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PubMed:30098407 JSONTXT 40 Projects

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Id Subject Object Predicate Lexical cue
TextSentencer_T1 0-197 Sentence denotes Combination of label-free quantitative proteomics and transcriptomics reveals intraspecific venom variation between the two strains of Tetrastichus brontispae, a parasitoid of two invasive beetles.
T1 0-197 Sentence denotes Combination of label-free quantitative proteomics and transcriptomics reveals intraspecific venom variation between the two strains of Tetrastichus brontispae, a parasitoid of two invasive beetles.
TextSentencer_T2 198-320 Sentence denotes The venom apparatus is a conserved organ in parasitoids that shows adaptations correlated with life-style diversification.
T2 198-320 Sentence denotes The venom apparatus is a conserved organ in parasitoids that shows adaptations correlated with life-style diversification.
TextSentencer_T3 321-679 Sentence denotes Combining transcriptomics and label-free quantitative proteomics, here we explored the venom apparatus components of the endoparasitoid Tetrastichus brontispae (Eulophidae), and provide a comparison of the venom apparatus proteomes between its two closely related strains, T. brontispae-Octodonta nipae (Tb-On) and T. brontispae-Brontispa longissima (Tb-Bl).
T3 321-679 Sentence denotes Combining transcriptomics and label-free quantitative proteomics, here we explored the venom apparatus components of the endoparasitoid Tetrastichus brontispae (Eulophidae), and provide a comparison of the venom apparatus proteomes between its two closely related strains, T. brontispae-Octodonta nipae (Tb-On) and T. brontispae-Brontispa longissima (Tb-Bl).
TextSentencer_T4 680-738 Sentence denotes Tb-Bl targets the B. longissima pupa as its habitual host.
T4 680-738 Sentence denotes Tb-Bl targets the B. longissima pupa as its habitual host.
TextSentencer_T5 739-883 Sentence denotes However, Tb-On is an experimental derivative of Tb-Bl, which has been exposed to the O. nipae pupa as host consecutively for over 40 generation.
T5 739-883 Sentence denotes However, Tb-On is an experimental derivative of Tb-Bl, which has been exposed to the O. nipae pupa as host consecutively for over 40 generation.
TextSentencer_T6 884-991 Sentence denotes Results showed that approximately 1505 venom proteins were identified in the T. brontispae venom apparatus.
T6 884-991 Sentence denotes Results showed that approximately 1505 venom proteins were identified in the T. brontispae venom apparatus.
TextSentencer_T7 992-1070 Sentence denotes The extracts contained novel venom proteins, such as 4-coumarate-CoA ligase 4.
T7 992-1070 Sentence denotes The extracts contained novel venom proteins, such as 4-coumarate-CoA ligase 4.
TextSentencer_T8 1071-1295 Sentence denotes A comparative venom proteome analysis revealed that significant quantitative and qualitative differences in venom composition exist between the two strains; although the most abundant venom proteins were shared between them.
T8 1071-1295 Sentence denotes A comparative venom proteome analysis revealed that significant quantitative and qualitative differences in venom composition exist between the two strains; although the most abundant venom proteins were shared between them.
TextSentencer_T9 1296-1418 Sentence denotes The differentially produced proteins were mainly enriched in fatty acid biosynthesis and melanotic encapsulation response.
T9 1296-1418 Sentence denotes The differentially produced proteins were mainly enriched in fatty acid biosynthesis and melanotic encapsulation response.
TextSentencer_T10 1419-1564 Sentence denotes Six of these enriched proteins presented increased levels in Tb-On, and this result was validated by parallel reaction monitoring (PRM) analysis.
T10 1419-1564 Sentence denotes Six of these enriched proteins presented increased levels in Tb-On, and this result was validated by parallel reaction monitoring (PRM) analysis.
TextSentencer_T11 1565-1662 Sentence denotes Overall, our data reveal that venom composition can evolve quickly and respond to host selection.
T11 1565-1662 Sentence denotes Overall, our data reveal that venom composition can evolve quickly and respond to host selection.