TY - JOUR
T1 - Genetic basis of triatomine behavior: lessons from available insect genomes
AU - Latorre-Estivalis, Jose Manuel
AU - Lazzari, Claudio Ricardo
AU - Guarneri, Alessandra Aparecida
AU - Mota, Theo
AU - Bonaventure Omondi, Aman
AU - Lorenzo, Marcelo Gustavo
PY - 2013
Y1 - 2013
N2 - Triatomines have been important model organisms for behavioural research. Diverse reports about triatomine host search, pheromone communication in the sexual, shelter and alarm contexts, daily cycles of activity, refuge choice and behavioural plasticity have been published in the last two decades. In recent times, a variety of molecular genetics techniques has allowed researchers to investigate elaborate and complex questions about the genetic bases of the physiology of insects. This, together with the current characterisation of the genome sequence of Rhodnius prolixus allows the resurgence of this excellent insect physiology model in the omics era. In the present revision, we suggest that studying the molecular basis of behaviour and sensory ecology in triatomines will promote a deeper understanding of fundamental aspects of insect and, particularly, vector biology. This will allow uncovering unknown features of essential insect physiology questions for a hemimetabolous model organism, promoting more robust comparative studies of insect sensory function and cognition.
AB - Triatomines have been important model organisms for behavioural research. Diverse reports about triatomine host search, pheromone communication in the sexual, shelter and alarm contexts, daily cycles of activity, refuge choice and behavioural plasticity have been published in the last two decades. In recent times, a variety of molecular genetics techniques has allowed researchers to investigate elaborate and complex questions about the genetic bases of the physiology of insects. This, together with the current characterisation of the genome sequence of Rhodnius prolixus allows the resurgence of this excellent insect physiology model in the omics era. In the present revision, we suggest that studying the molecular basis of behaviour and sensory ecology in triatomines will promote a deeper understanding of fundamental aspects of insect and, particularly, vector biology. This will allow uncovering unknown features of essential insect physiology questions for a hemimetabolous model organism, promoting more robust comparative studies of insect sensory function and cognition.
KW - behaviour
KW - sensory physiology
KW - olfaction
KW - genes
KW - triatomines
KW - behaviour
KW - sensory physiology
KW - olfaction
KW - genes
KW - triatomines
UR - https://res.slu.se/id/publ/55294
U2 - 10.1590/0074-0276130454
DO - 10.1590/0074-0276130454
M3 - Journal article
C2 - 24473804
SN - 0074-0276
VL - 108
SP - 63
EP - 73
JO - Memorias do Instituto Oswaldo Cruz
JF - Memorias do Instituto Oswaldo Cruz
ER -