors at the apoplast. MpNEP2, a fungal effector of host necrosis, was found to be up-regulated in an autophagic-like response to carbon starvation in vitro. In addition, the in vivo artificial manipulation of carbon availability in the apoplastic fluid considerably modulated both its expression and plant necrosis rate. Strikingly, infected cacao tissues accumulated intracellular hexoses, and showed stunted photosynthesis and the up-regulation of senescence markers immediately prior to the transition to the necrotrophic phase. These opposite findings of carbon depletion and accumulation in different host cell compartments are discussed within the frame of WBD development. A model is suggested to explain phase transition as a synergic outcome of fungal-related factors released upon sensing of extracellular carbon starvation, and an early senescence of infected tissues probably triggered by intracellular sugar accumulation.
机译:Cacao的女巫扫帚疾病(WBD)与其他典型的血管营养植物的异常长期的生物营养相不同。已经提出了植物碳源来调节WBD发育过渡;然而,在植物 - 真菌界面的可用性中已知任何内容,可可植物的可用液体。提供数据支持溶解性液中可溶性碳动力学的作用,提示感染的生物营养阶段结束。碳耗尽和随后的饥饿感测量被鉴定为术中的关键信号传导因子。发现宿主坏死的真菌效应器,发现在体外对碳饥饿的自噬响应中上调。此外,体内人工操纵在妊娠流体中的碳可用性显着调节其表达和植物坏死率。引人注目的是感染的可可组织积累了细胞内己糖,并在过渡到病症前期之前显示出明显的光合作用和立即上调衰老标志物。在WBD发育的框架内讨论了不同宿主细胞隔室中的碳耗尽和积累的这些相反的发现。建议将模型解释为在感测细胞外碳饥饿时释放的真菌相关因子的协同结果,并且可能通过细胞内糖积累引发的感染组织早期衰老。

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