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The blowfy Chrysomya latifrons inhabits fragmented rainforests, but shows no population structure

  • Nathan J Butterworth
  • , James F Wallman
  • , Nikolas P Johnston
  • , Blake M Dawson
  • , Joshua Sharp-Heward
  • , Angela McGaughran

Research output: Contribution to journalArticlepeer-review

11 Citations (Scopus)

Abstract

Climate change and deforestation are causing rainforests to become increasingly fragmented, placing them at heightened risk of biodiversity loss. Invertebrates constitute the greatest proportion of this biodiversity, yet we lack basic knowledge of their population structure and ecology. There is a compelling need to develop our understanding of the population dynamics of a wide range of rainforest invertebrates so that we can begin to understand how rainforest fragments are connected, and how they will cope with future habitat fragmentation and climate change. Blowfies are an ideal candidate for such research because they are widespread, abundant, and can be easily collected within rainforests. We genotyped 188 blowfies (Chrysomya latifrons) from 15 isolated rainforests and found high levels of gene fow, a lack of genetic structure between rainforests, and low genetic diversity – suggesting the presence of a single large genetically depauperate population. This highlights that: (1) the blowfy Ch. latifrons inhabits a~1000 km stretch of Australian rainforests, where it plays an important role as a nutrient recycler" (2) strongly dispersing fies can migrate between and connect isolated rainforests, likely carrying pollen, parasites, phoronts, and pathogens along with them" and (3) widely dispersing and abundant insects can nevertheless be genetically depauperate. There is an urgent need to better understand the relationships between habitat fragmentation, genetic diversity, and adaptive potential–especially for poorly dispersing rainforest-restricted insects, as many of these may be particularly fragmented and at highest risk of local extinction.

Original languageEnglish
Pages (from-to)703-719
JournalOecologia
Volume201
Issue number3
Early online date11 Feb 2023
DOIs
Publication statusPublished - 31 Mar 2023

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

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