The Experts below are selected from a list of 21 Experts worldwide ranked by ideXlab platform
Yohan Coute - One of the best experts on this subject based on the ideXlab platform.
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neuropeptidome of the cephalopod sepia officinalis identification tissue mapping and expression pattern of neuropeptides and neurohormones during egg laying
Journal of Proteome Research, 2016Co-Authors: Celine Zatylnygaudin, Valerie Cornet, Alexandre Leduc, Bruno Zanuttini, Erwan Corre, Gildas Le Corguille, Benoit Bernay, Johan Garderes, Alexandra Kraut, Yohan CouteAbstract:Cephalopods exhibit a wide variety of behaviors such as prey Capture, Communication, camouflage, and reproduction thanks to a complex central nervous system (CNS) divided into several functional lobes that express a wide range of neuropeptides involved in the modulation of behaviors and physiological mechanisms associated with the main stages of their life cycle. This work focuses on the neuropeptidome expressed during egg-laying through de novo construction of the CNS transcriptome using an RNAseq approach (Illumina sequencing). Then, we completed the in silico analysis of the transcriptome by characterizing and tissue-mapping neuropeptides by mass spectrometry. To identify neuropeptides involved in the egg-laying process, we determined (1) the neuropeptide contents of the neurohemal area, hemolymph (blood), and nerve endings in mature females and (2) the expression levels of these peptides. Among the 38 neuropeptide families identified from 55 transcripts, 30 were described for the first time in Sepia o...
Celine Zatylnygaudin - One of the best experts on this subject based on the ideXlab platform.
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neuropeptidome of the cephalopod sepia officinalis identification tissue mapping and expression pattern of neuropeptides and neurohormones during egg laying
Journal of Proteome Research, 2016Co-Authors: Celine Zatylnygaudin, Valerie Cornet, Alexandre Leduc, Bruno Zanuttini, Erwan Corre, Gildas Le Corguille, Benoit Bernay, Johan Garderes, Alexandra Kraut, Yohan CouteAbstract:Cephalopods exhibit a wide variety of behaviors such as prey Capture, Communication, camouflage, and reproduction thanks to a complex central nervous system (CNS) divided into several functional lobes that express a wide range of neuropeptides involved in the modulation of behaviors and physiological mechanisms associated with the main stages of their life cycle. This work focuses on the neuropeptidome expressed during egg-laying through de novo construction of the CNS transcriptome using an RNAseq approach (Illumina sequencing). Then, we completed the in silico analysis of the transcriptome by characterizing and tissue-mapping neuropeptides by mass spectrometry. To identify neuropeptides involved in the egg-laying process, we determined (1) the neuropeptide contents of the neurohemal area, hemolymph (blood), and nerve endings in mature females and (2) the expression levels of these peptides. Among the 38 neuropeptide families identified from 55 transcripts, 30 were described for the first time in Sepia o...
Benoit Bernay - One of the best experts on this subject based on the ideXlab platform.
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neuropeptidome of the cephalopod sepia officinalis identification tissue mapping and expression pattern of neuropeptides and neurohormones during egg laying
Journal of Proteome Research, 2016Co-Authors: Celine Zatylnygaudin, Valerie Cornet, Alexandre Leduc, Bruno Zanuttini, Erwan Corre, Gildas Le Corguille, Benoit Bernay, Johan Garderes, Alexandra Kraut, Yohan CouteAbstract:Cephalopods exhibit a wide variety of behaviors such as prey Capture, Communication, camouflage, and reproduction thanks to a complex central nervous system (CNS) divided into several functional lobes that express a wide range of neuropeptides involved in the modulation of behaviors and physiological mechanisms associated with the main stages of their life cycle. This work focuses on the neuropeptidome expressed during egg-laying through de novo construction of the CNS transcriptome using an RNAseq approach (Illumina sequencing). Then, we completed the in silico analysis of the transcriptome by characterizing and tissue-mapping neuropeptides by mass spectrometry. To identify neuropeptides involved in the egg-laying process, we determined (1) the neuropeptide contents of the neurohemal area, hemolymph (blood), and nerve endings in mature females and (2) the expression levels of these peptides. Among the 38 neuropeptide families identified from 55 transcripts, 30 were described for the first time in Sepia o...
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Neuropeptidome of the Cephalopod Sepia officinalis: Identification, Tissue Mapping, and Expression Pattern of Neuropeptides and Neurohormones during Egg Laying
2016Co-Authors: Céline Zatylny-gaudin, Alexandre Leduc, Bruno Zanuttini, Erwan Corre, Benoit Bernay, Johan Garderes, Alexandra Kraut, Valérie Cornet, Gildas Le Corguillé, Yohan CoutéAbstract:Cephalopods exhibit a wide variety of behaviors such as prey Capture, Communication, camouflage, and reproduction thanks to a complex central nervous system (CNS) divided into several functional lobes that express a wide range of neuropeptides involved in the modulation of behaviors and physiological mechanisms associated with the main stages of their life cycle. This work focuses on the neuropeptidome expressed during egg-laying through de novo construction of the CNS transcriptome using an RNAseq approach (Illumina sequencing). Then, we completed the in silico analysis of the transcriptome by characterizing and tissue-mapping neuropeptides by mass spectrometry. To identify neuropeptides involved in the egg-laying process, we determined (1) the neuropeptide contents of the neurohemal area, hemolymph (blood), and nerve endings in mature females and (2) the expression levels of these peptides. Among the 38 neuropeptide families identified from 55 transcripts, 30 were described for the first time in Sepia officinalis, 5 were described for the first time in the animal kingdom, and 14 were strongly overexpressed in egg-laying females as compared with mature males. Mass spectrometry screening of hemolymph and nerve ending contents allowed us to clarify the status of many neuropeptides, that is, to determine whether they were neuromodulators or neurohormones
Alexandre Leduc - One of the best experts on this subject based on the ideXlab platform.
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neuropeptidome of the cephalopod sepia officinalis identification tissue mapping and expression pattern of neuropeptides and neurohormones during egg laying
Journal of Proteome Research, 2016Co-Authors: Celine Zatylnygaudin, Valerie Cornet, Alexandre Leduc, Bruno Zanuttini, Erwan Corre, Gildas Le Corguille, Benoit Bernay, Johan Garderes, Alexandra Kraut, Yohan CouteAbstract:Cephalopods exhibit a wide variety of behaviors such as prey Capture, Communication, camouflage, and reproduction thanks to a complex central nervous system (CNS) divided into several functional lobes that express a wide range of neuropeptides involved in the modulation of behaviors and physiological mechanisms associated with the main stages of their life cycle. This work focuses on the neuropeptidome expressed during egg-laying through de novo construction of the CNS transcriptome using an RNAseq approach (Illumina sequencing). Then, we completed the in silico analysis of the transcriptome by characterizing and tissue-mapping neuropeptides by mass spectrometry. To identify neuropeptides involved in the egg-laying process, we determined (1) the neuropeptide contents of the neurohemal area, hemolymph (blood), and nerve endings in mature females and (2) the expression levels of these peptides. Among the 38 neuropeptide families identified from 55 transcripts, 30 were described for the first time in Sepia o...
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Neuropeptidome of the Cephalopod Sepia officinalis: Identification, Tissue Mapping, and Expression Pattern of Neuropeptides and Neurohormones during Egg Laying
2016Co-Authors: Céline Zatylny-gaudin, Alexandre Leduc, Bruno Zanuttini, Erwan Corre, Benoit Bernay, Johan Garderes, Alexandra Kraut, Valérie Cornet, Gildas Le Corguillé, Yohan CoutéAbstract:Cephalopods exhibit a wide variety of behaviors such as prey Capture, Communication, camouflage, and reproduction thanks to a complex central nervous system (CNS) divided into several functional lobes that express a wide range of neuropeptides involved in the modulation of behaviors and physiological mechanisms associated with the main stages of their life cycle. This work focuses on the neuropeptidome expressed during egg-laying through de novo construction of the CNS transcriptome using an RNAseq approach (Illumina sequencing). Then, we completed the in silico analysis of the transcriptome by characterizing and tissue-mapping neuropeptides by mass spectrometry. To identify neuropeptides involved in the egg-laying process, we determined (1) the neuropeptide contents of the neurohemal area, hemolymph (blood), and nerve endings in mature females and (2) the expression levels of these peptides. Among the 38 neuropeptide families identified from 55 transcripts, 30 were described for the first time in Sepia officinalis, 5 were described for the first time in the animal kingdom, and 14 were strongly overexpressed in egg-laying females as compared with mature males. Mass spectrometry screening of hemolymph and nerve ending contents allowed us to clarify the status of many neuropeptides, that is, to determine whether they were neuromodulators or neurohormones
Alexandra Kraut - One of the best experts on this subject based on the ideXlab platform.
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neuropeptidome of the cephalopod sepia officinalis identification tissue mapping and expression pattern of neuropeptides and neurohormones during egg laying
Journal of Proteome Research, 2016Co-Authors: Celine Zatylnygaudin, Valerie Cornet, Alexandre Leduc, Bruno Zanuttini, Erwan Corre, Gildas Le Corguille, Benoit Bernay, Johan Garderes, Alexandra Kraut, Yohan CouteAbstract:Cephalopods exhibit a wide variety of behaviors such as prey Capture, Communication, camouflage, and reproduction thanks to a complex central nervous system (CNS) divided into several functional lobes that express a wide range of neuropeptides involved in the modulation of behaviors and physiological mechanisms associated with the main stages of their life cycle. This work focuses on the neuropeptidome expressed during egg-laying through de novo construction of the CNS transcriptome using an RNAseq approach (Illumina sequencing). Then, we completed the in silico analysis of the transcriptome by characterizing and tissue-mapping neuropeptides by mass spectrometry. To identify neuropeptides involved in the egg-laying process, we determined (1) the neuropeptide contents of the neurohemal area, hemolymph (blood), and nerve endings in mature females and (2) the expression levels of these peptides. Among the 38 neuropeptide families identified from 55 transcripts, 30 were described for the first time in Sepia o...
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Neuropeptidome of the Cephalopod Sepia officinalis: Identification, Tissue Mapping, and Expression Pattern of Neuropeptides and Neurohormones during Egg Laying
2016Co-Authors: Céline Zatylny-gaudin, Alexandre Leduc, Bruno Zanuttini, Erwan Corre, Benoit Bernay, Johan Garderes, Alexandra Kraut, Valérie Cornet, Gildas Le Corguillé, Yohan CoutéAbstract:Cephalopods exhibit a wide variety of behaviors such as prey Capture, Communication, camouflage, and reproduction thanks to a complex central nervous system (CNS) divided into several functional lobes that express a wide range of neuropeptides involved in the modulation of behaviors and physiological mechanisms associated with the main stages of their life cycle. This work focuses on the neuropeptidome expressed during egg-laying through de novo construction of the CNS transcriptome using an RNAseq approach (Illumina sequencing). Then, we completed the in silico analysis of the transcriptome by characterizing and tissue-mapping neuropeptides by mass spectrometry. To identify neuropeptides involved in the egg-laying process, we determined (1) the neuropeptide contents of the neurohemal area, hemolymph (blood), and nerve endings in mature females and (2) the expression levels of these peptides. Among the 38 neuropeptide families identified from 55 transcripts, 30 were described for the first time in Sepia officinalis, 5 were described for the first time in the animal kingdom, and 14 were strongly overexpressed in egg-laying females as compared with mature males. Mass spectrometry screening of hemolymph and nerve ending contents allowed us to clarify the status of many neuropeptides, that is, to determine whether they were neuromodulators or neurohormones