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331.
Several lines of evidence have been found which suggest that a partial depolarization is an important event in the development of postjunctional (nondeviation) supersensitivity in the vas deferens and atrium. In the vas deferens of the guinea pig, experiments with microelectrodes indicate that a depolarization of approximately 10 mV occurs after denervation or decentralization. The time course of the depolarization is the same as the time course of the development of supersensitivity found 7 days after denervation in the rat vas deferens. An analysis of the magnitude of junction potentials in the vas deferens supports the conclusion that changes in adrenergic receptors are not a significant factor in postjunctional supersensitivity. An analysis of membrane potential in guinea pig atria demonstrates a high correlation between the appearance of supersensitivity and a partial depolarization in that tissue alsomit is suggested that chronic interruption of the innervation to smooth or cardiac muscle leads to an alteration in the binding of calcium to the cell membrane and a consequent depolarization. The result is a resting membrane potential closer to the threshold for excitation. 相似文献
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Summary Enterochromaffin cells of adult mouse duodenum were studied with light- and electron-microscopical techniques. They were distinguished from other enteroendocrine cells by their pleomorphic, electron-dense secretory granules in the basal cytoplasm. At the apices of enterochromaffin cells, tufts of short microvilli bordered the gut lumen. At their bases, irregular cytoplasmic extensions were either in contact with or passed through the basal lamina. The presence of cytoplasmic extensions in close proximity to fenestrated capillaries and subepithelial nerves suggested an endocrine or paracrine function. Electron micrographs of serial thin sections were used to reconstruct an enterochromaffin cell from the crypt epithelium in three dimensions and to determine its relationship with the underlying neural plexus. Although extensions from the serially sectioned and reconstructed cell and other enterochromaffin cells studied in crypt epithelia protruded through the basal lamina, no synaptic contacts were seen. Evidence of a synaptic contact between a neurite and another type of enteroendocrine cell (possibly an intestinal A cell), suggested a neurocrine role for some of the basally-granulated cells. Possible functions of enterochromaffin cells are discussed in the light of recent literature on the system of enteroendocrine cells, also known as APUD (amine precursor uptake and decarboxylation) cells and/or paraneurons. 相似文献
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Jake Goodall Kristen Marie Westfall Hildur Magnúsdttir Snbjrn Plsson Erla Bjrk
rnlfsdttir Zophonías O. Jnsson 《Ecology and evolution》2021,11(6):2616
Buccinum undatum is a subtidal gastropod that exhibits clear spatial variation in several phenotypic shell traits (color, shape, and thickness) across its North Atlantic distribution. Studies of spatial phenotypic variation exist for the species; however, population genetic studies have thus far relied on a limited set of mitochondrial and microsatellite markers. Here, we greatly expand on previous work by characterizing population genetic structure in B. undatum across the North Atlantic from SNP variation obtained by RAD sequencing. There was a high degree of genetic differentiation between Canadian and European populations (Iceland, Faroe Islands, and England) consistent with the divergence of populations in allopatry (F ST > 0.57 for all pairwise comparisons). In addition, B. undatum populations within Iceland, the Faroe Islands, and England are typified by weak but significant genetic structuring following an isolation‐by‐distance model. Finally, we established a significant correlation between genetic structuring in Iceland and two phenotypic traits: shell shape and color frequency. The works detailed here enhance our understanding of genetic structuring in B. undatum and establish the species as an intriguing model for future genome‐wide association studies. 相似文献