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Research Articles

Restoring the seagrass Zostera muelleri with transplants: small cores are as effective as larger plots

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Pages 467-479 | Received 08 Nov 2021, Accepted 15 Mar 2022, Published online: 31 Mar 2022
 

ABSTRACT

Seagrass extent has declined globally, including in New Zealand. Following the success of an initial trial to transplant and re-establish intertidal seagrass at a former site in Whangarei Harbour, a second trial was initiated. This trial aimed to restore seagrass at a more distant former site and tested the efficacy of transplant units ranging in size from small cores (5 or 9 × 0.01 m diameter cores placed within a 0.25 m2 plot) to larger entire plots (0.25 m2 or 0.5 m2). Seagrass was transplanted in winter when plants were dormant. Plant cover of transplanted and donor plots and light climate at both sites were monitored over a period of four years. All but one of the 24 units survived, and the plants began to spread after 12–18 months to eventually develop patches ranging in size from 5 to 68 m2. Seagrass recolonised all donor plots completely within 10 months. Results show that small cores and larger plots can both be used successfully to transplant and restore populations of Zostera muelleri with no long-lasting damage to donor meadows. However, use of small cores is recommended to minimise extractions and loss of transplanted material, and to simplify logistics.

Acknowledgements

Aarti Wadhwa kindly provided the location map. We dedicate this work to the late Dr John Quinn, NIWA’s Chief Scientist for Freshwater and Estuaries, who led NIWA’s Aquatic Rehabilitation Research Programme from 2005 to 2016. Okioki i roto i te rangimarie (rest in peace) John.

Disclosure statement

No potential conflict of interest was reported by the author(s).

Additional information

Funding

This work was funded by the New Zealand Ministry for Business, Innovation and Employment through the Aquatic Rehabilitation Research Programme (C01X1002) and a Strategic Science Investment Programme on Managing Mud (FWCE2203).

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