Changes in the growth, metabolism, disease levels and energy budget of the American oyster, Crassostrea virginica induced by an ectoparasitic gastropod, Boonea impressa.

Bibliographic Details
Main Author: White, Marie Elinor
Other Authors: Brooks, James M. (degree committee member.), Ray, Sammy M. (degree committee member.), Sweet, Merrill H. (degree committee member.), Wormuth, John H. (degree committee member.)
Format: Thesis Book
Language:English
Published: 1986.
Subjects:
Online Access:Link to ProQuest copy
Link to OAKTrust copy

MARC

Tag First Indicator Second Indicator Subfields
LEADER 00000ctm a2200000Ia 4500
001 in00000015886
005 20220104090823.0
008 880520s1986 xx a bm 000 0 eng d
035 |9 AAA8567AM 
035 |a (OCoLC)17979325 
035 |a (OCoLC)ocm17979325 
040 |a TXA  |b eng  |c TXA  |d OCLCQ  |d OCLCO  |d TXA 
049 |a TXAM 
099 |a 1986  |a Dissertation  |a W586 
100 1 |a White, Marie Elinor. 
245 1 0 |a Changes in the growth, metabolism, disease levels and energy budget of the American oyster, Crassostrea virginica induced by an ectoparasitic gastropod, Boonea impressa. 
260 |c 1986. 
300 |a xiii, 100 leaves :  |b illustrations ;  |c 29 cm 
336 |a text  |b txt  |2 rdacontent 
337 |a unmediated  |b n  |2 rdamedia 
338 |a volume  |b nc  |2 rdacarrier 
500 |a Typescript (photocopy). 
500 |a Vita. 
502 |b Ph. D. in Oceanography  |c Texas A & M University  |d 1986 
504 |a Includes bibliographical references (leaves 86-93). 
520 3 |a The ectoparasitic gastropod, Boonea impressa, altered the biochemical composition, energy balance, growth and the incidence and intensity of disease in the American oyster, Crassostrea virginica. B. impressa transferred the protozoan parasite Perkinsus marinus to uninfected oysters. Feeding by B. impressa also resulted in the intensification of P. marinus infections in diseased oysters. Oysters parasitized by B. impressa gained significantly less weight than control oysters. Snail parasitism produced 75% mortality in small oysters parasitized by 25 snails. Laboratory results corroborated those predicted by an energy model developed to examine changes in the scope for growth (assimilation - respiration) of parasitized oysters. The model predicted that scope for growth would be reduced by 75% when large oysters (7 cm) were parasitized by 30 large snails (6 mm). A negative energy balance would exist when small oysters (3 cm) were parasitized by 15 large snails. On a typical oyster reef as much as 10-15% of the available energy for growth and reproduction may be diverted to Boonea impressa. Few metabolic changes were observed in small or large oysters when parasitized by low levels of parasites (10). At high levels of parasitism (25 and 30 parasites), all tissues in both large and small oysters demonstrated considerable metabolic alteration. Carbohydrate content decreased in small oysters and increased in large oysters. Lipid content increased in the mantle tissue of large oysters. The free amino acid (FAA) pool generally increased with parasitism examined because of increasing taurine concentrations. When taurine and hypotaurine were removed, the FAA pool decreased or remained stable. In all tissues examined, the presence of B. impressa altered the structure of the FAA pool. The established impact of B. impressa on the incidence and intensity of disease, energy balance, growth and biochemical composition of oysters, indicate that this ectoparasite may well be a determining factor in the health of oyster populations. Information acquired about this host/parasite relationship can be applied to a more general understanding of the functioning of host/parasite symbioses in the marine environment. 
650 0 |a American oyster  |x Parasites. 
650 0 |a Snails as carriers of disease. 
650 4 |a Major oceanography. 
655 7 |a Academic theses  |2 lcgft 
700 1 |a Brooks, James M.,  |e degree committee member. 
700 1 |a Powell, Eric N.,  |e degree supervisor. 
700 1 |a Ray, Sammy M.,  |e degree committee member. 
700 1 |a Sweet, Merrill H.,  |e degree committee member. 
700 1 |a Wormuth, John H.,  |e degree committee member. 
710 2 |a Texas A & M University,  |e degree granting institution. 
856 4 1 |u http://proxy.library.tamu.edu/login?url=http://proquest.umi.com/pqdweb?did=749104801&sid=1&Fmt=2&clientId=2945&RQT=309&VName=PQD  |z Link to ProQuest copy  |t 0 
856 4 1 |u https://hdl.handle.net/1969.1/DISSERTATIONS-22267  |z Link to OAKTrust copy  |t 0 
994 |a C0  |b TXA 
999 f f |s ea8e4df5-803e-3488-b815-359abd2aed0a  |i 69c3d568-f816-3ed9-aa0e-359efe35a2d3  |t 0 
952 f f |p noncirc  |a Texas A&M University  |b J.J. Pickle Campus  |c High Density Repository  |s HDR  |d Remote Storage  |t 0  |e 1986 Dissertation W586  |h Other scheme  |i unmediated -- volume  |m A14839618780 
952 f f |a Texas A&M University  |b College Station  |c Electronic Resources  |s www_evans  |d Available Online  |t 0  |e 1986 Dissertation W586  |h Other scheme 
998 f f |a 1986 Dissertation W586  |t 0  |l Remote Storage 
998 f f |a 1986 Dissertation W586  |t 0  |l Available Online