Systems approaches provide new insights into Arabidopsis thaliana root growth under mineral nutrient limitation
Systems approaches provide new insights into Arabidopsis thaliana root growth under mineral nutrient limitation
Abstract The molecular genetic mechanisms by which plants modulate their root growth rate (RGR) in response to nutrient deficiency are largely unknown. Using a panel of Arabidopsis thaliana natural accessions, we provide a comprehensive combinatorial analysis of RGR variation under macro- and micronutrient deficiency, namely phosphorus (P), iron (Fe), and zinc (Zn), which affect root growth in opposite directions. We found that while -P stimulates early RGR of most accessions, -Fe or -Zn reduces it. The combination of either -P-Fe or -P-Zn leads to suppression of the growth inhibition exerted by -Fe or -Zn alone. Surprisingly, Arabidopsis reference accession Columbia (Col-0) is not representative of the species under -P and -Zn. Using a genome wide association study, we identify candidate genes that control RGR under the assayed nutrient deficiency conditions. By using a network biology driven search using these candidate genes, we further identify a functional module enriched in regulation of cell cycle, DNA replication and chromatin modification that possibly underlies the suppression of root growth reduction in -P-Fe conditions. Collectively, our findings provide a framework for understanding the regulation of RGR under nutrient deficiency, and open new routes for the identification of both large effect genes and favorable allelic variations to improve root growth.
Bouain Nadia、Satbhai Santosh B.、Korte Arthur、Rouached Hatem、Rhee Seung Y.、Busch Wolfgang
BPMP, Univ MontpellierGregor Mendel Institute (GMI), Austrian Academy of Sciences||Plant Molecular and Cellular Biology Laboratory, and Integrative Biology LaboratoryEvolutionary Genomics, Center for Computational and Theoretical Biology (CCTB), University W¨1rzburgBPMP, Univ MontpellierDepartment of Plant Biology, Carnegie Institution for ScienceGregor Mendel Institute (GMI), Austrian Academy of Sciences||Plant Molecular and Cellular Biology Laboratory, and Integrative Biology Laboratory
分子生物学植物学遗传学
Bouain Nadia,Satbhai Santosh B.,Korte Arthur,Rouached Hatem,Rhee Seung Y.,Busch Wolfgang.Systems approaches provide new insights into Arabidopsis thaliana root growth under mineral nutrient limitation[EB/OL].(2025-03-28)[2025-06-24].https://www.biorxiv.org/content/10.1101/460360.点此复制
评论