Assessment of the recovery and photosynthetic efficiency ofBreviolum psygmophilumandEffrenium voratum(Symbiodiniaceae) following cryopreservation

Author:

Kihika Joseph K.12,Wood Susanna A.2,Rhodes Lesley2,Smith Kirsty F.23,Butler Juliette2,Ryan Ken G.1

Affiliation:

1. Department of Biological Sciences, Victoria University of Wellington, Wellington, New Zealand

2. Cawthron Institute, Nelson, New Zealand

3. Department of Biological Sciences, University of Auckland, Auckland, New Zealand

Abstract

Many strains of Symbiodiniaceae have been isolated and their genetics, taxonomy, and metabolite production studied. Maintaining these cultures requires careful and regular sub-culturing that is costly with a high risk of species contamination or loss. Cryopreservation is a viable alternative for their long-term storage; however, there is uncertainty as to whether cryopreservation impacts the photosynthetic performance of Symbiodiniaceae. We investigated the growth rates and photosynthetic efficiency of two species,Breviolum psygmophilumandEffrenium voratumbefore and after cryopreservation. Rapid light curves (RLCs) produced using Pulse Amplitude Modulated (PAM) fluorometry were used to generate detailed information on the characteristics of photosystem II (PSII). The maximum electron transport rate (ETRmax) and the quantum yield (Fv/Fm) of the control (non-cryopreserved) and cryopreserved culture isolates were assessed across the growth cycle. The non-cryopreserved isolate ofB. psygmophilumhad a higher quantum yield than the cryopreserved isolate from day 12 to day 24, whereas there were no differences from day 28 to the late stationary phase. There were no significant differences in ETRmax. No significant differences were observed in quantum yield or ETRmax between the control and cryopreservedE.voratumisolates. The ability of cryopreserved strains to recover and regain their photosynthetic efficiency after freezing demonstrates the utility of this method for the long-term storage of these and other Symbiodiniaceae species.

Funder

New Zealand Ministry of Business, Innovation and Employment

Cawthron Institute Internal Capability Investment Fund

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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