Aquatic Angiosperm Transplantation: A Tool for Environmental Management and Restoring in Transitional Water Systems

Since the 1960s, the Venice Lagoon has suffered a sharp aquatic plant constriction due to eutrophication, pollution, and clam fishing. Those anthropogenic impacts began to decline during the 2010s, and since then the ecological status of the lagoon has improved, but in many choked areas no plant rec...

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Published inWater (Basel) Vol. 11; no. 10; p. 2135
Main Authors Sfriso, Adriano, Buosi, Alessandro, Tomio, Yari, Juhmani, Abdul-Salam, Facca, Chiara, Sfriso, Andrea Augusto, Franzoi, Piero, Scapin, Luca, Bonometto, Andrea, Ponis, Emanuele, Rampazzo, Federico, Berto, Daniela, Gion, Claudia, Oselladore, Federica, Cacciatore, Federica, Boscolo Brusà, Rossella
Format Journal Article
LanguageEnglish
Published Basel MDPI AG 01.10.2019
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Abstract Since the 1960s, the Venice Lagoon has suffered a sharp aquatic plant constriction due to eutrophication, pollution, and clam fishing. Those anthropogenic impacts began to decline during the 2010s, and since then the ecological status of the lagoon has improved, but in many choked areas no plant recolonization has been recorded due to the lack of seeds. The project funded by the European Union (LIFE12 NAT/IT/000331-SeResto) allowed to recolonize one of these areas, which is situated in the northern lagoon, by widespread transplantation of small sods and individual rhizomes. In-field activities were supported by fishermen, hunters, and sport associations; the interested surface measured approximately 36.6 km2. In the 35 stations of the chosen area, 24,261 rhizomes were transplanted during the first year, accounting for 693 rhizomes per station. About 37% of them took root in 31 stations forming several patches that joined together to form extensive meadows. Plant rooting was successful where the waters were clear and the trophic status low. But, near the outflows of freshwater rich in nutrients and suspended particulate matter, the action failed. Results demonstrate the effectiveness of small, widespread interventions and the importance of engaging the population in the recovery of the environment, which makes the action economically cheap and replicable in other similar environments.
AbstractList Since the 1960s, the Venice Lagoon has suffered a sharp aquatic plant constriction due to eutrophication, pollution, and clam fishing. Those anthropogenic impacts began to decline during the 2010s, and since then the ecological status of the lagoon has improved, but in many choked areas no plant recolonization has been recorded due to the lack of seeds. The project funded by the European Union (LIFE12 NAT/IT/000331-SeResto) allowed to recolonize one of these areas, which is situated in the northern lagoon, by widespread transplantation of small sods and individual rhizomes. In-field activities were supported by fishermen, hunters, and sport associations; the interested surface measured approximately 36.6 km2. In the 35 stations of the chosen area, 24,261 rhizomes were transplanted during the first year, accounting for 693 rhizomes per station. About 37% of them took root in 31 stations forming several patches that joined together to form extensive meadows. Plant rooting was successful where the waters were clear and the trophic status low. But, near the outflows of freshwater rich in nutrients and suspended particulate matter, the action failed. Results demonstrate the effectiveness of small, widespread interventions and the importance of engaging the population in the recovery of the environment, which makes the action economically cheap and replicable in other similar environments.
Since the 1960s, the Venice Lagoon has suffered a sharp aquatic plant constriction due to eutrophication, pollution, and clam fishing. Those anthropogenic impacts began to decline during the 2010s, and since then the ecological status of the lagoon has improved, but in many choked areas no plant recolonization has been recorded due to the lack of seeds. The project funded by the European Union (LIFE12 NAT/IT/000331-SeResto) allowed to recolonize one of these areas, which is situated in the northern lagoon, by widespread transplantation of small sods and individual rhizomes. In-field activities were supported by fishermen, hunters, and sport associations; the interested surface measured approximately 36.6 km[sup.2] . In the 35 stations of the chosen area, 24,261 rhizomes were transplanted during the first year, accounting for 693 rhizomes per station. About 37% of them took root in 31 stations forming several patches that joined together to form extensive meadows. Plant rooting was successful where the waters were clear and the trophic status low. But, near the outflows of freshwater rich in nutrients and suspended particulate matter, the action failed. Results demonstrate the effectiveness of small, widespread interventions and the importance of engaging the population in the recovery of the environment, which makes the action economically cheap and replicable in other similar environments.
Audience Academic
Author Bonometto, Andrea
Oselladore, Federica
Gion, Claudia
Facca, Chiara
Franzoi, Piero
Buosi, Alessandro
Sfriso, Andrea Augusto
Sfriso, Adriano
Rampazzo, Federico
Scapin, Luca
Juhmani, Abdul-Salam
Cacciatore, Federica
Berto, Daniela
Boscolo Brusà, Rossella
Ponis, Emanuele
Tomio, Yari
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Snippet Since the 1960s, the Venice Lagoon has suffered a sharp aquatic plant constriction due to eutrophication, pollution, and clam fishing. Those anthropogenic...
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StartPage 2135
SubjectTerms Algae
Angiosperms
Anthropogenic factors
aquatic angiosperms
Aquatic plants
Ecological restoration
ecological status
Environmental aspects
Environmental management
Environmental protection
environmental restoration
Eutrophication
Human influences
Lagoons
Meadows
Methods
Morphology
Nutrients
Particulate matter
Principal components analysis
Recolonization
Rhizomes
Rivers
Rooting
Sedimentation & deposition
Sediments
Seeds
transitional waters
Transplantation
Trophic levels
Trophic status
venice lagoon
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Title Aquatic Angiosperm Transplantation: A Tool for Environmental Management and Restoring in Transitional Water Systems
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https://doaj.org/article/f078b5edd06a45e7ae69188a7a216c7a
Volume 11
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