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S File

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Evolutionary relationships and biogeography of Biomphalaria (Gastropoda: Planorbidae) with implications regarding its role as host of the human bloodfluke, Schistosoma mansoni.

The wide geographic distribution of Schistosoma mansoni, a digenetic trematode and parasite of humans, is determined by the occurrence of its intermediate hosts, freshwater snails of the genus Biomphalaria (Preston 1910). We present phylogenetic analyses of 23 species of Biomphalaria, 16 Neotropical and seven African, including the most important schistosome hosts, using partial mitochondrial ribosomal 16S and complete nuclear ribosomal ITS1 and ITS2 nucleotide sequences. A dramatically better resolution was obtained by combining the data sets as opposed to analyzing each separately, indicating that there is additive congruent signal in each data set. Neotropical species are basal, and all African species are derived, suggesting an American origin for the genus. We confirm that a proto-Biomphalaria glabrata gave rise to all African species through a trans-Atlantic colonization of Africa. In addition, genetic distances among African species are smaller compared with those among Neotropical species, indicating a more recent origin. There are two species-rich clades, one African with B. glabrata as its base, and the other Neotropical. Within the African clade, a wide-ranging tropical savannah species, B. pfeifferi, and a Nilotic species complex, have both colonized Rift Valley lakes and produced endemic lacustrine forms. Within the Neotropical clade, two newly acquired natural hosts for S. mansoni (B. straminea and B. tenagophila) are not the closest relatives of each other, suggesting two separate acquisition events. Basal to these two species-rich clades are several Neotropical lineages with large genetic distances between them, indicating multiple lineages within the genus. Interesting patterns occur regarding schistosome susceptibility: (1) the most susceptible hosts belong to a single clade, comprising B. glabrata and the African species, (2) several susceptible Neotropical species are sister groups to apparently refractory species, and (3) some basal lineages are susceptible. These patterns suggest the existence of both inherent susceptibility and resistance, but also underscore the ability of S. mansoni to adapt to and acquire previously unsusceptible species as hosts. Biomphalaria schrammi appears to be distantly related to other Biomphalaria as well as to Helisoma, and may represent a separate or intermediate lineage.

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Small ampullate glands of Nephila clavipes.

The small ampullate glands of the orb-web spider, Nephila clavipes, have been studied and compared to other of the silk producing glands from this organism. They exhibit the same gross morphological features of the other glands. Electrophoretic analyses show that the gland's luminal contents migrate as a single band, while the contents of the secretory epithelium reveal a step-ladder array of peptides in addition to the full size product. Previous studies from our laboratory identified these peptides as products generated by translational pauses. This alternate mode of translation is typical of fibroin synthesis in all the spider glands thus far studied as well as in those of the silkworm. The correlation of the peptides to the process of fibroin synthesis is shown through experimental evidence in this paper. The gradual ultrastructural changes in Golgi vesicles elicited by the fibroin synthesis stimulus can be seen in this paper. The response to stimulation is of a higher magnitude in these glands than in any of those previously analyzed. These studies show the small ampullate glands are a promising and certainly exploitable model system for studies on the synthesis of tissue-specific protein product and its control. J. Exp. Zool. 286:114-119, 2000.

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Regeneration of the enteric nervous system in the sea cucumber Holothuria glaberrima.

Among higher metazoans, echinoderms exhibit the most impressive capacity for regeneration. Holothurians, or sea cucumbers, respond to adverse stimuli by autotomizing and ejecting their visceral organs, which are then regenerated. Neuronal fibers and cell bodies are present within the viscera, but previous regeneration studies have not accounted for the nervous component. We used light microscopic immunocytochemistry and ultrastructural studies to describe the regeneration of the enteric nervous system in the sea cucumber Holothuria glaberrima. This study provides evidence that the enteric nervous system of this echinoderm regenerates after evisceration and that in 3-5 weeks the regenerated system is virtually identical to that of noneviscerated animals. The regeneration of the enteric nervous system occurs parallel to the regeneration of other organ components. Nerve fibers and cells are observed within the mesenterial thickenings that give rise to the new intestine and within the internal connective tissue prior to lumen formation. We also used bromodeoxyuridine incorporation to show that proliferation of the neuronal population occurs in the regenerating intestine. The regeneration of the nervous system commands high interest because members of the closely related phylum Chordata either lack or have a very limited capacity to regenerate their nervous system. Thus, holothurians provide a model system to study enteric nervous system regeneration in deuterostomes.

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Short report: A case of ectopic schistosomiasis in Puerto Rico with some observations on the biology of the parasite.

A recently acquired Schistosoma mansoni infection that resulted in a cervical polyp containing a pair of adult worms is reported in a Puerto Rican woman. Active schistosome transmission is not commonly reported in Puerto Rico at the present time and the ectopic location of the worms is rare in very light infections. Observations on the biology of the parasite recovered from the patient are described.

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Interaction of schistosome eggs with vascular endothelium.

The interaction of schistosome eggs with venular endothelium was studied using primary cultures of human umbilical vein endothelial cells. Freshly oviposited and embryonated eggs of Schistosoma mansoni, Schistosoma japonicum, and Schistosoma haematobium were used. The cultures were evaluated by light, scanning, and transmission electron microscopy. Endothelial cell monolayers were found to retain eggs by actively migrating over those that came to lie on top of them. The monolayers then reestablished confluency and their lumenal polarity. Eggs deposited directly by adult worms elicited a more rapid and complete response than embryonated eggs isolated from the liver tissues of infected rodents or latex beads. Cell migration was shown to be more complete in the presence of sera than in serum-free media. It is concluded from these observations that eggs can be passively transferred to the perivenular space by the nonspecific response of endothelial cells.

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Tupaiataenia quentini gen. et sp. n. (anoplocephalidae: linstowiinae) and other tapeworms from the common tree shrew, Tupaia glis.

Three species of cestodes recovered from tree shrews, Tupaia glis, were identified as Sparganum sp., Hymenolepis diminuta, and Tupaiataenia quentini gen. et sp. n. The new genus is differentiated from Mathevotaenia, Markewitchitaenia and Atriotaenia by being craspedote, possessing a large seminal receptacle, the presence of a hermaphroditic canal leading into the genital atrium, and by having two opposable, muscular lappets on the anterior margin of each sucker.

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