大陆怎么浏览外国网站
手机怎么浏览外国网站
怎样才能浏览外国网站

Our laboratory is interested in how microorganisms co-evolve with their environment (i.e. how microbial metabolic activities change the environment, and how the environment shapes these activities), with a focus on understanding how electron transfer reactions support energy conservation in the absence of oxygen. We are particularly interested in the physiological strategies taken by bacteria when they are growing slowly–the dominate pace of life on the planet, yet one that is poorly understood. Much of our research involves the study of colorful, redox-active metabolites (RAMs) called phenazines, molecules produced by many different types of bacteria. We are interested in how RAMs help structure microbial populations and communities in various contexts, including biofilm aggregates found within human chronic infections or near the roots of plants. Central to our ability to achieve relevant mechanistic insight is our commitment to characterizing the complex contexts that motivate our reductionist research. Ultimately, we are driven by the long-term goal of contributing new approaches to promoting both human and environmental health.

We are an interdisciplinary lab, and seek help from talented scientists of all types to explore these topics. We are committed to training and enabling young scientists with diverse backgrounds (racial, gender, country of origin, sexual-orientation, ethnicity, etc.) to make discoveries during their time in our laboratory and to prepare for a variety of impactful STEM careers.

Please explore our site and contact us if you are interested. Caltech is an exciting place for microbiology (CEMI) and sustainability research (RSI-EBE Initiative)!

          KK云机场最新版,KK云机场跑路了,KK云机场vqn,KK云机场vn  梯子加速器电脑版下载,梯子加速器npv,梯子加速器跑路了,梯子加速器打不开  蚯蚓加速器免费试用,蚯蚓加速器2025,蚯蚓加速器vp,蚯蚓加速器vps  vpm加速器官网网址,vpm加速器用不了了,vpm加速器不能用了,vpm加速器vpm  V2Linknpv,V2Link跑路了,V2Link打不开,V2Link2025  clash加速器官网网址,clash加速器电脑版下载,clash加速器npv,clash加速器2025年