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Identification of Metabolic Pathways Expressed by Pichia anomala Kh6 in the Presence of the Pathogen Botrytis cinerea on Apple: New Possible Targets for Biocontrol Improvement

机译:苹果病原性灰霉病存在下由异常毕赤酵母表达的代谢途径的鉴定:生物防治改进的新目标

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摘要

Yeast Pichia anomala strain Kh6 Kurtzman (Saccharomycetales: Endomycetaceae) exhibits biological control properties that provide an alternative to the chemical fungicides currently used by fruit or vegetable producers against main post-harvest pathogens, such as Botrytis cinerea (Helotiales: Sclerotiniaceae). Using an in situ model that takes into account interactions between organisms and a proteomic approach, we aimed to identify P. anomala metabolic pathways influenced by the presence of B. cinerea. A total of 105 and 60 P. anomala proteins were differentially represented in the exponential and stationary growth phases, respectively. In the exponential phase and in the presence of B. cinerea, the pentose phosphate pathway seems to be enhanced and would provide P. anomala with the needed nucleic acids and energy for the wound colonisation. In the stationary phase, P. anomala would use alcoholic fermentation both in the absence and presence of the pathogen. These results would suggest that the competitive colonisation of apple wounds could be implicated in the mode of action of P. anomala against B. cinerea.
机译:酵母异常毕赤酵母菌株Kh6 Kurtzman(酵母菌:内生菌科)显示出生物防治特性,为水果或蔬菜生产者目前使用的化学杀菌剂提供替代品,以对抗主要的收获后病原体,例如灰葡萄孢(Helotiales:Sclerotiniaceae)。使用考虑到生物之间的相互作用和蛋白质组学方法的原位模型,我们旨在确定受到灰质芽孢杆菌的存在影响的P. anomala代谢途径。分别在指数生长期和稳态生长期差异表达了总共105个和60个P. anomala蛋白。在指数阶段并且在灰质芽孢杆菌的存在下,磷酸戊糖途径似乎被增强,并且将为异常假单胞菌提供伤口定植所需的核酸和能量。在静止期,异常P. anomala将在不存在和存在病原体的情况下使用酒精发酵。这些结果表明苹果伤口的竞争性定植可能与苹果异双歧杆菌对灰葡萄孢的作用方式有关。

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