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Journal Article

Disturbance and nutrients synchronise kelp forests across scales through interacting Moran effects

Max C. N. Castorani; Tom W. Bell; Jonathan A. Walter; Daniel C. Reuman; Kyle C. Cavanaugh; Lawrence W. Sheppard
Ecology Letters · Vol. 25, Issue 8 · pp. 1854-1868 · 2022

Abstract

Spatial synchrony is a ubiquitous and important feature of population dynamics, but many aspects of this phenomenon are not well understood. In particular, it is largely unknown how multiple environmental drivers interact to determine synchrony via Moran effects, and how these impacts vary across spatial and temporal scales. Using new wavelet statistical techniques, we characterised synchrony in populations of giant kelp Macrocystis pyrifera , a widely distributed marine foundation species, and related synchrony to variation in oceanographic conditions across 33 years (1987–2019) and >900 km of coastline in California, USA. We discovered that disturbance (storm‐driven waves) and resources (seawater nutrients)—underpinned by climatic variability—act individually and interactively to produce synchrony in giant kelp across geography and timescales. Our findings demonstrate that understanding and predicting synchrony, and thus the regional stability of populations, relies on resolving the synergistic and antagonistic Moran effects of multiple environmental drivers acting on different timescales.

Bibliographic Information

JournalEcology Letters
PublisherWiley
Publication Date2022-08-01
Publication Year2022
Volume25
Issue8
Pages1854-1868
Document TypeJournal Article
Print ISSN1461-023X
eISSN1461-0248
DOI10.1111/ele.14066
SubjectEcology & Organismal Biology

Access Information

NARA Access Coverage1998-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/14610248
Publisher PageOpen Publisher Page
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