In this work , we identify the first plant Fe-chaperones (ICHAP) and determine their role in iron allocation to symbioses.
Dr. Qingnan Chu has been selected as one of the 24 2024 Incoming Postodoctoral Junior Leaders by La Caixa Foundation. […]
In a work led by Dr. Hannetz Roschzttardtz, we have used different embryo-specific promoters to alter iron distribution in Arabidopsis […]
In collaboration with the Rubio lab we have just published a revision work on our current understanding of model diazotroph […]
In this work we characterize a new copper-chaperone involved in providing copper for symbiotic nitrogen fixation and unveil a number […]
In this review we go through the most recent advances in our understanding of how Fe, Cu, Zn, and Mo […]
We have recently deposited a new preprint in BioRxiv: Nodule-specific Cu+-chaperone NCC1 is required for symbiotic nitrogen fixation in Medicago truncatula root […]
In a work led by Dr. Daniel Raimunda we have characterized the role on Sinorhizobium meliloti iron homeostasis of Co(II) […]
We have collaborated with the group of Dr. Daniel Raimunda to characterize the role of Sinorhizobium meliloti AitP protein in […]
In collaboration with colleagues from Denmark, Turkey, Germany, Poland, and France, we have reviewed the current knowledge, future challenges and […]
In collaboration with the Rubio lab and researchers from Virginia Tech, we have determined that the Fe-S cluster required for […]