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Published on: October 22, 2017
Structure and vascularization of the ventricular myocardium in Holocephali: their evolutionary significance
Ana C Durán1,2, Miguel A López-Unzu1, Cristina Rodríguez1
1Department of Animal Biology, Faculty of Science, University of Málaga, Málaga, Spain.
Insights
The primitive vertebrate heart ventricle likely had mixed myocardium, not spongy. This study reveals extensive coronary arteries in some fish lacking compact myocardium, supporting a mixed primitive condition in jawed vertebrates (gnathostomes).
Area of Science:
- Comparative Vertebrate Anatomy
- Cardiovascular Physiology
- Evolutionary Biology
Background:
- Traditional view: primitive vertebrate heart ventricle was spongy myocardium with poor oxygen supply.
- Previous assumption: mixed ventricular myocardium (compacta and spongiosa) with coronary arteries evolved multiple times in fish.
- Emerging hypothesis: fully vascularized, mixed myocardium may be the primitive condition in gnathostomes.
Purpose of the Study:
- To investigate the ventricular myocardium structure and coronary vascularization in four holocephalan species.
- To clarify the evolutionary origins of ventricular myocardium composition and coronary supply in vertebrates.
- To test the hypothesis that mixed ventricular myocardium is the primitive condition in gnathostomes.
Main Methods:
- Anatomical examination of heart ventricles in four holocephalan species: Chimaera monstrosa, Harriotta raleighana, Hydrolagus affinis, and Rhinochimaera atlantica.
- Detailed observation of ventricular myocardium composition (compacta and spongiosa).
- Analysis of the coronary artery system's presence, distribution, and supply to myocardial tissues.
Main Results:
- Chimaera monstrosa and Harriotta raleighana exhibit a thin compacta overlying a broad spongiosa, with a well-developed coronary artery system.
- Hydrolagus affinis possesses exclusively spongy myocardium but features an extensive coronary artery system irrigating the entire ventricle.
- Rhinochimaera atlantica has only spongy myocardium supplied by luminal blood, with non-penetrating coronary vessels in the subepicardium.
Conclusions:
- The presence of extensive coronary arteries in Hydrolagus affinis, despite lacking significant compact myocardium, supports distinct developmental programs for myocardial growth and vascularization.
- Findings suggest that mixed ventricular myocardium is primitive for chondrichthyans, with reduced or absent compacta being a derived trait in holocephali.
- The study supports the hypothesis that mixed ventricular myocardium was the primitive condition in gnathostomes, with its absence in actinopterygians resulting from repeated evolutionary loss.
Abstract:
It was generally assumed that the ventricle of the primitive vertebrate heart was composed of trabeculated, or spongy, myocardium, supplied by oxygen-poor luminal blood. In addition, it was presumed that the mixed ventricular myocardium, consisting of a compacta and a spongiosa, and its supply through coronary arteries appeared several times throughout fish evolution. Recent work has suggested, however, that a fully vascularized, mixed myocardium may be the primitive condition in gnathostomes. The present study of the heart ventricles of four holocephalan species aimed to clarify this controversy. Our observations showed that the ventricular myocardium of Chimaera monstrosa and Harriotta raleighana consists of a very thin compacta overlying a widespread spongiosa. The ventricle of Hydrolagus affinis is composed exclusively of trabeculated myocardium. In these three species there is a well-developed coronary artery system. The main coronary artery trunks run along the outflow tract, giving off subepicardial ventricular arteries. The trabeculae of the spongiosa are irrigated by branches of the subepicardial arteries and by penetrating arterial vessels arising directly from the main coronary trunks at the level of the conoventricular junction. The ventricle of Rhinochimaera atlantica has only spongy myocardium supplied by luminal blood. Small coronary arterial vessels are present in the subepicardium, but they do not enter the myocardial trabeculae. The present findings show for the first time that in a wild living vertebrate species, specifically H. affinis, an extensive coronary artery system supplying the whole cardiac ventricle exists in the absence of a well-developed compact ventricular myocardium. This is consistent with the notion derived from experimental work that myocardial cell proliferation and coronary vascular growth rely on distinct developmental programs. Our observations, together with data in the literature on elasmobranchs, support the view that the mixed ventricular myocardium is primitive for chondrichthyans. The reduction or even lack of compacta in holocephali has to be regarded as a derived anatomical trait. Our findings also fit in with the view that the mixed myocardium was the primitive condition in gnathostomes, and that the absence of compact ventricular myocardium in different actinopterygian groups is the result of a repeated loss of such type of cardiac muscle during fish evolution.
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