POU-M2 promotes juvenile hormone biosynthesis by directly activating the transcription of juvenile hormone synthetic enzyme genes in Bombyx mori

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Last updated 25 outubro 2024
POU-M2 promotes juvenile hormone biosynthesis by directly activating the  transcription of juvenile hormone synthetic enzyme genes in Bombyx mori
POU-M2 promotes juvenile hormone biosynthesis by directly activating the  transcription of juvenile hormone synthetic enzyme genes in Bombyx mori
A Juvenile Hormone Transcription Factor Bmdimm-Fibroin H Chain Pathway Is Involved in the Synthesis of Silk Protein in Silkworm, Bombyx mori - ScienceDirect
POU-M2 promotes juvenile hormone biosynthesis by directly activating the  transcription of juvenile hormone synthetic enzyme genes in Bombyx mori
The proposed mechanism of the response of Bombyx mori POU homeodomain
POU-M2 promotes juvenile hormone biosynthesis by directly activating the  transcription of juvenile hormone synthetic enzyme genes in Bombyx mori
m6A-dependent mevalonate kinase in juvenile hormone synthesis pathway regulates the diapause process of bivoltine silkworm (Bombyx mori)
POU-M2 promotes juvenile hormone biosynthesis by directly activating the  transcription of juvenile hormone synthetic enzyme genes in Bombyx mori
Inhibition of juvenile hormone synthesis in mosquitoes by the methylation inhibitor 3-deazaneplanocin A (DZNep) - ScienceDirect
POU-M2 promotes juvenile hormone biosynthesis by directly activating the  transcription of juvenile hormone synthetic enzyme genes in Bombyx mori
Knockout silkworms reveal a dispensable role for juvenile hormones in holometabolous life cycle
POU-M2 promotes juvenile hormone biosynthesis by directly activating the  transcription of juvenile hormone synthetic enzyme genes in Bombyx mori
ChIP assays of the binding of Antp and POU-M2 to the overlapping CREs
POU-M2 promotes juvenile hormone biosynthesis by directly activating the  transcription of juvenile hormone synthetic enzyme genes in Bombyx mori
Precocious Metamorphosis in the Juvenile Hormone–Deficient Mutant of the Silkworm, Bombyx mori
POU-M2 promotes juvenile hormone biosynthesis by directly activating the  transcription of juvenile hormone synthetic enzyme genes in Bombyx mori
Depletion of juvenile hormone esterase extends larval growth in Bombyx mori - ScienceDirect
POU-M2 promotes juvenile hormone biosynthesis by directly activating the  transcription of juvenile hormone synthetic enzyme genes in Bombyx mori
POU-M2 promotes juvenile hormone biosynthesis by directly activating the transcription of juvenile hormone synthetic enzyme genes in Bombyx mori
POU-M2 promotes juvenile hormone biosynthesis by directly activating the  transcription of juvenile hormone synthetic enzyme genes in Bombyx mori
Overview of the Juvenile Hormone Biosynthetic Pathway (Adapted from

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