Article

Exploring South African Pacific oyster mariculture potential through combined Earth observation and bioenergetics modelling

Details

Citation

Krupandan AG, Gernez P, Palmer S, Thomas Y & Barillé L (2022) Exploring South African Pacific oyster mariculture potential through combined Earth observation and bioenergetics modelling. Aquaculture Reports, 24, Art. No.: 101155. https://doi.org/10.1016/j.aqrep.2022.101155

Abstract
The combined use of satellite-derived environmental data and a dynamic energy budget (DEB) model to determine Pacific oyster growth potential was adapted for the South African marine environment. Study areas consisted of the West Coast (high-chlorophyll, low temperature) and the South Coast (variable chlorophyll, higher temperature) ecoregions. Chlorophyll-a and sea surface temperature products from the Moderate Resolution Imaging Spectroradiometer (MODIS) were used to simulate yearly growth for 18 years. Average growth performance at the end of the culture period was mapped and compared for prominent sectors. Industry-relevant growth indicators, “days to reach commercial weight” and “optimal culture period length” were also established. High growth potential was found in eastern nearshore sectors of the South Coast, particularly Plettenberg Bay, where oysters reached a median total weight (TW) of 271 g within 9 months. Other sectors in the region yielded Large commercial size within 150 days. However, South Coast growth hotspots were found to be highly variable, with transient unfavourable growth conditions leading to low flesh mass relative to TW. Growth potential was favourable in northern sectors of the West Coast, where oysters reached a median TW of up to 148 g in 9 months, Large commercial size within 200 days, and contained high flesh mass relative to TW. Current oyster production sites were not found to be optimal for growth. Higher-growth sites coincide with areas in economic decline or with high levels of poverty. However, due to constraints of applying DEB models over large spatial scales, these results are considered preliminary and await in situ verification, as well as a spatial multi-criteria analysis, before investment and development.

Keywords
Crassostrea gigas; Dynamic Energy Budget model; Earth observation; Marine Spatial Planning; Site selection; South African aquaculture

Journal
Aquaculture Reports: Volume 24

StatusPublished
FundersEuropean Commission (Horizon 2020)
Publication date30/06/2022
Publication date online09/05/2022
Date accepted by journal30/04/2022
URLhttp://hdl.handle.net/1893/36311
PublisherElsevier BV
ISSN2352-5134

People (1)

Miss Amalia Krupandan

Miss Amalia Krupandan

PhD Researcher, Institute of Aquaculture

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