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Light-Harvesting in Mesophotic Corals is Powered by a Spatially Efficient Photosymbiotic System between Coral Host and Microalgae

48 Pages Posted: 24 Nov 2020 Publication Status: Review Complete

See all articles by Netanel Kramer

Netanel Kramer

Tel Aviv University - School of Zoology

Raz Tamir

Tel Aviv University - School of Zoology

Or Ben-Zvi

Tel Aviv University - School of Zoology

Steven L. Jacques

University of Washington

Yossi Loya

Tel Aviv University - School of Zoology

Daniel Wangpraseurt

University of California, San Diego (UCSD) - Department of Nanoengineering

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Abstract

The coral-algal photosymbiosis fuels global coral-reef primary productivity, extending from sea level to as deep as 150 m (i.e., mesophotic). Currently, it is largely unknown how such mesophotic reefs thrive despite extremely limited light conditions. Here, we show that corals exhibit a plastic response to mesophotic conditions that involves a spatially optimized regulation of the bio-optical properties by coral host and symbiont. In contrast to shallow corals, mesophotic corals absorbed up to three-fold more light, resulting in excellent photosynthetic response under light conditions of only ~3% of the incident surface irradiance. The enhanced light harvesting capacity of mesophotic corals is regulated by average refractive index fluctuations in the coral skeleton that give rise to optical scattering and facilitate light transport and absorption by densely pigmented host tissue. The results of this study provide fundamental insight into the energy efficiency and light-harvesting mechanisms underlying the productivity of mesophotic coral reef ecosystems, yet also raise concerns regarding their ability to withstand prolonged environmental disturbances.

Suggested Citation

Kramer, Netanel and Tamir, Raz and Ben-Zvi, Or and Jacques, Steven L. and Loya, Yossi and Wangpraseurt, Daniel, Light-Harvesting in Mesophotic Corals is Powered by a Spatially Efficient Photosymbiotic System between Coral Host and Microalgae. Available at SSRN: https://ssrn.com/abstract=3736399 or http://dx.doi.org/10.2139/ssrn.3736399
This version of the paper has not been formally peer reviewed.

Netanel Kramer (Contact Author)

Tel Aviv University - School of Zoology

Israel

Raz Tamir

Tel Aviv University - School of Zoology

Israel

Or Ben-Zvi

Tel Aviv University - School of Zoology ( email )

Israel

Steven L. Jacques

University of Washington ( email )

Seattle, WA 98195
United States

Yossi Loya

Tel Aviv University - School of Zoology ( email )

Israel

Daniel Wangpraseurt

University of California, San Diego (UCSD) - Department of Nanoengineering ( email )

9500 Gilman Drive
Mail Code 0502
La Jolla, CA 92093-0112
United States

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