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Genetic divergence predicts reproductive isolation in damselflies
R A Sánchez-Guillén1,2, A Córdoba-Aguilar1, A Cordero-Rivera2
1Departamento de Ecología Evolutiva, Instituto de Ecología, Universidad Nacional Autónoma de México (UNAM), Mexico D.F, Mexico.
Journal of Evolutionary Biology
|November 7, 2013
Summary
Reproductive isolation and genetic divergence are strongly correlated in damselflies, supporting a key species concept prediction. Hybridization thresholds were identified, with hybrids found in wild Ischnura populations.
Area of Science:
- Evolutionary Biology
- Genetics
- Zoology
Background:
- Reproductive isolation defines biological species.
- A predicted positive correlation between reproductive isolation and genetic divergence is often untested.
- Odonates (dragonflies and damselflies) exhibit strong sexual selection.
Purpose of the Study:
- To test the correlation between reproductive isolation and genetic divergence in damselflies.
- To estimate genetic thresholds for hybrid formation and test them in wild populations.
Main Methods:
- Measured reproductive isolation and genetic divergence in 30 damselfly species pairs across eight genera.
- Estimated genetic thresholds using mitochondrial (cytochrome oxidase II) and nuclear (18S-28S) genes.
- Empirically tested thresholds using wild Ischnura damselfly populations.
Main Results:
- A strong positive correlation was found between reproductive isolation and genetic distance (COII: r=0.781; 18S-28S: r=0.658).
- Hybridization thresholds were estimated for COII (-0.43 to 1.78%) and 18S-28S (-0.052 to 0.71%).
- F1 hybrids and backcrosses were detected in wild Ischnura species with overlapping genetic thresholds.
Conclusions:
- Positive isolation-divergence relationships are widespread across taxa.
- Genetic thresholds can identify species susceptible to hybridization.
- Findings support the link between genetic divergence and speciation in damselflies.
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