Signal transduction regulates schistosome reproductive biology

Schistosome parasites exhibit separate sexes and with the evolution of sex they have developed an intricate relationship between the male and female worms such that signals between the male and female that are initiated at the time of mating, regulate female reproductive development and subsequent e...

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Published inCurrent opinion in microbiology Vol. 12; no. 4; pp. 422 - 428
Main Authors LoVerde, Philip T, Andrade, Luiza F, Oliveira, Guilherme
Format Journal Article
LanguageEnglish
Published Kidlington Elsevier Ltd 01.08.2009
Elsevier
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Abstract Schistosome parasites exhibit separate sexes and with the evolution of sex they have developed an intricate relationship between the male and female worms such that signals between the male and female that are initiated at the time of mating, regulate female reproductive development and subsequent egg production. As the egg stage is responsible for pathogenesis and transmission, understanding the molecular mechanisms of female reproductive development may identify novel targets for the control of transmission and morbidity of this major world public health problem. Recent data have demonstrated that the pairing process, proliferation, and differentiation of vitelline cells, expression of female-specific genes and egg embryogenesis are regulated by the TGFβ pathway and protein tyrosine kinases.
AbstractList Schistosome parasites exhibit separate sexes and with the evolution of sex they have developed an intricate relationship between the male and female worms such that signals between the male and female that are initiated at the time of mating, regulate female reproductive development and subsequent egg production. As the egg stage is responsible for pathogenesis and transmission, understanding the molecular mechanisms of female reproductive development may identify novel targets for control of transmission and morbidity of this major world public health problem. Recent data has demonstrated that the pairing process, proliferation and differentiation of vitelline cells, expression of female-specific genes and egg embryogenesis are regulated by the TGFβ pathway and protein tyrosine kinases.
Schistosome parasites exhibit separate sexes and with the evolution of sex they have developed an intricate relationship between the male and female worms such that signals between the male and female that are initiated at the time of mating, regulate female reproductive development and subsequent egg production. As the egg stage is responsible for pathogenesis and transmission, understanding the molecular mechanisms of female reproductive development may identify novel targets for the control of transmission and morbidity of this major world public health problem. Recent data have demonstrated that the pairing process, proliferation, and differentiation of vitelline cells, expression of female-specific genes and egg embryogenesis are regulated by the TGFb pathway and protein tyrosine kinases.
Schistosome parasites exhibit separate sexes and with the evolution of sex they have developed an intricate relationship between the male and female worms such that signals between the male and female that are initiated at the time of mating, regulate female reproductive development and subsequent egg production. As the egg stage is responsible for pathogenesis and transmission, understanding the molecular mechanisms of female reproductive development may identify novel targets for the control of transmission and morbidity of this major world public health problem. Recent data have demonstrated that the pairing process, proliferation, and differentiation of vitelline cells, expression of female-specific genes and egg embryogenesis are regulated by the TGFβ pathway and protein tyrosine kinases.
Schistosome parasites exhibit separate sexes and with the evolution of sex they have developed an intricate relationship between the male and female worms such that signals between the male and female that are initiated at the time of mating, regulate female reproductive development and subsequent egg production. As the egg stage is responsible for pathogenesis and transmission, understanding the molecular mechanisms of female reproductive development may identify novel targets for the control of transmission and morbidity of this major world public health problem. Recent data have demonstrated that the pairing process, proliferation, and differentiation of vitelline cells, expression of female-specific genes and egg embryogenesis are regulated by the TGFbeta pathway and protein tyrosine kinases.
Author LoVerde, Philip T
Oliveira, Guilherme
Andrade, Luiza F
AuthorAffiliation 1 Departments of Biochemistry and Pathology University of Texas Health Science Center 7703 Flyod Curl Dr., San Antonio, Texas 78229
2 Centro de Pesquisas Rene Rachou/CPqRR, FIOCRUZ Av. Augusto de Lima 1715, Belo Horizonte, MG, 30190-002, Brazil Tel: +55-31-3349-7785, luizafreire@cpqrr.fiocruz.br , oliveira@cpqrr.fiocruz.br
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Snippet Schistosome parasites exhibit separate sexes and with the evolution of sex they have developed an intricate relationship between the male and female worms such...
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SubjectTerms Animals
Biological and medical sciences
Cell Differentiation
Female
Fundamental and applied biological sciences. Psychology
Gene Expression Regulation, Developmental
Life Cycle Stages
Male
Microbiology
Models, Biological
Pathology
Protein-Tyrosine Kinases - metabolism
Schistosoma - growth & development
Signal Transduction
Transforming Growth Factor beta - metabolism
Title Signal transduction regulates schistosome reproductive biology
URI https://www.clinicalkey.es/playcontent/1-s2.0-S1369527409000824
https://dx.doi.org/10.1016/j.mib.2009.06.005
https://www.ncbi.nlm.nih.gov/pubmed/19577949
https://search.proquest.com/docview/20798671
https://search.proquest.com/docview/67565295
https://pubmed.ncbi.nlm.nih.gov/PMC2740793
Volume 12
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