Proteomics in evolutionary ecology

scientific article published on 07 October 2015

Proteomics in evolutionary ecology is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1016/J.JPROT.2015.09.031
P698PubMed publication ID26453985

P50authorBoris BaerQ40631988
A. Harvey MillarQ57913483
P2093author name stringA H Millar
P2860cites workCentral Dogma of Molecular BiologyQ22122430
Detecting natural selection in genomic dataQ30701255
P921main subjectevolutionary ecologyQ1382557
P6104maintained by WikiProjectWikiProject EcologyQ10818384
P304page(s)4-11
P577publication date2015-10-07
P1433published inJournal of ProteomicsQ15767060
P1476titleProteomics in evolutionary ecology
P478volume135

Reverse relations

cites work (P2860)
Q93067162Comparative proteomics of stenotopic caddisfly Crunoecia irrorata identifies acclimation strategies to warming
Q37402477Flight behaviour of honey bee (Apis mellifera) workers is altered by initial infections of the fungal parasite Nosema apis
Q38777679Genomics, transcriptomics and proteomics: enabling insights into social evolution and disease challenges for managed and wild bees
Q90719700Human and Nonhuman Primate Lineage-Specific Footprints in the Salivary Proteome
Q47113704Proline Hydroxylation in Cell Wall Proteins: Is It Yet Possible to Define Rules?
Q89868839Proteomic similarity of the Littorinid snails in the evolutionary context
Q57912674RNA-seq coupled to proteomic analysis reveals high sperm proteome variation between two closely related marine mussel species
Q51024624Seminal fluid of honeybees contains multiple mechanisms to combat infections of the sexually transmitted pathogen Nosema apis.
Q28828485Venomic Analysis of the Poorly Studied Desert Coral Snake, Micrurus tschudii tschudii, Supports the 3FTx/PLA₂ Dichotomy across Micrurus Venoms
Q59117401When every sperm is sacred: the emergence and decline of superorganismal chimeras