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.

Journal of Anatomy
|May 22, 2015
PubMed

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.

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