Mechanisms controlling haemolymph circulation under resting conditions in the Chagas disease vector Rhodnius prolixus

Author:

Villalobos Sambucaro María José12,Alzugaray María Eugenia12ORCID,Ronderos Jorge Rafael1ORCID

Affiliation:

1. Cátedra de Histología y Embriología Animal, Facultad de Ciencias Naturales y Museo, Universidad Nacional de La Plata 1 , 1900 La Plata, Buenos Aires , Argentina

2. CONICET 2 , Godoy Cruz 2290, CABA , Argentina

Abstract

ABSTRACT Chagas disease vectors can ingest several times their own volume in blood with each meal. This ad libitum feeding causes an intense process of diuresis, inducing the insect to eliminate a large quantity of urine and faeces. To ensure diuresis, the speed of circulation of the haemolymph is increased. The Triatominae circulatory system is quite simple, including the dorsal vessel, which pumps haemolymph in an anterograde direction. The return is caused by peristaltic contractions of the anterior midgut. Triatominae insects can spend several weeks without feeding, meaning that most of the time, the insect is in a resting condition. Although the mechanisms controlling the circulation of the haemolymph during post-prandial diuresis have been largely analysed, the mechanisms controlling it during resting conditions are poorly understood. In this study, we analysed several canonical pathways (i.e. L-type VGCC, GPCR, RyR, IP3R) and a novel system represented by the recently characterized Piezo proteins. Our results show that during the resting condition, haemolymph circulation depends on a cross-talk between myogenic activity, inhibitory and stimulatory cellular messengers, and Piezo proteins. This report also unveils for the first time the existence of a putative Piezo protein in Hemiptera.

Funder

Universidad Nacional de La Plata

FONCyT

CONICET

Publisher

The Company of Biologists

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