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Methyl Farnesoate Plays a Dual Role in Regulating Drosophila Metamorphosis

Corpus allatum (CA) ablation results in juvenile hormone (JH) deficiency and pupal lethality in Drosophila. The fly CA produces and releases three sesquiterpenoid hormones: JH III bisepoxide (JHB3), JH III, and methyl farnesoate (MF). In the whole body extracts, MF is the most abundant sesquiterpeno...

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Autores principales: Wen, Di, Rivera-Perez, Crisalejandra, Abdou, Mohamed, Jia, Qiangqiang, He, Qianyu, Liu, Xi, Zyaan, Ola, Xu, Jingjing, Bendena, William G., Tobe, Stephen S., Noriega, Fernando G., Palli, Subba R., Wang, Jian, Li, Sheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4361637/
https://www.ncbi.nlm.nih.gov/pubmed/25774983
http://dx.doi.org/10.1371/journal.pgen.1005038
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author Wen, Di
Rivera-Perez, Crisalejandra
Abdou, Mohamed
Jia, Qiangqiang
He, Qianyu
Liu, Xi
Zyaan, Ola
Xu, Jingjing
Bendena, William G.
Tobe, Stephen S.
Noriega, Fernando G.
Palli, Subba R.
Wang, Jian
Li, Sheng
author_facet Wen, Di
Rivera-Perez, Crisalejandra
Abdou, Mohamed
Jia, Qiangqiang
He, Qianyu
Liu, Xi
Zyaan, Ola
Xu, Jingjing
Bendena, William G.
Tobe, Stephen S.
Noriega, Fernando G.
Palli, Subba R.
Wang, Jian
Li, Sheng
author_sort Wen, Di
collection PubMed
description Corpus allatum (CA) ablation results in juvenile hormone (JH) deficiency and pupal lethality in Drosophila. The fly CA produces and releases three sesquiterpenoid hormones: JH III bisepoxide (JHB3), JH III, and methyl farnesoate (MF). In the whole body extracts, MF is the most abundant sesquiterpenoid, followed by JHB3 and JH III. Knockout of JH acid methyl transferase (jhamt) did not result in lethality; it decreased biosynthesis of JHB3, but MF biosynthesis was not affected. RNAi-mediated reduction of 3-hydroxy-3-methylglutaryl CoA reductase (hmgcr) expression in the CA decreased biosynthesis and titers of the three sesquiterpenoids, resulting in partial lethality. Reducing hmgcr expression in the CA of the jhamt mutant further decreased MF titer to a very low level, and caused complete lethality. JH III, JHB3, and MF function through Met and Gce, the two JH receptors, and induce expression of Kr-h1, a JH primary-response gene. As well, a portion of MF is converted to JHB3 in the hemolymph or peripheral tissues. Topical application of JHB3, JH III, or MF precluded lethality in JH-deficient animals, but not in the Met gce double mutant. Taken together, these experiments show that MF is produced by the larval CA and released into the hemolymph, from where it exerts its anti-metamorphic effects indirectly after conversion to JHB3, as well as acting as a hormone itself through the two JH receptors, Met and Gce.
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spelling pubmed-43616372015-03-23 Methyl Farnesoate Plays a Dual Role in Regulating Drosophila Metamorphosis Wen, Di Rivera-Perez, Crisalejandra Abdou, Mohamed Jia, Qiangqiang He, Qianyu Liu, Xi Zyaan, Ola Xu, Jingjing Bendena, William G. Tobe, Stephen S. Noriega, Fernando G. Palli, Subba R. Wang, Jian Li, Sheng PLoS Genet Research Article Corpus allatum (CA) ablation results in juvenile hormone (JH) deficiency and pupal lethality in Drosophila. The fly CA produces and releases three sesquiterpenoid hormones: JH III bisepoxide (JHB3), JH III, and methyl farnesoate (MF). In the whole body extracts, MF is the most abundant sesquiterpenoid, followed by JHB3 and JH III. Knockout of JH acid methyl transferase (jhamt) did not result in lethality; it decreased biosynthesis of JHB3, but MF biosynthesis was not affected. RNAi-mediated reduction of 3-hydroxy-3-methylglutaryl CoA reductase (hmgcr) expression in the CA decreased biosynthesis and titers of the three sesquiterpenoids, resulting in partial lethality. Reducing hmgcr expression in the CA of the jhamt mutant further decreased MF titer to a very low level, and caused complete lethality. JH III, JHB3, and MF function through Met and Gce, the two JH receptors, and induce expression of Kr-h1, a JH primary-response gene. As well, a portion of MF is converted to JHB3 in the hemolymph or peripheral tissues. Topical application of JHB3, JH III, or MF precluded lethality in JH-deficient animals, but not in the Met gce double mutant. Taken together, these experiments show that MF is produced by the larval CA and released into the hemolymph, from where it exerts its anti-metamorphic effects indirectly after conversion to JHB3, as well as acting as a hormone itself through the two JH receptors, Met and Gce. Public Library of Science 2015-03-16 /pmc/articles/PMC4361637/ /pubmed/25774983 http://dx.doi.org/10.1371/journal.pgen.1005038 Text en © 2015 Wen et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Wen, Di
Rivera-Perez, Crisalejandra
Abdou, Mohamed
Jia, Qiangqiang
He, Qianyu
Liu, Xi
Zyaan, Ola
Xu, Jingjing
Bendena, William G.
Tobe, Stephen S.
Noriega, Fernando G.
Palli, Subba R.
Wang, Jian
Li, Sheng
Methyl Farnesoate Plays a Dual Role in Regulating Drosophila Metamorphosis
title Methyl Farnesoate Plays a Dual Role in Regulating Drosophila Metamorphosis
title_full Methyl Farnesoate Plays a Dual Role in Regulating Drosophila Metamorphosis
title_fullStr Methyl Farnesoate Plays a Dual Role in Regulating Drosophila Metamorphosis
title_full_unstemmed Methyl Farnesoate Plays a Dual Role in Regulating Drosophila Metamorphosis
title_short Methyl Farnesoate Plays a Dual Role in Regulating Drosophila Metamorphosis
title_sort methyl farnesoate plays a dual role in regulating drosophila metamorphosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4361637/
https://www.ncbi.nlm.nih.gov/pubmed/25774983
http://dx.doi.org/10.1371/journal.pgen.1005038
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