Coralline photosynthetic physiology across a steep light gradient
- PMID: 35092556
- DOI: 10.1007/s11120-022-00899-7
Coralline photosynthetic physiology across a steep light gradient
Abstract
Coralline algae (CA) are globally distributed and fulfil many important roles within coastal ecosystems. In this study, photosynthetically active radiation (PAR) measured for 616 days at 2 and 10 m in a temperate subtidal kelp forest in southern New Zealand provided context to photosynthesis vs. irradiance relationships for, and pigment concentrations of, an articulated coralline alga, Arthrocardia sp. and a crustose coralline species assemblage within the Hapalidiales order. The maximum photosynthetic rate Pmax of the Arthrocardia sp. (20.38 ± 2.38 µmol O2. gDW-1 h-1) was significantly higher than the Pmax of crustose coralline spp. (3.72 ± 0.74 µmol O2. gDW-1 h-1) at the same 2 m stratum. Pigment concentration of Arthrocardia sp. was significantly higher than that of crustose coralline spp. at the same depth, while pigment concentration of crustose coralline spp. at 2 and 10 m were not significantly affected by depth. The photosynthetic characteristics of these coralline algae represent a shade acclimated organism with low saturation irradiance (all Ek < 100 µmol photons m-2 s-1). Despite sevenfold difference in average daily dose between 2 and 10 m there was no significant effect of depth on the photosynthetic performance of crustose coralline algae measured. The lack of evidence for acclimation to low light could be because periods of clear water provide enough light to maintain photosynthesis, lower energetic requirements of species found at depth or constraints on the synthesis of photosynthetic pigments at greater depth.
Keywords: Coralline algae; Depth; Light dose; Photosynthesis vs. irradiance; Pigment.
© 2022. The Author(s), under exclusive licence to Springer Nature B.V.
References
-
- Arnold KE, Murray SN (1980) Relationships between irradiance and photosynthesis for marine benthic green algae (Chlorophyta) of differing morphologies. J Exp Mar Bio Ecol 43:183–192. https://doi.org/10.1016/0022-0981(80)90025-8 - DOI
-
- Blain CO, Shears NT (2019) Seasonal and spatial variation in photosynthetic response of the kelp Ecklonia radiata across a turbidity gradient. Photosynth Res. https://doi.org/10.1007/s11120-019-00636-7 - DOI - PubMed
-
- Borlongan IA, Nishihara GN, Shimada S, Terada R (2017a) Photosynthetic performance of the red alga Solieria pacifica (Solieriaceae) from two different depths in the sublittoral waters of Kagoshima. Japan J Appl Phycol. https://doi.org/10.1007/s10811-017-1209-0 - DOI
-
- Borlongan IAG, Gerung GS, Nishihara GN, Terada R (2017b) Light and temperature effects on photosynthetic activity of Eucheuma denticulatum and Kappaphycus alvarezii (brown and green color morphotypes) from Sulawesi Utara, Indonesia. Phycol Res 65:69–79. https://doi.org/10.1111/pre.12155 - DOI
-
- Cole KM, Sheath RG (1990) Biology of the red algae. Cambridge University Press, USA
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