Institute of Biotechnology, Zhejiang University, Hangzhou, 310058, China.
Amity Institute of Microbial Technology, Amity University Uttar Pradesh, Noida, UP, 201303, India.
Sci Rep. 2018 Apr 10;8(1):5773. doi: 10.1038/s41598-018-23994-z.
Many studies have been now focused on the promising approach of fungal endophytes to protect the plant from nutrient deficiency and environmental stresses along with better development and productivity. Quantitative and qualitative protein characteristics are regulated at genomic, transcriptomic, and posttranscriptional levels. Here, we used integrated in-depth proteome analyses to characterize the relationship between endophyte Piriformospora indica and Brassica napus plant highlighting its potential involvement in symbiosis and overall growth and development of the plant. An LC-MS/MS based label-free quantitative technique was used to evaluate the differential proteomics under P. indica treatment vs. control plants. In this study, 8,123 proteins were assessed, of which 46 showed significant abundance (34 downregulated and 12 upregulated) under high confidence conditions (p-value ≤ 0.05, fold change ≥2, confidence level 95%). Mapping of identified differentially expressed proteins with bioinformatics tools such as GO and KEGG pathway analysis showed significant enrichment of gene sets involves in metabolic processes, symbiotic signaling, stress/defense responses, energy production, nutrient acquisition, biosynthesis of essential metabolites. These proteins are responsible for root's architectural modification, cell remodeling, and cellular homeostasis during the symbiotic growth phase of plant's life. We tried to enhance our knowledge that how the biological pathways modulate during symbiosis?
现在已经有许多研究集中在真菌内生菌有希望的方法上,以保护植物免受营养缺乏和环境压力的影响,同时促进更好的发育和生产力。蛋白质的数量和质量特性在基因组、转录组和转录后水平上受到调节。在这里,我们使用综合的深度蛋白质组分析来描述内生菌 P. indica 与油菜植物之间的关系,突出其在共生以及植物的整体生长和发育中的潜在作用。我们使用基于 LC-MS/MS 的无标记定量技术来评估 P. indica 处理与对照植物之间的差异蛋白质组学。在这项研究中,评估了 8123 种蛋白质,其中 46 种在高置信度条件下(p 值≤0.05,倍数变化≥2,置信水平 95%)表现出显著的丰度(34 种下调,12 种上调)。利用生物信息学工具,如 GO 和 KEGG 途径分析,对鉴定出的差异表达蛋白进行映射,结果显示,涉及代谢过程、共生信号转导、应激/防御反应、能量产生、营养物质获取、必需代谢物生物合成的基因集显著富集。这些蛋白质负责在植物生命的共生生长阶段进行根系的结构修饰、细胞重塑和细胞内稳态。我们试图增强我们的知识,即在共生过程中,生物途径是如何调节的?