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Ian M Traniello

Explore the profile of Ian M Traniello including associated specialties, affiliations and a list of published articles. Areas
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Articles 17
Citations 139
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Recent Articles
1.
Traniello I, Kocher S
Curr Opin Insect Sci . 2024 Sep; 66:101259. PMID: 39244088
The past decade of social insect research has seen rapid development in automated behavioral tracking and molecular profiling of the nervous system, two distinct but complementary lines of inquiry into...
2.
Wolf S, Ruttenberg D, Knapp D, Webb A, Traniello I, McKenzie-Smith G, et al.
Methods Ecol Evol . 2024 Apr; 14(10):2541-2548. PMID: 38681746
1. Significant advances in computational ethology have allowed the quantification of behaviour in unprecedented detail. Tracking animals in social groups, however, remains challenging as most existing methods can either capture...
3.
Omufwoko K, Cronin A, Nguyen T, Webb A, Traniello I, Kocher S
Mol Ecol . 2023 Dec; :e17244. PMID: 38108560
Natural variation can provide important insights into the genetic and environmental factors that shape social behaviour and its evolution. The sweat bee, Lasioglossum baleicum, is a socially flexible bee capable...
4.
Omufwoko K, Cronin A, Nguyen T, Webb A, Traniello I, Kocher S
bioRxiv . 2023 Aug; PMID: 37645955
Natural variation can provide important insights into the genetic and environmental factors that shape social behavior and its evolution. The sweat bee, , is a socially flexible bee capable of...
5.
Traniello I, Bukhari S, Dibaeinia P, Serrano G, Avalos A, Ahmed A, et al.
Nat Ecol Evol . 2023 Jun; 7(8):1232-1244. PMID: 37264201
Understanding how genotypic variation results in phenotypic variation is especially difficult for collective behaviour because group phenotypes arise from complex interactions among group members. A genome-wide association study identified hundreds...
6.
Jones B, Rubin B, Dudchenko O, Kingwell C, Traniello I, Wang Z, et al.
Nat Ecol Evol . 2023 Mar; 7(4):557-569. PMID: 36941345
Sweat bees have repeatedly gained and lost eusociality, a transition from individual to group reproduction. Here we generate chromosome-length genome assemblies for 17 species and identify genomic signatures of evolutionary...
7.
Peng J, Serrano G, Traniello I, Calleja-Cervantes M, Chembazhi U, Bangru S, et al.
Commun Biol . 2022 Apr; 5(1):351. PMID: 35414121
Single-cell RNA-Sequencing has the potential to provide deep biological insights by revealing complex regulatory interactions across diverse cell phenotypes at single-cell resolution. However, current single-cell gene regulatory network inference methods...
8.
Traniello I, Hamilton A, Gernat T, Cash-Ahmed A, Harwood G, Ray A, et al.
J Exp Biol . 2022 Feb; 225(6). PMID: 35202460
Adverse social experience affects social structure by modifying the behavior of individuals, but the relationship between an individual's behavioral state and its response to adversity is poorly understood. We leveraged...
9.
Avalos A, Traniello I, Perez Claudio E, Giray T
J Exp Biol . 2021 Sep; 224(19). PMID: 34515309
Visual learning is vital to the behavioral ecology of the Western honey bee (Apis mellifera). Honey bee workers forage for floral resources, a behavior that requires the learning and long-term...
10.
Traniello I, Robinson G
Annu Rev Neurosci . 2021 Jul; 44:109-128. PMID: 34236891
Animals operate in complex environments, and salient social information is encoded in the nervous system and then processed to initiate adaptive behavior. This encoding involves biological embedding, the process by...