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Double abdomen in a short-germ insect
by
Troelenberg, Nicole
, Klingler, Martin
, Richter, Tobias
, Dao, Van Anh
, Bucher, Gregor
, Ansari, Salim
in
Abdomen
/ Abdomen - embryology
/ Animals
/ Biological Sciences
/ Body Patterning
/ Broken symmetry
/ Developmental Biology
/ Drosophila - embryology
/ Drosophila - genetics
/ Drosophila - metabolism
/ Embryogenesis
/ Embryonic growth stage
/ Embryos
/ Female
/ Fruit flies
/ Gene expression
/ Gene Expression Regulation, Developmental
/ Genes
/ Germ Cells - metabolism
/ Insect Proteins - genetics
/ Insect Proteins - metabolism
/ Insects
/ Localization
/ Male
/ Polarity
/ Ribonucleic acid
/ RNA
/ RNA-mediated interference
/ Segmentation
/ Signal transduction
/ Signaling
/ Symmetry
/ Tribolium - embryology
/ Tribolium - genetics
/ Tribolium - metabolism
/ Tribolium castaneum
/ Vertebrates
/ Wnt protein
/ Zygote - metabolism
2018
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Double abdomen in a short-germ insect
by
Troelenberg, Nicole
, Klingler, Martin
, Richter, Tobias
, Dao, Van Anh
, Bucher, Gregor
, Ansari, Salim
in
Abdomen
/ Abdomen - embryology
/ Animals
/ Biological Sciences
/ Body Patterning
/ Broken symmetry
/ Developmental Biology
/ Drosophila - embryology
/ Drosophila - genetics
/ Drosophila - metabolism
/ Embryogenesis
/ Embryonic growth stage
/ Embryos
/ Female
/ Fruit flies
/ Gene expression
/ Gene Expression Regulation, Developmental
/ Genes
/ Germ Cells - metabolism
/ Insect Proteins - genetics
/ Insect Proteins - metabolism
/ Insects
/ Localization
/ Male
/ Polarity
/ Ribonucleic acid
/ RNA
/ RNA-mediated interference
/ Segmentation
/ Signal transduction
/ Signaling
/ Symmetry
/ Tribolium - embryology
/ Tribolium - genetics
/ Tribolium - metabolism
/ Tribolium castaneum
/ Vertebrates
/ Wnt protein
/ Zygote - metabolism
2018
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Double abdomen in a short-germ insect
by
Troelenberg, Nicole
, Klingler, Martin
, Richter, Tobias
, Dao, Van Anh
, Bucher, Gregor
, Ansari, Salim
in
Abdomen
/ Abdomen - embryology
/ Animals
/ Biological Sciences
/ Body Patterning
/ Broken symmetry
/ Developmental Biology
/ Drosophila - embryology
/ Drosophila - genetics
/ Drosophila - metabolism
/ Embryogenesis
/ Embryonic growth stage
/ Embryos
/ Female
/ Fruit flies
/ Gene expression
/ Gene Expression Regulation, Developmental
/ Genes
/ Germ Cells - metabolism
/ Insect Proteins - genetics
/ Insect Proteins - metabolism
/ Insects
/ Localization
/ Male
/ Polarity
/ Ribonucleic acid
/ RNA
/ RNA-mediated interference
/ Segmentation
/ Signal transduction
/ Signaling
/ Symmetry
/ Tribolium - embryology
/ Tribolium - genetics
/ Tribolium - metabolism
/ Tribolium castaneum
/ Vertebrates
/ Wnt protein
/ Zygote - metabolism
2018
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Journal Article
Double abdomen in a short-germ insect
2018
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Overview
The distinction of anterior versus posterior is a crucial first step in animal embryogenesis. In the fly Drosophila, this axis is established by morphogenetic gradients contributed by the mother that regulate zygotic target genes. This principle has been considered to hold true for insects in general but is fundamentally different from vertebrates, where zygotic genes and Wnt signaling are required. We investigated symmetry breaking in the beetle Tribolium castaneum, which among insects represents the more ancestral short-germ embryogenesis. We found that maternal Tc-germ cell-less is required for anterior localization of maternal Tc-axin, which represses Wnt signaling and promotes expression of anterior zygotic genes. Both RNAi targeting Tc-germ cell-less or double RNAi knocking down the zygotic genes Tc-homeobrain and Tc-zen1 led to the formation of a second growth zone at the anterior, which resulted in double-abdomen phenotypes. Conversely, interfering with two posterior factors, Tc-caudal and Wnt, caused double-anterior phenotypes. These findings reveal that maternal and zygotic mechanisms, including Wnt signaling, are required for establishing embryo polarity and induce the segmentation clock in a short-germ insect.
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