Short-term effects of increased CO2, nitrate and temperature on photosynthetic activity in Ulva rigida (Chlorophyta) estimated by different pulse amplitude modulated fluorometers and oxygen evolution

Author:

Figueroa Felix L1ORCID,Bonomi-Barufi Jose2,Celis-Plá Paula S M34,Nitschke Udo5,Arenas Francisco6,Connan Solene78,Abreu Maria Helena9,Malta Erik-J10,Conde-Álvarez Rafael1,Chow Fungyi11,Mata Maria Teresa12,Meyerhoff O13,Robledo Daniel14,Stengel Dagmar B5

Affiliation:

1. Malaga University. Institute of Blue Biotechnology and Development (IBYDA), Ecology department, Faculty of Sciences, Campus universitario de Teatinos s/n, Malaga, Spain

2. Botany department, Federal University of Santa Catarina. Campus Trindade s/n, Florianópolis, SC, Brazil

3. Laboratory of Coastal Environmental Research, Center of Advances Studies. University of Playa Ancha. Traslaviña, Viña del Mar, Chile

4. Hub Ambiental UPLA, Vicerrectoría de Investigación, Postgrado e Innovación, Universidad de Playa Ancha, Valparaíso, Chile

5. Botany and Plant Science, School of Natural Sciences, Ryan Institute for Environmental, Marine and Energy Research, National University of Ireland Galway, Galway, Ireland

6. CIIMAR - Interdisciplinary Centre of Marine and Environmental Research, University of Porto, Rua dos Bragas, Porto, Portugal

7. CNRS, GEPEA, UMR6144, Boulevard de l’Université, CRTT BP, Saint Nazaire Cedex, France

8. Univ Brest, CNRS, IRD, Ifremer, Lemar, Plouzane, France

9. ALGAplus Ltd – R&D Department, Rua António Castilho Angeja, Portugal

10. Centro IFAPA Agua del Pino, Crtra. El Rómpido – Punta Umbría, Cartaya (Huelva), Spain

11. Department of Botany, University of São Paulo, Rua do Matão, São Paulo, SP, Brazil

12. Centro de Bioinnovación Antofagasta (CBIA), Faculty of Marine Sciences and Biological Resources, Antofagasta University, Antofagasta, Chile

13. Heinz Walz GmbH Eichenring 6 - 91090 Effeltrich, Germany

14. CIVESTAV-IPN, Unidad Mérida Km6 Antigua Carretera a Progreso Apartado Postal Cordemex, Mérida, Yucatán, México

Abstract

Abstract Short-term effects of pCO2 (700–380 ppm; High carbon (HC) and Low carbon (LC), respectively) and nitrate content (50–5 µM; High nitrogen (HN) and Low nitrogen (LN), respectively on photosynthesis were investigated in Ulva rigida (Chlorophyta) under solar radiation (in-situ) and in the laboratory under artificial light (ex-situ). After six days of incubation at ambient temperature (AT), algae were subjected to a 4 °C temperature increase (AT+4 °C) for 3 d. Both in-situ and ex-situ maximal electron transport rate (ETRmax) and in situ gross photosynthesis (GP), measured by O2 evolution, presented highest values under HCHN, and lowest under HCLN, across all measuring systems. Maximal quantum yield (Fv/Fm), and ETRmax of photosystem (PS) II [ETR(II)max] and PSI [ETR(I)max], decreased under HCLN at AT+4 °C. Ex situ ETR was higher than in situ ETR. At noon, Fv/Fm decreased (indicating photoinhibition), whereas ETR(II)max and maximal non-photochemical quenching (NPQmax) increased. ETR(II)max decreased under AT+ 4 °C in contrast to Fv/Fm, photosynthetic efficiency (α ETR) and saturated irradiance (EK). Thus, U. rigida exhibited a decrease in photosynthesis under acidification, changing LN, and AT+4 °C. These results emphasize the importance of studying the interaction between environmental parameters using in-situ versus ex-situ conditions, when aiming to evaluate the impact of global change on marine macroalgae.

Funder

University of Malaga

Ministry of Economy and Competitivity of Spanish Government

Junta de Andalucía and Spanish Institute of Oceanography

Marine Institute

Marine Research Sub-program of the National (Irish) Development Plan

The Salty Gold

SIA Foundation

FAPESP

São Paulo Research Foundation

Concurso Nacional Inserción de Capital Humano avanzado en la Academia

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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