Breaking the Law: Is It Correct to Use the Converse Bergmann Rule in Ceroglossus chilensis? An Overview Using Geometric Morphometrics

Author:

Benítez Hugo A.12ORCID,Muñoz-Ramírez Carlos3,Correa Margarita1ORCID,Acuña-Rodríguez Ian S.4,Villalobos-Leiva Amado15,Contador Tamara6789ORCID,Velásquez Nelson A.10ORCID,Suazo Manuel J.11ORCID

Affiliation:

1. Centro de Investigación de Estudios Avanzados del Maule, Instituto Milenio Biodiversidad de Ecosistemas Antárticos y Subantárticos (BASE), Universidad Católica del Maule, Talca 3466706, Chile

2. Centro de Investigación en Recursos Naturales y Sustentabilidad (CIRENYS), Universidad Bernardo O’Higgins, Avenida Viel 1497, Santiago 8370993, Chile

3. Instituto de Entomología, Universidad Metropolitana de Ciencias de la Educación, Santiago 7760197, Chile

4. Centro de Ecología Integrativa (CEI), Instituto de Investigaciones Interdisciplinarias (I3), Universidad de Talca, Campus Lircay, Talca 3465548, Chile

5. Departamento de Zoología, Facultad de Ciencias Naturales y Oceanográficas, Universidad de Concepción, Concepción 4070386, Chile

6. Cape Horn International Center (CHIC), Puerto Williams 6350000, Chile

7. Millennium Nucleus of Austral Invasive Salmonids (INVASAL), Concepción 4030000, Chile

8. Sub-Antarctic Biocultural Conservation Program, Wankara Laboratory, Universidad de Magallanes, Punta Arenas 6200000, Chile

9. Millennium Institute Biodiversity of Antarctic and Subantarctic Ecosystems (BASE), Santiago 8330015, Chile

10. Laboratorio de Comunicación Animal, Facultad de Ciencias Básicas, Universidad Católica del Maule, San Miguel 3605, Talca 3466706, Chile

11. Instituto de Alta Investigación, Universidad de Tarapacá, Casilla 7D, Arica 1000000, Chile

Abstract

The converse Bergmann’s rule is a pattern of body size variation observed in many ectothermic organisms that contradicts the classic Bergmann’s rule and suggests that individuals inhabiting warmer climates tend to exhibit larger body sizes compared to those inhabiting colder environments. Due to the thermoregulatory nature of Bergmann’s rule, its application among ectotherms might prove to be more complicated, given that these organisms obtain heat by absorbing it from their habitat. The existence of this inverse pattern therefore challenges the prevailing notion that larger body size is universally advantageous in colder climates. Ceroglossus chilensis is a native Chilean beetle that has the largest latitudinal range of any species in the genus, from 34.3° S to 47.8° S. Within Chile, it continuously inhabits regions extending from Maule to Aysen, thriving on both native and non-native forest species. Beyond their remarkable color variation, populations of C. chilensis show minimal morphological disparity, noticeable only through advanced morphological techniques (geometric morphometrics). Based on both (1) the “temperature–size rule”, which suggests that body size decreases with increasing temperature, and (2) the reduced resource availability in high-latitude environments that may lead to smaller body sizes, we predict that C. chilensis populations will follow the converse Bergmann’s rule. Our results show a clear converse pattern to the normal Bergmann rule, where smaller centroid sizes were found to be measured in the specimens inhabiting the southern areas of Chile. Understanding the prevalence of the converse Bergmann’s rule for ectotherm animals and how often this rule is broken is of utmost importance to understand the underlying mechanisms allowing organisms to adapt to different environments and the selective pressures they face.

Funder

Chile’s National Fund

Millennium Science Initiative Program

FONDECYT

UCM-IN-21209

Publisher

MDPI AG

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