| Gene | Short Name | Full Name |
|---|---|---|
| KWMTBOMO09528 (BGIBMGA013037) | ||
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Description
PREDICTED:_eukaryotic_translation_initiation_factor_4E_transporter-like_[Bombyx_mori]
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||
| KWMTBOMO09529 (BGIBMGA013035) | ||
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Description
PREDICTED:_eukaryotic_translation_initiation_factor_4E_transporter-like_[Bombyx_mori]
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||
| KWMTBOMO09530 (BGIBMGA012814) |
Protein suppressor of white apricot
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Description
Regulator of pre-mRNA splicing (and, possibly, of other RNA processing events). Regulate its own expression at the level of RNA processing.
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||
| KWMTBOMO09531 (BGIBMGA005786) | ||
|
Annotation
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Description
myo-inositol_oxygenase_[Bombyx_mori]
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||
| KWMTBOMO09532 (BGIBMGA005787) | ||
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Description
PREDICTED:_inositol_oxygenase-like_[Bombyx_mori]
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||
| KWMTBOMO09533 (BGIBMGA013034) | ||
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Description
C:filamentous actin
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||
| KWMTBOMO09534 (BGIBMGA013032) | ||
|
Description
consensus disorder prediction
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||
| KWMTBOMO09535 (BGIBMGA013032) | ||
|
Description
consensus disorder prediction
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||
| KWMTBOMO09536 (BGIBMGA013030) | ||
|
Description
PREDICTED:_protein_phosphatase_1D_[Bombyx_mori]
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||
| KWMTBOMO09537 (BGIBMGA013029) | ||
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Description
Mitochondrial_ribosomal_protein_L17_[Operophtera_brumata]
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||
| KWMTBOMO09538 (BGIBMGA012816) |
TBC1 domain family member whacked
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Description
Essential for ensuring the polarized growth of tracheal seamless tubes. During seamless tube morphogenesis, likely to act as a GTPase-activating protein (GAP) for Rab35 to regulate vesicle trafficking from the recycling endosomes to the lumenal apical membrane to ensure the polarized dynein motor complex-dependent growth of seamless tubes along the proximodistal axis in tracheal terminal cells. When the terminal branch lumen is growing, Rab35-GTP is active and likely directs the transport of apical membrane vesicles from the soma to the distal tip of elongating terminal cell branches thus providing a continuous supply of apical membrane components as the lumen grows. Whereas when Rab35-GDP is inactivated, presumably by this GAP, apical membrane vesicles are transported to a central location adjacent to the terminal cell nucleus.
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||
| KWMTBOMO09539 (BGIBMGA013027) |
Phagocyte signaling-impaired protein
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Description
Non-catalytic subunit of the NatB complex which catalyzes acetylation of the N-terminal methionine residues of proteins beginning with Met-Asp or Met-Glu (By similarity). Has 2 roles in the larval immune response: required both for the phagocytic degradation of internalized bacteria and for the induction of Defensin in the fat body. Within the phagocytic blood cells, has a role in detection of infection and activation of the humoral immune response (By similarity).
+ More
Non-catalytic subunit of the NatB complex which catalyzes acetylation of the N-terminal methionine residues of proteins beginning with Met-Asp or Met-Glu (By similarity). Has 2 roles in the larval immune response: required both for the phagocytic degradation of internalized bacteria and for the induction of Defensin in the fat body. Within the phagocytic blood cells, has a role in detection of infection and activation of the humoral immune response. |
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||
| KWMTBOMO09540 (BGIBMGA012817) | ||
|
Description
PREDICTED:_myb/SANT-like_DNA-binding_domain-containing_protein_3_[Plutella_xylostella]
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||
| KWMTBOMO09541 (BGIBMGA013026) | ||
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Description
C:integral component of membrane
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||
| KWMTBOMO09542 (BGIBMGA013025) |
eIF3a |
Eukaryotic translation initiation factor 3 subunit A
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Description
RNA-binding component of the eukaryotic translation initiation factor 3 (eIF-3) complex, which is involved in protein synthesis of a specialized repertoire of mRNAs and, together with other initiation factors, stimulates binding of mRNA and methionyl-tRNAi to the 40S ribosome. The eIF-3 complex specifically targets and initiates translation of a subset of mRNAs involved in cell proliferation.
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| Gene Information Genome Browser Gene Ontology and Pathway Transcriptional Analysis View Epigenomics Data Protein Structure Population genetics Close | ||