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RAD-tag sequencing of two entomopathogenic nematode species
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2015-12-04
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Comparative genomics of Steinernema reveals deeply conserved gene regulatory networks. Comparative genomics of Steinernema reveals deeply conserved gene regulatory networks
Parasitism is a major ecological niche for a variety of nematodes. Multiple nematode lineages have specialized as pathogens, including deadly parasites of insects that are used in biological control.
NIAID Data Ecosystem60
MOESM3 of Transcriptional variation and divergence of host-finding behaviour in Steinernema carpocapsae infective juveniles
Additional file 3. List of S. carpocapsae microRNAs, sequences and read counts across strains.
Figshare2019-11-21 更新20
Culture dependent and independent methods were used to exhaustively describe the bacterial microbiota which is associated to entomopathogenic nematodes. The role of this microbiota in the nematode life cycle was investigated, e.g. their insecticidal performances and theit potential to produce antimicrobial compounds.. Description of the bacterial microbiota of EntomoPathogenic Nematodes (EPNs)of Steinernema genus
Entomopathogenic nematodes from the genus Steinernema are used in biological control of insect pests. The free form of the nematode (infective juvenile) is in closed symbiotic association with the int
NIAID Data Ecosystem20
Additional file 4: of Signatures of co-evolutionary host-pathogen interactions in the genome of the entomopathogenic nematode Steinernema carpocapsae
Enriched GO terms in the genes with sites under positive selection in nematode clade V. (XLSX 14 kb)
Figshare2017-04-27 更新30
Heterorhabditis indica isolate:IJ Assembly. Heterorhabditis indica isolate:IJ
Nematodes are the most numerous animals in soil. Insect parasitic nematodes of the genus Heterorhabditis are capable of selectively seeking, infecting and killing their insect hosts in soil. The infec
NIAID Data Ecosystem20



