Annual Life History–Dependent Gene Expression in the Hypothalamus and Liver of a Migratory Songbird

2014 ◽  
Vol 29 (5) ◽  
pp. 332-345 ◽  
Author(s):  
Amit K. Trivedi ◽  
Jayant Kumar ◽  
Sangeeta Rani ◽  
Vinod Kumar
2015 ◽  
Vol 29 (10) ◽  
pp. 4248-4255 ◽  
Author(s):  
Devraj Singh ◽  
Amit Kumar Trivedi ◽  
Sangeeta Rani ◽  
Satchidananda Panda ◽  
Vinod Kumar

2018 ◽  
Author(s):  
Jacob W. Malcom ◽  
Thomas E. Juenger ◽  
Mathew A. Leibold

ABSTRACTBackgroundIdentifying the molecular basis of heritable variation provides insight into the underlying mechanisms generating phenotypic variation and the evolutionary history of organismal traits. Life history trait variation is of central importance to ecological and evolutionary dynamics, and contemporary genomic tools permit studies of the basis of this variation in non-genetic model organisms. We used high density genotyping, RNA-Seq gene expression assays, and detailed phenotyping of fourteen ecologically important life history traits in a wild-caught panel of 32Daphnia pulexclones to explore the molecular basis of trait variation in a model ecological species.ResultsWe found extensive phenotypic and a range of heritable genetic variation (~0 < H2< 0.44) in the panel, and accordingly identify 75-261 genes—organized in 3-6 coexpression modules—associated with genetic variation in each trait. The trait-related coexpression modules possess well-supported promoter motifs, and in conjunction with marker variation at trans- loci, suggest a relatively small number of important expression regulators. We further identify a candidate genetic network with SNPs in eight known transcriptional regulators, and dozens of differentially expressed genes, associated with life history variation. The gene-trait associations include numerous un-annotated genes, but also support several a priori hypotheses, including an ecdysone-induced protein and several Gene Ontology pathways.ConclusionThe genetic and gene expression architecture ofDaphnialife history traits is complex, and our results provide numerous candidate loci, genes, and coexpression modules to be tested as the molecular mechanisms that underlieDaphniaeco-evolutionary dynamics.


2014 ◽  
Vol 33 (2) ◽  
pp. 412-420 ◽  
Author(s):  
A.E. Elaine van Ommen Kloeke ◽  
Ping Gong ◽  
Jacintha Ellers ◽  
Dick Roelofs

2010 ◽  
Vol 143 (1) ◽  
pp. 248-254 ◽  
Author(s):  
Marieke M. van Katwijk ◽  
Arthur R. Bos ◽  
Peer Kennis ◽  
Rob de Vries

Sociobiology ◽  
2017 ◽  
Vol 64 (4) ◽  
pp. 393
Author(s):  
Yuki Yamaguchi ◽  
Hiromi Yazawa ◽  
Satoru Iwanishi ◽  
Kazuyuki Kudô

The annual life history is a basic and important factor in ecological studies on temperate ant species. The biology of Ponerinae species has been studied for many species, but little attention has been paid to their life history. Cryptopone sauteri is one of the most common ants in temperate regions of Japan. However, there is no quantitative information on the life history of this species. We report seasonal changes in brood development, the emergence of reproductives and social structures of C. sauteri. Additionally, we discuss that this species possibly exhibits a polydomous nesting system.


Cell ◽  
2014 ◽  
Vol 156 (4) ◽  
pp. 759-770 ◽  
Author(s):  
Emma Watson ◽  
Lesley T. MacNeil ◽  
Ashlyn D. Ritter ◽  
L. Safak Yilmaz ◽  
Adam P. Rosebrock ◽  
...  

PeerJ ◽  
2016 ◽  
Vol 4 ◽  
pp. e2333 ◽  
Author(s):  
Jian-Cheng Wang ◽  
Bo-Rong Pan ◽  
Dirk C. Albach

Perennials and annuals apply different strategies to adapt to the adverse environment, based on ‘tolerance’ and ‘avoidance’, respectively. To understand lifespan evolution and its impact on plant adaptability, we carried out a comparative study of perennials and annuals in the genusVeronicafrom a phylogenetic perspective. The results showed that ancestors of the genusVeronicawere likely to be perennial plants. Annual life history ofVeronicahas evolved multiple times and subtrees with more annual species have a higher substitution rate. Annuals can adapt to more xeric habitats than perennials. This indicates that annuals are more drought-resistant than their perennial relatives. Due to adaptation to similar selective pressures, parallel evolution occurs in morphological characters among annual species ofVeronica.


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