The structure and function of a muscle are intimately related. Information about the cellular and sub-cellular levels of organization can be used to estimate the force, speed of contraction, speed of relaxation, and other parameters of muscular performance. Similarly, data that describe a muscle's performance can be used as indicators of its morphology. Although the value of these concepts as tools to elucidate the details of muscle mechanics has been generally recognized, they have been applied almost exclusively to one narrow class of muscles, namely vertebrate striated muscle types, particularly invertebrate smooth muscle, has been virtually untested. This project's aim, therefore, is to quantitatively describe the structure and function of invertebrate smooth muscle and test the generality of striated muscle performance parameters. This information will then be applied to address the underlying assumptions of muscle mechanics. The model system chosen for this study is the gastropod pedal muscle, which provides a diversity of morphologies and contractilities. The flexible, fleshy foot of a gastropod is a solid muscle mass in which bundles of muscle fibers are interwoven into an integrated whole. While the morphology of the individual muscle fibers resembles vertebrate smooth muscle, the connections between fibers and the mechanics of their contractions more closely resemble vertebrate cardiac muscle. Using an integrative functional morphological approach, a hierarchy of morphological observations and measurements ranging from changes in shape and volume of moving feet to dimensions of thick and thin filaments will be combined with an analysis of each muscle's performance. This information will be used to test whether the morphological correlates of function traditionally applied to vertebrate striated muscle are indeed generalizable to other muscle types. In addition, it will serve as a foundation for comparative studies of invertebrate and vertebrate muscle systems.
Ramírez-Camejo, Luis A; Maldonado-Morales, Génesis; Bayman, Paul (2017) Differential Microbial Diversity in Drosophila melanogaster: Are Fruit Flies Potential Vectors of Opportunistic Pathogens? Int J Microbiol 2017:8526385 |
Morales-Rivera, Keyla F; Piñero Cruz, Dalice M; Prieto, Jose A (2017) Crystal structure of (-)-(S)-4-[(2S,3S,4S,Z)-3-hydroxy-4-methyl-hept-5-en-2-yl]-1,3-dioxolan-2-one. Acta Crystallogr E Crystallogr Commun 73:1070-1072 |
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Huang, Qing; Quiñones, Edwin (2016) A spectroscopic method to determine the activity of the restriction endonuclease EcoRV that involves a single reaction. Anal Biochem 497:103-5 |
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Ramírez-Camejo, Luis A; Torres-Ocampo, Ana P; Agosto-Rivera, José L et al. (2014) An opportunistic human pathogen on the fly: strains of Aspergillus flavus vary in virulence in Drosophila melanogaster. Med Mycol 52:211-9 |
Pantoja-Feliciano, Ida Gisela; Clemente, Jose C; Costello, Elizabeth K et al. (2013) Biphasic assembly of the murine intestinal microbiota during early development. ISME J 7:1112-5 |
Martínez-Rivera, Arlene; Rodríguez-Borrero, Enrique; Matías-Alemán, María et al. (2013) Metabotropic glutamate receptor 5 within nucleus accumbens shell modulates environment-elicited cocaine conditioning expression. Pharmacol Biochem Behav 110:154-60 |
Galindo-Cardona, Alberto; Acevedo-Gonzalez, Jenny P; Rivera-Marchand, Bert et al. (2013) Genetic structure of the gentle Africanized honey bee population (gAHB) in Puerto Rico. BMC Genet 14:65 |
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