Literature DB >> 31808195

Genetic and morphological diversity of mouse lemurs (Microcebus spp.) in northern Madagascar: The discovery of a putative new species?

Gabriele Maria Sgarlata1, Jordi Salmona1,2, Barbara Le Pors1, Emmanuel Rasolondraibe3, Fabien Jan1, Tantely Ralantoharijaona3, Ando Rakotonanahary3, Jacquis Randriamaroson3, Adam Joseph Marques1, Isa Aleixo-Pais1,4,5, Tiago de Zoeten1, Dhurham Said Ali Ousseni3, Simon Benjamin Knoop1, Helena Teixeira1,6, Vivien Gabillaud1, Alex Miller1,7, Mohamed Thani Ibouroi3,8,9, Solofonirina Rasoloharijaona3, John Rigobert Zaonarivelo8, Nicole Volasoa Andriaholinirina3, Lounès Chikhi1,2.   

Abstract

Tropical forests harbor extremely high levels of biological diversity and are quickly disappearing. Despite the increasingly recognized high rate of habitat loss, it is expected that new species will be discovered as more effort is put to document tropical biodiversity. Exploring under-studied regions is particularly urgent if we consider the rapid changes in habitat due to anthropogenic activities. Madagascar is known for its extraordinary biological diversity and endemicity. It is also threatened by habitat loss and fragmentation. It holds more than 100 endemic primate species (lemurs). Among these, Microcebus (mouse lemurs) is one of the more diverse genera. We sampled mouse lemurs from several sites across northern Madagascar, including forests never sampled before. We obtained morphological data from 99 Microcebus individuals; we extracted DNA from tissue samples of 42 individuals and amplified two mitochondrial loci (cytb and cox2) commonly used for species identification. Our findings update the distribution of three species (Microcebus tavaratra, Microcebus arnholdi, and Microcebus mamiratra), including a major increase in the distribution area of M. arnholdi. We also report the discovery of a new Microcebus lineage genetically related to M. arnholdi. Several complementary approaches suggest that the newly identified Microcebus lineage might correspond to a new putative species, to be confirmed or rejected with additional data. In addition, morphological analyses showed (a) clear phenotypic differences between M. tavaratra and M. arnholdi, but no clear differences between the new Microcebus lineage and the sister species M. arnholdi; and (b) a significant correlation between climatic variables and morphology, suggesting a possible relationship between species identity, morphology, and environment. By integrating morphological, climatic, genetic, and spatial data of two northern Microcebus species, we show that the spatial distribution of forest-dwelling species may be used as a proxy to reconstruct the past spatial changes in forest cover and vegetation type.
© 2019 Wiley Periodicals, Inc.

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Keywords:  connectivity; cryptic species; phylogeny; species delimitation; sympatry

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Year:  2019        PMID: 31808195     DOI: 10.1002/ajp.23070

Source DB:  PubMed          Journal:  Am J Primatol        ISSN: 0275-2565            Impact factor:   2.371


  2 in total

1.  RADseq Data Suggest Occasional Hybridization between Microcebus murinus and M. ravelobensis in Northwestern Madagascar.

Authors:  Helena Teixeira; Tobias van Elst; Malcolm S Ramsay; Romule Rakotondravony; Jordi Salmona; Anne D Yoder; Ute Radespiel
Journal:  Genes (Basel)       Date:  2022-05-19       Impact factor: 4.141

2.  Past environmental changes affected lemur population dynamics prior to human impact in Madagascar.

Authors:  Helena Teixeira; Vincent Montade; Jordi Salmona; Julia Metzger; Laurent Bremond; Thomas Kasper; Gerhard Daut; Sylvie Rouland; Sandratrinirainy Ranarilalatiana; Romule Rakotondravony; Lounès Chikhi; Hermann Behling; Ute Radespiel
Journal:  Commun Biol       Date:  2021-09-15
  2 in total

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