Expanding the metabolism of the most primitive phototroph
Expanding the metabolism of the most primitive phototroph
批准号:
2749924
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:
2022
资助国家:
英国
项目状态:
未结题
起止时间:
2022 至 --
中文摘要
点击翻译按钮获取中文摘要
英文摘要
Carbon fixation and conversion into carbohydrate is one of the dominant biochemical processes in nature, supplying the cellular building blocks for all living organisms. The majority of this fixation, or global primary productivity, is performed by plants on land and by algae and cyanobacteria in marine environments using the Calvin cycle, coupled to the conversion of sunlight into chemical energy. This process has produced the environmental conditions that permitted the evolution of complex life on Earth. However, the rate of release of fossil fuel emission is disrupting the delicate gas balance of the atmosphere, leading to global warming and climate breakdown. Beyond cutting greenhouse gas emissions, it is essential that new technologies are developed to capture CO2 from the environment and store it as organic compounds, for which efficient biological routes must be explored.Alternative carbon fixation pathways are found in microbes dispersed throughout the tree of life. The most ancient of these, the Wood-Ljungdahl pathway, is still used by anaerobic bacteria and archaea found inhabiting environments lacking oxygen. This pathway is the simplest and most energy-efficient route for CO2 capture. Interestingly, the most primitive phototrophs, the anaerobic Heliobacteria, are unable to fix carbon, but they are closely-related to bacteria that use the Wood-Ljungdahl pathway as a source of carbon. This synthetic biology project aims to couple energy-efficient CO2 fixation to phototrophic generation of ATP in Heliobacteria, providing an exciting prospect for carbon capture and storage. The principles defined will be directly applicable to the sustainable generation of renewable chemicals.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
国内基金
海外基金
登录
查看更多内容
一碳代谢(One carbon metabolism)介导上调的 PD1/PDL1 驱动
肿瘤免疫逃逸
-
批准号:2024JJ9491
-
项目类别:省市级项目
-
资助金额:--
-
批准年份:2024
-
负责人:彭罗根
-
依托单位:
生物钟核受体Rev-erbα在缺血性卒中神经元能量代谢中的改善作用及机制研究
-
批准号:82371332
-
项目类别:面上项目
-
资助金额:49.00万元
-
批准年份:2023
-
负责人:胡琴
-
依托单位:
Idh3a作为线粒体代谢—表观遗传检查点调控产热脂肪功能的机制研究
-
批准号:82370851
-
项目类别:面上项目
-
资助金额:48.00万元
-
批准年份:2023
-
负责人:包玉倩
-
依托单位:
NPM1表观重塑巨噬细胞代谢及修复表型在心肌缺血损伤中的调控作用
-
批准号:82371825
-
项目类别:面上项目
-
资助金额:49.00万元
-
批准年份:2023
-
负责人:占贞贞
-
依托单位:
海马神经元胆固醇代谢重编程致染色质组蛋白乙酰化水平降低介导老年小鼠术后认知功能障碍
-
批准号:82371192
-
项目类别:面上项目
-
资助金额:49.00万元
-
批准年份:2023
-
负责人:田婕
-
依托单位:
“肠—肝轴”PPARα/CYP8B1胆汁酸合成信号通路在减重手术改善糖脂代谢中的作用与机制
-
批准号:82370902
-
项目类别:面上项目
-
资助金额:49.00万元
-
批准年份:2023
-
负责人:田景琰
-
依托单位:
转运蛋白RCP调控巨噬细胞脂肪酸氧化参与系统性红斑狼疮发病的机制研究
-
批准号:82371798
-
项目类别:面上项目
-
资助金额:49.00万元
-
批准年份:2023
-
负责人:叶俊娜
-
依托单位:
DACH1对糖尿病肾病足细胞脂质代谢的调控作用和机制研究
-
批准号:82370719
-
项目类别:面上项目
-
资助金额:49.00万元
-
批准年份:2023
-
负责人:曹爱丽
-
依托单位:
Grem2通过BMPR-Smad1/5/8-PGC1α通路调控线粒体能量代谢在糖尿病肾病足细胞损伤中的机制研究
-
批准号:82370819
-
项目类别:面上项目
-
资助金额:49.00万元
-
批准年份:2023
-
负责人:徐瑜
-
依托单位:
雄性线虫特异分泌蛋白F56D2.8调节衰老与寿命的机制研究
-
批准号:32100604
-
项目类别:青年科学基金项目(C类)
-
资助金额:30.0万元
-
批准年份:2021
-
负责人:龚健科
-
依托单位: