Proteomic analysis revealed the function of PoElp3 in development, pathogenicity, and autophagy through the tRNA-mediated translation efficiency in the rice blast fungus1

IF 4.6 1区 农林科学 Q1 AGRICULTURE, MULTIDISCIPLINARY Journal of Integrative Agriculture Pub Date : 2024-01-20 DOI:10.1016/j.jia.2024.01.027
Yuanhao Liu, Ting Sun, Yuyong Li, Jianqiang Huang, Xianjun Wang, Huimin Bai, Jiayi Hu, Zifan Zhang, Shuai Wang, Dongmei Zhang, Xiuxiu Li, Zonghua Wang, Huakun Zheng, Guifang Lin
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Abstract

The Elongator complex is conserved in a wide range of species and plays crucial roles in diverse cellular processes. We have previously shown that the Elongator protein PoELp3 was involved in the asexual development, pathogenicity, and autophagy of the rice blast fungus. In this study, we further revealed that PoElp3 functions via tRNA-mediated protein integrity. Phenotypic analyses revealed that overexpression of two of the tRNAs, tK(UUU) and tQ(UUG) could rescue the defects in ΔPoelp3 strain. TMT-based proteomic and transcriptional analyses demonstrated that 386 proteins were down-regulated in ΔPoelp3 strain compared with wild type strain Guy11, in a transcription-independent manner. Codon usage assays revealed an enrichment of Glutamine CAA-biased mRNA in the 386 proteins compared with the 70-15 genome. In addition to those reported previously, we also found that PoErp9, a sphingolipid C9-methyltransferase, was down-regulated in the ΔPoelp3 strain. Through an ILV2-specific integration of PoERP9-GFP into the wild type and ΔPoelp3 strain, we were able to show that PoErp9 was positively regulated by PoElp3 translationally but not transcriptionally. Functional analyses revealed that PoErp9 was involved in the fungal growth, conidial development, pathogenicity, and TOR-related autophagy homeostasis in P. oryzae. Taken together, our results suggested that PoElp3 acts through the tRNA-mediated translational efficiency to regulate asexual development, pathogenicity, sphingolipid metabolism, and autophagy in the rice blast fungus.

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蛋白质组分析揭示了 PoElp3 通过 tRNA 介导的翻译效率在稻瘟病真菌发育、致病性和自噬中的功能1
伸长因子复合体在多种物种中都是保守的,并在多种细胞过程中发挥着关键作用。我们之前研究发现,Elongator 蛋白 PoELp3 参与了稻瘟病真菌的无性发育、致病性和自噬过程。在本研究中,我们进一步揭示了 PoElp3 通过 tRNA 介导的蛋白质完整性发挥作用。表型分析表明,tK(UUU)和tQ(UUG)这两种tRNA的过表达可以挽救ΔPoelp3菌株的缺陷。基于TMT的蛋白质组和转录分析表明,与野生型菌株Guy11相比,ΔPoelp3菌株中有386个蛋白质以转录无关的方式下调。密码子使用分析表明,与 70-15 基因组相比,386 个蛋白质中富含谷氨酰胺 CAA 偏基的 mRNA。除了之前报道的那些,我们还发现鞘脂 C9-甲基转移酶 PoErp9 在 ΔPoelp3 菌株中被下调。通过在野生型和ΔPoelp3菌株中整合ILV2特异性PoERP9-GFP,我们发现PoErp9受PoElp3的正向转录调控。功能分析显示,PoErp9参与了P. oryzae的真菌生长、分生孢子发育、致病性以及与TOR相关的自噬平衡。综上所述,我们的研究结果表明,PoElp3通过tRNA介导的翻译效率调控稻瘟病真菌的无性发育、致病性、鞘脂代谢和自噬。
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来源期刊
Journal of Integrative Agriculture
Journal of Integrative Agriculture AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
7.90
自引率
4.20%
发文量
4817
审稿时长
3-6 weeks
期刊介绍: Journal of Integrative Agriculture publishes manuscripts in the categories of Commentary, Review, Research Article, Letter and Short Communication, focusing on the core subjects: Crop Genetics & Breeding, Germplasm Resources, Physiology, Biochemistry, Cultivation, Tillage, Plant Protection, Animal Science, Veterinary Science, Soil and Fertilization, Irrigation, Plant Nutrition, Agro-Environment & Ecology, Bio-material and Bio-energy, Food Science, Agricultural Economics and Management, Agricultural Information Science.
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