数字农科院2.0

Molecular mechanism of delayed development by interfering RNA targeting the phenylalanine ammonia lyase gene (pal1) in Pleurotus ostreatus

文献类型: 外文期刊

作者: Qi He;Yuqing Jiang;Chenyang Huang;Lijiao Zhang;Ludan Hou;Fangjie Yao;Mengran Zhao

作者机构:

关键词: catalase;development;phenylalanine ammonia lyase;Pleurotus ostreatus;regulation

期刊名称: Journal of Integrative Agriculture

ISSN: 2095-3119

年卷期: 2025 年 24 卷 4 期

页码:

收录情况: SCIE(2025版) ; ; CSCD(2025-2026年度) ; ; 科技核心(2024版) ; ; 农林核心(2024版)

摘要: Blocking the development of edible mushrooms will affect the production cycle and yield of fruiting bodies. Phenylalanine ammonia lyase (PAL, EC 4.3.1.24.) is an enzyme that catalyzes the deamination of phenylalanine to form trans-cinnamic acid. Previous studies have shown that a decrease in pal1 gene transcription delays fruiting body development in Pleurotus ostreatus. Herein, we used wild type (WT) and RNA interference (RNAi) strains to study the molecular regulation of pal1 by RNA sequencing and Agrobacterium-mediated genetic transformation. Our results showed that interference with the pal1 gene resulted in reductions in the total PAL enzyme activity and the total phenol content, as well as an increase in the intracellular H2O2 content. RNA-Seq data demonstrated that the significantly enriched KEGG terms were mainly related to the peroxisome pathway, MAPK signaling pathway-yeast and three other pathways, and the catalase (CAT) gene cat1 is also involved in multiple pathways that were enriched above. Exogenous H2O2 significantly enhanced the transcription of the cat1 gene and elevated total CAT enzymatic activity. Moreover, the levels of cat1 gene transcription and the total CAT enzymatic activity in the RNAi-pal1 strains gradually become closer to those in the WT strain through the removal of H2O2, which indicated that pal1 regulated the expression of cat1 by affecting the intracellular H2O2 content. Finally, the overexpression of the cat1 gene in P. ostreatus caused growth retardation, especially during the process of primordia formation. In conclusion, this study demonstrated that PAL1 affects cat1 gene expression through the signaling molecule H2O2 and regulates the development of P. ostreatus. The findings of this study enhance our understanding of the molecular developmental mechanism of edible mushrooms.

分类号:

  • 相关文献

[1]Activation of miR165b represses AtHB15 expression and induces pith secondary wall development in Arabidopsis. Du, Qian,Qi, Liying,Wang, Huanzhong,Avci, Utku,Pattathil, Sivakumar,Hahn, Michael G.,Li, Shengben,Gallego-Giraldo, Lina.

[2]Effects of Carbon Concentrations and Carbon to Nitrogen ratios on Sporulation of Two Biological Control Fungi as Determined by Different Culture Methods. Liu, Xingzhong,Gao, Li.

[3]Isolation of DNA topoisomerase II gene from Pleurotus ostreatus and its application in phylogenetic analysis. Li, C. X.,Zhang, J. X.,Huang, C. Y.,Chen, Q.,Wang, H. X..

[4]Evaluation of oyster mushroom strains for resistance to Pseudomonas tolaasii by inoculation in spawned substrates. Zhang, Rui Ying,Gu, Jin Gang,Zuo, Xue Mei,Hu, Qing Xiu,Zhang, Jin Xia,Zhang, Rui Ying,Gu, Jin Gang,Zuo, Xue Mei,Hu, Qing Xiu,Zhang, Jin Xia,Hu, Dan Dan.

[5]Metabolic Response Of Pleurotus Ostreatus To Continuous Heat Stress. Yan, ZY, Zhao, MR, Wu, XL, Zhang, JX. 2020

[6]Expression Patterns Of Two Pal G.enes Of Pleurotus Ostreatus A cross Developmental Stages And Under Heat Stress. Hou, LD, Wang, LN, Wu, XL, Gao, W, Zhang, JX, Huang, CY. 2019

[7]High Temperature Induced Disruption Of T.he Cell Wall Integrity A nd Structure In Pleurotus Ostreatus Mycelia. Qiu, ZH, Wu, XL, Gao, W, Zhang, JX, Huang, CY. 2018

[8]High-Temperature Induced Changes Of Extracellular M.etabolites In Pleurotus Ostreatus A nd Their Positive Effects On The Growth Of Trichoderma Asperellum. Qiu, ZH, Wu, XL, Zhang, JX, Huang, CY. 2018

[9]Differential Expression Patterns Of Pleurotus O.streatus Catalase Genes During D evelopmental Stages And Under Heat Stress. Wang, LN, Wu, XL, Gao, W, Zhao, MR, Zhang, JX, Huang, CY. 2017

[10]Genome-Wide Characterization And Expression Analyses O.f Pleurotus Ostreatus Myb T ranscription Factors During Developmental Stages And Under Heat Stress Based On De Novo Sequenced Genome. Wang, LN, Gao, W, Wu, XL, Zhao, MR, Qu, JB, Huang, CY, Zhang, JX. 2018

[11]Alternative oxidase gene induced by nitric oxide is involved in the regulation of ROS and enhances the resistance of Pleurotus ostreatus to heat stress. Ludan Hou,Mengran Zhao,Chenyang Huang,Qi He,Lijiao Zhang,Jinxia Zhang. 2021

[12]Itraq-Based Quantitative Proteomic Analysis Reveals P.roteomic Changes In Mycelium O f Pleurotus Ostreatus In Response To Heat Stress And Subsequent Recovery. Zou, YJ, Zhang, MJ, Qu, JB, Zhang, JX. 2018

[13]Nitric Oxide Negatively Regulates the Rapid Formation of Pleurotus ostreatus Primordia by Inhibiting the Mitochondrial aco Gene. Hou L.,Huang C.,Wu X.,Zhang J.,Zhao M.. 2022

[14]The Metacaspase Gene PoMCA1 Enhances the Mycelial Heat Stress Tolerance and Regulates the Fruiting Body Development of Pleurotus ostreatus. Pei, Jingqi,Zhao, Mengran,Zhang, Lijiao,Wu, Xiangli. 2024

[15]The transcription factor PoMbp1 promotes the growth and development of Pleurotus ostreatus by regulating polysaccharide utilisation. Zhang, Lijiao,Zhang, Yingjie,Wu, Zeyin,Zhao, Mengran,Wu, Xiangli,Huang, Chenyang. 2025

[16]Antioxidant capacities and non-volatile metabolites changes after solid-state fermentation of soybean using oyster mushroom (Pleurotus ostreatus) mycelium. Mengxin He,Qing Peng,Xiaoqing Xu,Bo Shi,Yu Qiao. 2024

[17]Transcriptomic analysis of Pleurotus ostreatus during its fruiting body development. Xingyu Liu,Wei Gao,Chenyang Huang,Xiangli Wu. 2025

[18]Transcriptome and 4D label-free quantitative phosphoproteome analyses reveal transcriptional and phosphorylation changes of key genes in fruiting body development of Pleurotus ostreatus. 何琪,降玉清,邬向丽,赵梦然. 2025

[19]Redoxibase: A Database For Ros H.omeostasis Regulated Proteins. Jemmat, Achraf Mohamed,Li, Qiang,Jemmat, Achraf Mohamed,Zamocky, Marcel,Zamocky, Marcel,Robitaille, Alexis,Mathe, Catherine,Li, Qiang,Dunand, Christophe,Robitaille, Alexis,Savelli, Bruno,Webber, Mark. 2019

[20]Microcystin-RR-induced accumulation of reactive oxygen species and alteration of antioxidant systems in tobacco BY-2 cells. Yin, LY,Huang, JQ,Huang, WM,Li, DH,Wang, GH,Liu, YD.

作者其他论文 更多>>