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L’obésité chez l’adulte : ligne directrice de pratique clinique.

Author(s): Wharton S, Lau DCW, Vallis M, Sharma AM, Biertho L, Campbell-Scherer D, Adamo K, Alberga A, Bell R, Boulé N, Boyling E, Brown J, Calam B, Cl...

CMAJ. 2020 Dec 07; 192(49):E1757-E1775 Authors: Wharton S, Lau DCW, Vallis M, Sharma AM, Biertho L, Campbell-Scherer D, Adamo K, Alberga A, Bell R, Boulé N, Boyling E, Brown J, Calam B, Clarke C, C...

Article GUID: 33288515

Obesity in adults: a clinical practice guideline.

Author(s): Wharton S, Lau DCW, Vallis M, Sharma AM, Biertho L, Campbell-Scherer D, Adamo K, Alberga A, Bell R, Boulé N, Boyling E, Brown J, Calam B, Cl...

CMAJ. 2020 Aug 04;192(31):E875-E891 Authors: Wharton S, Lau DCW, Vallis M, Sharma AM, Biertho L, Campbell-Scherer D, Adamo K, Alberga A, Bell R, Boulé N, Boyling E, Brown J, Calam B, Clarke C...

Article GUID: 32753461

Size reductions and genomic changes within two generations in wild walleye populations: associated with harvest?

Author(s): Bowles E, Marin K, Mogensen S, MacLeod P, Fraser DJ

Evol Appl. 2020 Jul;13(6):1128-1144 Authors: Bowles E, Marin K, Mogensen S, MacLeod P, Fraser DJ

Article GUID: 32684951

Origin and evolution of the genus Piper in Peninsular India.

Author(s): Sen S, Dayanandan S, Davis T, Ganesan R, Jagadish MR, Mathew PJ, Ravikanth G

Origin and evolution of the genus Piper in Peninsular India.

Mol Phylogenet Evol. 2019 May 25;138:102-113

Authors: Sen S, Dayanandan S, Davis T, Ganesan R, Jagadish MR, Mathew PJ, Ravikanth G

Abstract
The evolution of Peni...

Article GUID: 31132521


Title:Origin and evolution of the genus Piper in Peninsular India.
Authors:Sen SDayanandan SDavis TGanesan RJagadish MRMathew PJRavikanth G
Link:www.ncbi.nlm.nih.gov/pubmed/31132521?dopt=Abstract
Category:Mol Phylogenet Evol
PMID:31132521
Dept Affiliation: GENOMICS
1 Suri Sehgal Center for Biodiversity and Conservation, Ashoka Trust for Research in Ecology and the Environment (ATREE), Bangalore, India; Manipal Academy of Higher Education, Manipal, Karnataka, India; Department of Biology and Center for Structural and Functional Genomics, Concordia University, Sherbrooke Street West, Montreal, Quebec H4B1R6, Canada; Quebec Center for Biodiversity Science, 1205 Dr. Penfield Avenue, Montreal, Quebec H3A1B1, Canada. Electronic address: sandeep.sen@atree.org.
2 Department of Biology and Center for Structural and Functional Genomics, Concordia University, Sherbrooke Street West, Montreal, Quebec H4B1R6, Canada; Quebec Center for Biodiversity Science, 1205 Dr. Penfield Avenue, Montreal, Quebec H3A1B1, Canada.
3 Jawaharlal Nehru Tropical Botanical Garden and Research Institute (JNTBGRI), Trivandrum, India.
4 Suri Sehgal Center for Biodiversity and Conservation, Ashoka Trust for Research in Ecology and the Environment (ATREE), Bangalore, India.

Description:

Origin and evolution of the genus Piper in Peninsular India.



Mol Phylogenet Evol. 2019 May 25;138:102-113



Authors: Sen S, Dayanandan S, Davis T, Ganesan R, Jagadish MR, Mathew PJ, Ravikanth G



Abstract

The evolution of Peninsular Indian biodiversity has been a fascinating topic of research due to historical connections of this region to the ancient Gondwanaland. We investigated the phylogeny and historical biogeography of nearly all extant species of the genus Piper reported from the region to assess the biogeographical origins and test mechanisms of lineage diversification (dispersal, vicariance and in situ radiation) of this highly diverse genus of angiosperms commonly found in the understory of evergreen forests. The phylogeny of 21 species of Piper reported from Peninsular India was reconstructed for the first time, which included three new putative species from the Western Ghats. We used BEAST for the divergence time estimations (using three constraints), and ancestral range estimations were performed with the dated phylogenetic tree using BIOGEOBEARS. Divergence dating analysis revealed that the genus Piper originated during lower Cretaceous around 110?Ma [95% highest posterior density (HPD): 116-105?Ma] and colonized Peninsular India five times independently, from Southeast Asia starting from the Oligocene. The two major dispersals into India occurred during the periods of 27.3?Ma (95% HPD: 35.8-19.9.) and 15.5?Ma (95% HPD: 24.9-7.11). This was followed by rapid radiations in some lineages with subsequent back dispersals to Southeast Asia. Our study indicates that dispersals from Southeast Asia led to the arrival of Piper to Indian subcontinent following the Indo-Eurasian collision. Members of Piper have colonized and diversified within the climatically stable habitats of Peninsular India. Furthermore, the present study provides evidence for the Miocene overland dispersal of Piper species to Africa from South Asia.



PMID: 31132521 [PubMed - as supplied by publisher]