Nutrient availability regulates Deschampsia antarctica photosynthetic and stress tolerance performance in Antarctica

Author:

Gago Jorge1ORCID,Nadal Miquel12ORCID,Clemente-Moreno María José1ORCID,Figueroa Carlos María3ORCID,Medeiros David Barbosa4ORCID,Cubo-Ribas Neus1ORCID,Cavieres Lohengrin Alexis56ORCID,Gulías Javier1ORCID,Fernie Alisdair Robert4ORCID,Flexas Jaume1ORCID,Bravo León Aloys7ORCID

Affiliation:

1. Research Group on Plant Biology under Mediterranean Conditions, Universitat de les Illes Balears (UIB)/Instituto de Investigaciones Agroambientales y de Economía del Agua (INAGEA) , Ctra. Valldemossa km 7.5, 07122 Palma , Spain

2. Departamento de Sistemas Agrícolas, Forestales y Medio Ambiente, Centro de Investigación y Tecnología Agroalimentaria de Aragón (CITA) , Avda. Montañana 930, 50059 Zaragoza , Spain

3. Instituto de Agrobiotecnología del Litoral, UNL, CONICET, FBCB , 3000 Santa Fe , Argentina

4. Central Metabolism Group, Molecular Physiology Department, Max-Planck-Institut für Molekulare Pflanzenphysiologie , Golm , Germany

5. Departamento de Botánica, Facultad de Ciencias Naturales y Oceanográficas, Universidad de Concepción and Instituto de Ecología y Biodiversidad (IEB) , Concepción , Chile

6. Center of Plant, Soil Interaction and Natural Resources Biotechnology, Scientific and Technological Bioresource Nucleus. Universidad de La Frontera , Temuco , Chile

7. Laboratorio de Fisiología y Biología Molecular Vegetal, Dpt. de Cs. Agronómicas y Recursos Naturales, Facultad de Cs. Agropecuarias y Forestales, Instituto de Agroindustria, Universidad de La Frontera , Temuco , Chile

Abstract

Abstract Deschampsia antarctica is one of the only two native vascular plants in Antarctica, mostly located in the ice-free areas of the Peninsula’s coast and adjacent islands. This region is characterized by a short growing season, frequent extreme climatic events, and soils with reduced nutrient availability. However, it is unknown whether its photosynthetic and stress tolerance mechanisms are affected by the availability of nutrients to deal with this particular environment. We studied the photosynthetic, primary metabolic, and stress tolerance performance of D. antarctica plants growing on three close sites (<500 m) with contrasting soil nutrient conditions. Plants from all sites showed similar photosynthetic rates, but mesophyll conductance and photobiochemistry were more limiting (~25%) in plants growing on low-nutrient availability soils. Additionally, these plants showed higher stress levels and larger investments in photoprotection and carbon pools, most probably driven by the need to stabilize proteins and membranes, and remodel cell walls. In contrast, when nutrients were readily available, plants shifted their carbon investment towards amino acids related to osmoprotection, growth, antioxidants, and polyamines, leading to vigorous plants without appreciable levels of stress. Taken together, these findings demonstrate that D. antarctica displays differential physiological performances to cope with adverse conditions depending on resource availability, allowing it to maximize stress tolerance without jeopardizing photosynthetic capacity.

Funder

Ministerio de Ciencia, Innovación y Universidades

Regional Development Fund

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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