曼彻斯特大学(英国)(BBSRC NWD) Mobile Genetic Elements as key drivers for sustainable Wheat-Fungus Adaptations in a Changing Climate申请条件要求-申请方

(BBSRC NWD) Mobile Genetic Elements as key drivers for sustainable Wheat-Fungus Adaptations in a Changing Climate
PhD直招2025秋季
申请时间:2025.01.31截止
主办方
曼彻斯特大学(英国)
PhD直招介绍
About the Project As the world confronts pressing global challenges like a projected population surge to 9.7 billion by 2050, climate change, and the rise of pest pressures, innovative strategies to enhance crop resilience are essential for food security and environmental stability. Wheat (Triticum aestivum) and Arbuscular Mycorrhizal Fungi (AMF) interactions exemplify plant-fungal symbioses that can improve nutrient use efficiency, soil health, and resilience to environmental stresses. Mobile Genetic Elements (MGEs) play a crucial role in these adaptations, driving genetic diversity and rapid evolution. Yet, despite their prevalence in genomes, the impact of MGEs on metabolic adaptation in plant-microbe interactions, especially in response to climate change, remains largely unexplored. Our project aims to uncover how Mobile Genetic Elements (MGEs) drive metabolic diversity and adaptive traits in wheat-AMF interactions, enhancing resilience to various biotic and abiotic stresses. This investigation builds on key findings by Sahu et al. (2023), Wang et al. (2020), and Sperschneider et al. (2023) on plant-fungus interactions, as well as Al-Shayeb et al. (2022), which identified repeat elements as central to expanding metabolic capacity. Leveraging my extensive expertise in k-mer-based and graph-based methodologies for high-quality genome and pangenome assembly, structural variation discovery, and metabolic pathway analysis, this project naturally extends to the plant and microbial realms (Garg* et al. Trends in Microbiology, 2024 (accepted); Garg Genome Biology 2023; Garg et al Nature Biotechnology 2021). Given the rising importance of MGEs in shaping genomes and metabolic pathways in these systems, our focus on MGE-driven metabolic and genetic adaptations aims to provide crucial insights for sustainable agriculture, reduced reliance on synthetic fertilizers, and the development of climate-resilient crops. Objective 1: Develop a comprehensive genomic toolkit to catalog and analyze the diversity and abundance of Mobile Genetic Elements (MGEs) and investigate their role in promoting sustainable wheat-AMF symbiosis through genome sequencing and comparative genomics, emphasizing potential pathways for nutrient efficiency and resilience to environmental stresses. Objective 2: Establish a metabolic and functional framework to understand how MGEs drive the expression of genes related to environmental resilience, exploring how MGE-induced phenotypic changes and novel metabolic pathways contribute to sustainable crop growth in low-input systems. Objective 3: Uncover how MGEs enable wheat and AMF to acquire adaptive traits or pathways rapidly, enhancing their ability to withstand diverse biotic and abiotic pressures, and supporting sustainable agriculture and ecosystem health in a changing climate. Impact This project promotes environmental sustainability by developing wheat varieties that thrive under low-input, high-stress conditions, reducing fertilizer use and enhancing carbon sequestration through symbiosis with Arbuscular Mycorrhizal Fungi (AMF). By studying how Mobile Genetic Elements (MGEs) facilitate wheat-AMF adaptation to climate stress, the research supports climate-resilient crops, healthier soils, and sustainable farming. It also paves the way for genetically modified crops with innate pest and stress resilience, reducing chemical use and fostering global food security. https://scholar.google.com/citations?hl=en&user=_Sn07lgAAAAJ&view_op=list_works&sortby=pubdate Equality, Diversity and Inclusion Equality, diversity and inclusion is fundamental to the success of The University of Manchester, and is at the heart of all of our activities. The full Equality, diversity and inclusion statement can be found on the website( https://www.bmh.manchester.ac.uk/study/research/getting-started/eligibility-and-entry-requirements/equality-diversity-inclusion/ ).
曼彻斯特大学(英国) (BBSRC NWD) Mobile Genetic Elements as key drivers for sustainable Wheat-Fungus Adaptations in a Changing Climate项目有没有奖学金,是不是全奖Phd招生,下面我们一起看一下【大学名称】Phd的奖学金资助情况
项目资助情况
These studentships are available to UK and international applicants, and provide funding for tuition fees and stipend at the UKRI rate, subject to eligibility, for four years. This does not include any costs associated with relocation. This scheme is open to both the UK and international applicants.
曼彻斯特大学(英国)Phd申请条件和要求都有哪些?(BBSRC NWD) Mobile Genetic Elements as key drivers for sustainable Wheat-Fungus Adaptations in a Changing Climate项目是不是全奖?有没有奖学金?下面我们一起看一下曼彻斯特大学(英国)申请Phd直招需要具备哪些条件和要求,以及托福、雅思语言成绩要到多少才能申请。
申请要求
Applicants must have obtained or be about to obtain a minimum Upper Second class UK honours degree, or the equivalent qualifications gained outside the UK, in Computer science, Computational biology, Biology, Agrifood & sustainable systems or Genomics. International applicants We are only able to offer a limited number of full studentships to applicants outside the UK. Therefore, full studentships will only be awarded to exceptional quality international candidates due to the competitive nature of this scheme. International applicants must ensure they meet the academic eligibility criteria (including English language) before applying. Visit our ‘Eligibility and entry requirements’ page( https://www.bmh.manchester.ac.uk/study/research/getting-started/eligibility-and-entry-requirements/#d.en.962069 ) to find out more about our English language requirements.
报名方式
申请链接
联系人
邮箱:fbmh.doctoralacademy.admissions@manchester.ac.uk