4.5 Article

Unraveling the importance of functionally extreme tadpole types to functional diversity: a case study in temperate montane streams

Journal

FRONTIERS IN ZOOLOGY
Volume 20, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s12983-023-00485-0

Keywords

Amphibian; Functional vulnerability; Ecomorphological traits; Functionally extreme species; Microhabitat variables

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Functional diversity is crucial for ecosystem functioning, and species with different ecomorphological traits play distinct functional roles. The distribution patterns of functionally extreme species at a local scale and the effects of their prior extinction on functional diversity are poorly understood. This study found that extreme functional entities accounted for a small proportion of tadpole species but played irreplaceable roles in maintaining functional diversity, and their extinction could lead to high functional vulnerability in tadpole communities. Microhabitat variables determined the distribution of extreme species.
BackgroundFunctional diversity is important to maintain ecosystem functioning. Species with different ecomorphological traits may display distinct functional roles in ecosystems. Accordingly, functionally extreme species are more important as they can exhibit specific strategies. However, little is known about the distribution patterns of functionally extreme species at a local scale and whether the prior extinction of extreme species can cause significant effects on functional diversity. In addition, no empirical studies have been conducted on the microhabitat determinants of extreme species to maintain the functional diversity.ResultsThis study collected 1470 tadpoles belonging to 6 families and 20 anuran species. These species were subsequently divided into 65 functional entities based on their developmental stages to incorporate intraspecific traits variability. As a result, we detected seven extreme functional entities, accounting for 10.7% of the total number of entities. Moreover, the prior extinction of extreme entities can lead to a significant decrease in functional diversity compared with the random extinction of entities. Microhabitat variables such as conductivity, water depth, and current velocity determined the distribution of extreme entities.ConclusionAlthough the functionally extreme entities only represented a small proportion of the total number of tadpoles, they played irreplaceable roles in maintaining functional diversity. Their extinction may induce high functional vulnerability in tadpole communities. Therefore, anuran species with extreme tadpole traits need to be projected for amphibian conservation.

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