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Kelp gametophytes in changing oceans

  • Reina Veenhof
  • , Curtis Champion
  • , Symon A Dworjanyn
  • , Thomas Wernberg
  • , Antoine Minne
  • , Cayne Layton
  • , John Bolton
  • , Daniel Reed
  • , Melinda Coleman

Producción científica: Chapter (peer-reviewed)revisión exhaustiva

46 Citas (Scopus)

Resumen

Kelp forests are ecologically diverse habitats that provide vast ecosystem goods and services, but are threatened by climate and anthropogenic stressors. Laminarian kelps have an alternating biphasic life cycle, and while there is a growing understanding of climate impacts on the macroscopic diploid sporophyte, impacts on the microscopic haploid gametophyte stage are just emerging. There exists a strong history of gametophyte literature on single species and environmental factors, but only recently studies have increasingly examined multiple climate stressors, species and populations. We synthesize studies on kelp gametophytes, building upon our understanding of their responses to environmental conditions and subsequent vulnerabil-ity in changing oceans. Kelp gametophytes have a broad tolerance to environmental conditions predicted to change with climate change, including temperature and irradiance, but large variation exists among species and populations. Key processes such as gametogenesis and early sporophyte development consistently appear more sensitive to environmental conditions than vegetative growth and may present bottlenecks to ongoing kelp persistence. Indirect effects of climate change negatively affect kelp gametophytes through competition, grazing and sedimentation. Modern genomic techniques are paving the way to transition research into field settings that include both sporophyte and gametophyte stages. Unravelling the response of gametophytes to changing environmental conditions is beginning to provide an understanding of overall kelp forest persistence and enables proactive conservation and management initiatives in changing oceans
Idioma originalEnglish
Título de la publicación alojadaOceanography and Marine Biology
Páginas335-372
Número de páginas37
DOI
EstadoPublished - 1 jun 2022

Serie de la publicación

NombreOceanography and Marine Biology -Annual Review
EditorialTaylor and Francis Ltd.
ISSN (versión impresa)0078-3218

ODS de las Naciones Unidas

Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

  1. Climate action
    Climate action
  2. Life below water
    Life below water
  3. Life on land
    Life on land

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