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RCB-mediated chlorophagy caused by oversupply of nitrogen suppresses phosphate-starvation stress in plants

Yushi Yoshitake, Sakuya Nakamura, Daiki Shinozaki, Masanori Izumi, Kohki Yoshimoto, Hiroyuki Ohta, Mie Shimojima

2020PLANT PHYSIOLOGY27 citationsDOIOpen Access PDF

Abstract

Inorganic phosphate (Pi) and nitrogen (N) are essential nutrients for plant growth. We found that a five-fold oversupply of nitrate rescues Arabidopsis (Arabidopsis thaliana) plants from Pi-starvation stress. Analyses of transgenic plants that overexpressed GFP-AUTOPHAGY8 showed that an oversupply of nitrate induced autophagy flux under Pi-depleted conditions. Expression of DIN6 and DIN10, the carbon (C) starvation-responsive genes, was upregulated when nitrate was oversupplied under Pi starvation, which suggested that the plants recognized the oversupply of nitrate as C starvation stress because of the reduction in the C/N ratio. Indeed, formation of Rubisco-containing bodies (RCBs), which contain chloroplast stroma and are induced by C starvation, was enhanced when nitrate was oversupplied under Pi starvation. Moreover, autophagy-deficient mutants did not release Pi (unlike wild-type plants), exhibited no RCB accumulation inside vacuoles, and were hypersensitive to Pi starvation, indicating that RCB-mediated chlorophagy is involved in Pi starvation tolerance. Thus, our results showed that the Arabidopsis response to Pi starvation is closely linked with N and C availability and that autophagy is a key factor that controls plant growth under Pi starvation.

Topics & Concepts

StarvationArabidopsisAutophagyArabidopsis thalianaVacuoleStarvation responseBiochemistryNitrogen deficiencyChloroplastPiBiologyChemistryMutantCell biologyNitrogenGeneCytoplasmEndocrinologyOrganic chemistryApoptosisPlant nutrient uptake and metabolismPlant Stress Responses and TolerancePlant Micronutrient Interactions and Effects
RCB-mediated chlorophagy caused by oversupply of nitrogen suppresses phosphate-starvation stress in plants | Litcius