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Quantitative proteome-level analysis of paulownia witches’ broom disease with methyl methane sulfonate assistance reveals diverse metabolic changes during the infection and recovery processes

机译:泡桐女巫扫帚病与甲基甲烷磺酸盐辅助的蛋白质组水平定量分析揭示了感染和恢复过程中各种代谢变化

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摘要

Paulownia witches’ broom (PaWB) disease caused by phytoplasma is a fatal disease that leads to considerable economic losses. Although there are a few reports describing studies of PaWB pathogenesis, the molecular mechanisms underlying phytoplasma pathogenicity in Paulownia trees remain uncharacterized. In this study, after building a transcriptome database containing 67,177 sequences, we used isobaric tags for relative and absolute quantification (iTRAQ) to quantify and analyze the proteome-level changes among healthy P. fortunei (PF), PaWB-infected P. fortunei (PFI), and PaWB-infected P. fortunei treated with 20 mg L−1 or 60 mg L−1 methyl methane sulfonate (MMS) (PFI-20 and PFI-60, respectively). A total of 2,358 proteins were identified. We investigated the proteins profiles in PF vs. PFI (infected process) and PFI-20 vs. PFI-60 (recovered process), and further found that many of the MMS-response proteins mapped to “photosynthesis” and “ribosome” pathways. Based on our comparison scheme, 36 PaWB-related proteins were revealed. Among them, 32 proteins were classified into three functional groups: (1) carbohydrate and energy metabolism, (2) protein synthesis and degradation, and (3) stress resistance. We then investigated the PaWB-related proteins involved in the infected and recovered processes, and discovered that carbohydrate and energy metabolism was inhibited, and protein synthesis and degradation decreased, as the plant responded to PaWB. Our observations may be useful for characterizing the proteome-level changes that occur at different stages of PaWB disease. The data generated in this study may serve as a valuable resource for elucidating the pathogenesis of PaWB disease during phytoplasma infection and recovery stages.
机译:由植原体引起的泡桐女巫的扫帚(PaWB)病是致命性疾病,导致可观的经济损失。尽管有一些报道描述了PaWB发病机理的研究,但泡桐树中植物胞浆致病性的分子机制仍未阐明。在这项研究中,建立了包含67177个序列的转录组数据库后,我们使用等压标记进行了相对和绝对定量(iTRAQ)定量和分析了健康P. fortunei(PF),PaWB感染P. fortunei( PFI),以及用20 mg L -1 或60 mg L -1 甲磺酸甲酯(MMS)处理的PaWB感染的福寿螺(PFI-20和PFI- 60)。总共鉴定出2358种蛋白质。我们研究了PF与PFI(感染过程)和PFI-20与PFI-60(恢复过程)中的蛋白质谱,并进一步发现许多MMS反应蛋白映射到“光合作用”和“核糖体”途径。根据我们的比较方案,发现了36​​种PaWB相关蛋白。其中,32种蛋白质被分为三个功能组:(1)碳水化合物和能量代谢;(2)蛋白质合成和降解;(3)抗逆性。然后,我们调查了与感染和恢复过程有关的PaWB相关蛋白,发现随着植物对PaWB的反应,碳水化合物和能量代谢受到抑制,蛋白质合成和降解降低。我们的观察结果可能有助于表征在PaWB疾病不同阶段发生的蛋白质组水平变化。这项研究中产生的数据可以作为阐明植物浆体感染和恢复阶段PaWB疾病发病机理的宝贵资源。

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