Ph.D. in Plant Pathology植物病理学博士
Huazhong Agricultural University, Wuhan, China华中农业大学,中国武汉
Supervisor: Dr. Kenichi Tsuda | Kenichi Tsuda lab导师:津田贤一 教授 | 津田贤一实验室
Huazhong Agricultural University, Wuhan, China华中农业大学,中国武汉
Supervisor: Dr. Kenichi Tsuda | Kenichi Tsuda lab导师:津田贤一 教授 | 津田贤一实验室
Huazhong Agricultural University, Wuhan, China华中农业大学,中国武汉
Supervisor: Dr. Liangcai Peng导师:彭良才 教授
Title: Host PTI and ETI shape the microbiome for enhanced disease resistance题目:宿主PTI和ETI塑造微生物组以增强抗病性
Supervisor: Dr. Kenichi Tsuda | Kenichi Tsuda lab导师:津田贤一 教授 | 津田贤一实验室
Abstract: This project uses the Arabidopsis-Pst DC3000-microbiome interaction system, together with metagenomics, transcriptomics, metabolomics, and synthetic community approaches, to explore how plant innate immunity shapes the microbiome for enhanced disease resistance.摘要:本研究利用「拟南芥-Pst DC3000-微生物组」互作体系,结合宏基因组、转录组、代谢组以及合成菌群等方法,尝试解析植物先天免疫如何塑造其微生物组以增强其抗病性。
Title: Multi-omics reveal the interactions among maize, fungal pathogen Bipolaris maydis, and microbiome题目:多组学解析玉米、真菌病原 Bipolaris maydis 与微生物组之间的互作
Supervisor: Dr. Kenichi Tsuda | Kenichi Tsuda lab导师:津田贤一 教授 | 津田贤一实验室
Abstract: This research utilizes the maize-Bipolaris maydis-microbiome interaction system, aiming to reveal the molecular mechanisms of plant microbiome-mediated plant protection or pathogen promotion through metagenomics, transcriptomics, metabolomics, as well as synthetic community approaches.摘要:本研究利用玉米-Bipolaris maydis-微生物组互作体系,结合宏基因组、转录组、代谢组以及合成菌群等方法,解析植物微生物组介导植物保护或促进病原的分子机制。
Part of the National Key R&D Program of China (Project ID: SQ2022YFA1300114)国家重点研发计划项目组成部分(项目编号:SQ2022YFA1300114)
Title: Development of bioethanol detection type yeast sensor题目:生物乙醇检测型酵母传感器的开发
Supervisor: Dr. Liangcai Peng导师:彭良才 教授
Abstract: Energy shortages and environmental pollution highlight the need for renewable energy. This project identified eight ethanol-specific inducible promoters (pESN1-8) in Pichia pastoris via RNA-seq, creating a sensing yeast platform for high-throughput ethanol detection and genetic improvement of ethanol-producing yeast.摘要:能源短缺和环境污染凸显了可再生能源的重要性。本项目通过 RNA-seq 在 Pichia pastoris 中鉴定出 8 个乙醇特异诱导启动子(pESN1-8),构建了可用于高通量乙醇检测的感知酵母,为产乙醇酵母的遗传改良提供了基础。
* corresponding author, # co-first author* 通讯作者,# 共同第一作者