Salta al contingut principal

Why Birds with Deferred Sexual Maturity Are Sedentary on Islands: A Systematic Review

ABSTRAD

Background

Island faunas have played central roles in the development of evolutionary biology and ecology. Birds are among the most studied organisms on islands, in part because of their dispersal powers linked to migration. Even so, we lack of information about differences in the movement ecology of island versus mainland populations of birds.

Methodology/Principal Findings

Here we present a new general pattern indicating that large birds with deferred sexual maturity are sedentary on islands, and that they become so even when they are migratory on the mainland. Density-dependent variation in the age at first breeding affects the survivorship of insular populations and this, in turn, affects the movement ecology of large birds. Because density-dependent variation in the age of first breeding is critical to the long-term survival of small isolated populations of long-lived species, migratory forms can successfully colonize islands only if they become sedentary once there. Analyses of the movement ecology of continental and insular populations of 314 species of raptors, 113 species of Ciconiiformes and 136 species of passerines, along with individual-based population simulations confirm this prediction.

Conclusions

This finding has several consequences for speciation, colonization and survival of small isolated population of species with deferred sexual maturity.

Comentaris

Entrades populars d'aquest blog

An analysis of habitat distribution and associations in theOdonata of theBalearic Islands, Spain

 Spatial structure of the odon. community is analysed. The different abundance of the spp. and their most characteristic habitats in the islands are indicated. The reproduction of 19 spp. on the Balearic Islands is confirmed. Coenagrion scitulum is recorded for the first time from the archipelago. The associations of spp. existing on each of the islands were established by meansof factoranalysis (correspondence analysis); a total of9 associations are defined. This study has been made on larvae exclusively. Sympetrum striolatum is the most abundant sp. in the Balearic Islands. Previous records are discussed. García-Aviles, J,   Puig, M.A,  Soler, A.G. & Ferreras-Romero, M. (1995)  Odonalologica 24(3)

Sobre las ginetas de la isla de Ibiza (Genetta genetta isabelae n.ssp.)

Las Ginetas de Ibiza habían sido consideradas hasta ahora como G. g. balearica. El estudio de 50 cráneos y 38 pieles (Cuadro 1) permite, sin embargo, caracterizarlas como una nueva subespecie, Genetta genetta isabelae n. ssp., debido fundamentalmente a su pequeño tamaño. Se consideran caracteres con valor diagnóstico LCB (longitud cóndilo-basal) ≤85 mm. LM (longitud de la mandíbula) ≤60 mm. LPm⁴ (longitud de la carnicera superior) ≤8mm. M² (segundo molar superior) muy reducido. Las manchas del pelaje son negras o marrones oscuras con abundantes pelos de color rojizo leonado. El dimorfismo sexual es poco marcado (Fig. 3). Las medidas de G. g. isabelae (Cuadros 2 y 3) difieren significativamente de las restantes poblaciones del oeste de Europa y norte de África. Estas muestran por su parte una variación clinal de tamaño, desde Francia, donde son más pequeñas, al norte de África donde son más mayores, a través de la Península Ibérica y Mallorca (Cuadros 4 y 5; Fig. 4, 5, 6 y 7). Las Ginet...

Not so naïve: Ibiza wall lizards acquired the ability to recognize alien snakes in a few years

Alien predators may impose a great threat to naïve preys. Podarcis pityusensis lizards live in Ibiza, a snake-free island until 2003. We studied lizards’ discrimination of scents of two invader snakes: one that predates on lizards, Hemorrhois hippocrepis, and another that does not, Rhinechis scalaris. We compared two populations of P. pityusensis: one from the main island of Ibiza, which coexists with both snakes, and another from the close snake-free islet of Sal Rossa. Lizards from Ibiza recognized the scent of H. hippocrepis and responded with clear antipredator behaviours. However, they reacted to the scent of R. scalaris similarly than to the odorless and the pungent controls. Lizards from Sal Rossa did not recognize any snake species. Thus, lizards can rapidly acquire the ability to react to a totally novel type of predator. There are two possible explanations: (1) rapid evolution of antipredator behavior, and (2) the ability of lizards to learn how to avoid new predators. There ...