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Deadline: 30 September 2026 ⏰
@royentsoc.bsky.social @wileyecology.bsky.social
More here ⬇️
buff.ly/JijR6O3
Deadline: 30 September 2026 ⏰
@royentsoc.bsky.social @wileyecology.bsky.social
Host-independent #metagenomics reveal gut bacteria contribution to #Delia antiqua growth by vitamin B6 provision
doi.org/10.1111/imb.70046
#InsectMicrobes
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
Host-independent #metagenomics reveal gut bacteria contribution to #Delia antiqua growth by vitamin B6 provision
doi.org/10.1111/imb.70046
#InsectMicrobes
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
#Endosymbiont load dictates reproductive fate: Experimental validation for the bacterial dosage model in a parthenogenetic #weevil (#Coleoptera, #Curculionidae)
doi.org/10.1111/imb.70030
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
#Endosymbiont load dictates reproductive fate: Experimental validation for the bacterial dosage model in a parthenogenetic #weevil (#Coleoptera, #Curculionidae)
doi.org/10.1111/imb.70030
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
Transcriptional responses of #Aedes aegypti #chemosensory tissues in response to volatile #DEET and #citronella oil
doi.org/10.1111/imb.70049
#InsectVectors
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
Transcriptional responses of #Aedes aegypti #chemosensory tissues in response to volatile #DEET and #citronella oil
doi.org/10.1111/imb.70049
#InsectVectors
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
doi.org/10.1111/imb.13014
#Hymenoptera
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
doi.org/10.1111/imb.13014
#Hymenoptera
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
Functions of #melanin synthesis genes, yellow & tan, in wing pigmentation revealed by #CRISPR/#Cas9-mediated #mutagenesis in #Drosophila guttifera
doi.org/10.1111/imb.70024
#ColourPattern
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
Functions of #melanin synthesis genes, yellow & tan, in wing pigmentation revealed by #CRISPR/#Cas9-mediated #mutagenesis in #Drosophila guttifera
doi.org/10.1111/imb.70024
#ColourPattern
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
Multiple #CRISPR/#Cas9 modifications of an #esterase reveal its role in influencing acetate esters in #pheromone blend of a moth
doi.org/10.1111/imb.70016
#Heliothis #Chloridea #Noctuidae
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
Multiple #CRISPR/#Cas9 modifications of an #esterase reveal its role in influencing acetate esters in #pheromone blend of a moth
doi.org/10.1111/imb.70016
#Heliothis #Chloridea #Noctuidae
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
Establishment of #transgenic #Drosophila suzukii lines that express phiC31 integrase and carry the sepia gene as a marker for transformation
doi.org/10.1111/imb.70001
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
Establishment of #transgenic #Drosophila suzukii lines that express phiC31 integrase and carry the sepia gene as a marker for transformation
doi.org/10.1111/imb.70001
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
The pigment-dispersing factor receptor (#PDFR) gene is involved in #circadian rhythm and #moulting in #Hyphantria cunea
doi.org/10.1111/imb.70057
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
The pigment-dispersing factor receptor (#PDFR) gene is involved in #circadian rhythm and #moulting in #Hyphantria cunea
doi.org/10.1111/imb.70057
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
The ci-miR-5 regulates the CiCYP18A1 to control #moulting process of #Chilo infuscatellus: Prospective target for pest control
doi.org/10.1111/imb.13004
#Crambidae #miRNA
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
The ci-miR-5 regulates the CiCYP18A1 to control #moulting process of #Chilo infuscatellus: Prospective target for pest control
doi.org/10.1111/imb.13004
#Crambidae #miRNA
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
Learn more in the post below and follow @respublications.bsky.social for more #publications news ⬇️
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www.royensoc.co.uk/news/the-rol...
Learn more in the post below and follow @respublications.bsky.social for more #publications news ⬇️
Eye can see clearly now: Identifying the locus associated with a white-eye mutation in honey #bees (#Apis mellifera)
doi.org/10.1111/imb.70019
#CommunityScience #FunctionalGenomics
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyeco.bsky.social
Eye can see clearly now: Identifying the locus associated with a white-eye mutation in honey #bees (#Apis mellifera)
doi.org/10.1111/imb.70019
#CommunityScience #FunctionalGenomics
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyeco.bsky.social
#Transcriptomic, #proteomic and #biochemical comparison of luminescent and non-luminescent #Keroplatinae larvae (Diptera: #Keroplatidae)
doi.org/10.1111/imb.70008
#Bioluminescence
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
#Transcriptomic, #proteomic and #biochemical comparison of luminescent and non-luminescent #Keroplatinae larvae (Diptera: #Keroplatidae)
doi.org/10.1111/imb.70008
#Bioluminescence
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
Binding characteristics and physicochemical basis of C-minus odorant-binding protein 8 in western flower thrips, #Frankliniella occidentalis, with various host vegetable volatiles
doi.org/10.1111/imb....
@sassanasgari.bsky.social @gulianusslab.bsky.social
Binding characteristics and physicochemical basis of C-minus odorant-binding protein 8 in western flower thrips, #Frankliniella occidentalis, with various host vegetable volatiles
doi.org/10.1111/imb....
@sassanasgari.bsky.social @gulianusslab.bsky.social
Knockout of Ku70 and Ku80 elevates homology-directed repair efficiency in #Plutella xylostella
doi.org/10.1111/imb.70039
#NHEJ #CRISPR #Cas9
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
Knockout of Ku70 and Ku80 elevates homology-directed repair efficiency in #Plutella xylostella
doi.org/10.1111/imb.70039
#NHEJ #CRISPR #Cas9
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
Whole-genome resequencing reveals genetic #evolution of #honeybees (#Apis cerana) in high-altitude and overwintering #adaptation
doi.org/10.1111/imb.13009
#WholeGenomeSequencing
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
Whole-genome resequencing reveals genetic #evolution of #honeybees (#Apis cerana) in high-altitude and overwintering #adaptation
doi.org/10.1111/imb.13009
#WholeGenomeSequencing
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
Divergent immune strategies of #ColoradoPotatoBeetle larvae against the #EntomopathogenicFungi #Metarhizium robertsii and #Beauveria bassiana: A comparative transcriptomic analysis
doi.org/10.1111/imb.70034
@sassanasgari.bsky.social @gulianusslab.bsky.social
Divergent immune strategies of #ColoradoPotatoBeetle larvae against the #EntomopathogenicFungi #Metarhizium robertsii and #Beauveria bassiana: A comparative transcriptomic analysis
doi.org/10.1111/imb.70034
@sassanasgari.bsky.social @gulianusslab.bsky.social
2-Oxocarboxylic acid #metabolic pathway fuels mitochondrial #ATP synthesis to power #oviposition in #Bactrocera dorsalis
doi.org/10.1111/imb.70033
#Biogenesis #Fecundity
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
2-Oxocarboxylic acid #metabolic pathway fuels mitochondrial #ATP synthesis to power #oviposition in #Bactrocera dorsalis
doi.org/10.1111/imb.70033
#Biogenesis #Fecundity
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
doi.org/10.1111/imb.13006
#Sericulture #EnvironmentalResidues #NonTargetOrganisms
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
doi.org/10.1111/imb.13006
#Sericulture #EnvironmentalResidues #NonTargetOrganisms
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
doi.org/10.1111/imb.13008
#Metabolomics #Sericulture
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
doi.org/10.1111/imb.13008
#Metabolomics #Sericulture
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
Nuclear receptor genes HR3 and βFTZ-F1 are involved in #moulting development, pupation and eclosion in #Hyphantria cunea (Drury)
doi.org/10.1111/imb.70043
#dsRNA #RNAi
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
Nuclear receptor genes HR3 and βFTZ-F1 are involved in #moulting development, pupation and eclosion in #Hyphantria cunea (Drury)
doi.org/10.1111/imb.70043
#dsRNA #RNAi
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
Identification & localization of the set of #serine #peptidases & their homologs in the larval midgut of #Tenebrio molitor
doi.org/10.1111/imb.70031
#Biotechnology #mRNA #EdibleInsects
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
Identification & localization of the set of #serine #peptidases & their homologs in the larval midgut of #Tenebrio molitor
doi.org/10.1111/imb.70031
#Biotechnology #mRNA #EdibleInsects
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
LncRNA:CR43306 modulates testicular aging via cell adhesion in #Drosophila
doi.org/10.1111/imb.70028
#lcnRNA #DEG #RNAseq
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
LncRNA:CR43306 modulates testicular aging via cell adhesion in #Drosophila
doi.org/10.1111/imb.70028
#lcnRNA #DEG #RNAseq
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
doi.org/10.1111/imb.13007
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
doi.org/10.1111/imb.13007
@sassanasgari.bsky.social @gulianusslab.bsky.social @wiley.com
Identification & functional characterization of key #ecdysteroid #biosynthesis & signalling genes regulating #moulting & #metamorphosis in #Dastarcus helophoroides
doi.org/10.1111/imb.70035
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social
Identification & functional characterization of key #ecdysteroid #biosynthesis & signalling genes regulating #moulting & #metamorphosis in #Dastarcus helophoroides
doi.org/10.1111/imb.70035
@sassanasgari.bsky.social @gulianusslab.bsky.social @wileyecology.bsky.social