Microbial Determinants of Plant Tolerance to Abiotic Stresses
Microbial Determinants of Plant Tolerance to Abiotic Stresses
批准号:
2885839
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2023
资助国家:
英国
项目状态:
未结题
起止时间:
2023 至 --
中文摘要
“在天然土壤中,养分稀缺且分布不均。它们支持大量栖息在土壤中的生物的生命,包括植物和微生物群,它们已经形成了竞争营养物质和有效吸收营养物质的机制。目前尚不清楚,在争夺不同营养物质的过程中释放的化合物是否会“告知”植物根系如何避免极端竞争,并找到新的营养物质。在这个项目中,我们将研究土壤中存在的复杂化学景观,特别对细菌衍生的化合物感兴趣,如何影响根系的决策过程,以探索土壤中的营养斑块并激活营养反应。这将使我们能够在内源根系发育和植物营养途径中添加新的调控成分,并更好地了解植物如何感知土壤中的养分。重要的是,我们将(a)鉴定和表征具有调节植物对低营养水平反应能力的新型细菌外代谢产物。(b)提供微生物如何帮助植物在土壤中生存的新证据(c)我们将发现土壤养分吸收调节的新的重要机制。这项工作的自然延伸将是:A)在其他重要的经济植物中进一步验证这些发现;b)在更相关的生态环境中测试所描述的外代谢产物的作用和所描述的机制。
英文摘要
"In natural soils, nutrients are scarce and distributed heterogeneously. They support the life of a large number of organisms that inhabit the soil, including plants and microbiota, which have developed mechanisms to compete for nutrients and assimilate them efficiently. It is unknown whether the chemical compounds that are released during these competitions for different nutrients 'inform' plant roots about how to avoid extreme competition and find new patches of nutrients. With this project we will study how the complex chemical landscape existing in the soil, with special interest in compounds derived from bacteria, influences the decision-making process in the root to explore nutrient patches in the soil and activate the nutritional response. This will allow us to add new regulatory components to endogenous root development and plant nutritional pathways and better understand how the plant senses nutrients in the soil. Importantly, we will (a) identify and characterize novel bacterial exometabolites with the ability to modulate plant response to low nutrient levels. (b) provide new evidence on how microbes help plants survive in soils (c) we will discover new and important mechanisms for the regulation of nutrient uptake in soils.A natural extension of this work would be to a) further validate these findings in other economically important plants b) test the effect of the described exometabolites and the described mechanisms in more relevant ecological contexts.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
海外基金