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- W2803382022 abstract "Abstract Bacterial endosymbionts have enabled aphids to adapt to a range of stressors, but their effects in many aphid species remain to be established. The bird cherry‐oat aphid, Rhopalosiphum padi (Linnaeus), is an important pest of cereals worldwide and has been reported to form symbiotic associations with Serratia symbiotica and Sitobion miscanthi L‐type symbiont endobacteria, although the resulting aphid phenotype has not been described. This study presents the first report of R. padi infection with the facultative bacterial endosymbiont Hamiltonella defensa . Individuals of R. padi were sampled from populations in Eastern Scotland, UK, and shown to represent seven R. padi genotypes based on the size of polymorphic microsatellite markers; two of these genotypes harbored H. defensa . In parasitism assays, survival of H. defensa ‐infected nymphs following attack by the parasitoid wasp Aphidius colemani (Viereck) was 5 fold higher than for uninfected nymphs. Aphid genotype was a major determinant of aphid performance on two Hordeum species, a modern cultivar of barley H. vulgare and a wild relative H. spontaneum , although aphids infected with H. defensa showed 16% lower nymph mass gain on the partially resistant wild relative compared with uninfected individuals. These findings suggest that deploying resistance traits in barley will favor the fittest R. padi genotypes, but symbiont‐infected individuals will be favored when parasitoids are abundant, although these aphids will not achieve optimal performance on a poor quality host plant." @default.
- W2803382022 created "2018-06-01" @default.
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- W2803382022 creator A5030360657 @default.
- W2803382022 date "2018-07-25" @default.
- W2803382022 modified "2023-10-16" @default.
- W2803382022 title "The price of protection: a defensive endosymbiont impairs nymph growth in the bird cherry‐oat aphid, <i>Rhopalosiphum padi</i>" @default.
- W2803382022 cites W1518286977 @default.
- W2803382022 cites W1559911037 @default.
- W2803382022 cites W1570622790 @default.
- W2803382022 cites W1677774484 @default.
- W2803382022 cites W1887050506 @default.
- W2803382022 cites W1923633214 @default.
- W2803382022 cites W1933525632 @default.
- W2803382022 cites W1935358262 @default.
- W2803382022 cites W1948137225 @default.
- W2803382022 cites W1951724000 @default.
- W2803382022 cites W1969372407 @default.
- W2803382022 cites W1970659799 @default.
- W2803382022 cites W1973852760 @default.
- W2803382022 cites W1974664536 @default.
- W2803382022 cites W1978339035 @default.
- W2803382022 cites W1979655623 @default.
- W2803382022 cites W1988406367 @default.
- W2803382022 cites W1991624787 @default.
- W2803382022 cites W1994193306 @default.
- W2803382022 cites W1995071508 @default.
- W2803382022 cites W2016981050 @default.
- W2803382022 cites W2017415997 @default.
- W2803382022 cites W2017982881 @default.
- W2803382022 cites W2018444625 @default.
- W2803382022 cites W2027732370 @default.
- W2803382022 cites W2032020063 @default.
- W2803382022 cites W2033019844 @default.
- W2803382022 cites W2042164478 @default.
- W2803382022 cites W2042713960 @default.
- W2803382022 cites W2049787303 @default.
- W2803382022 cites W2049830232 @default.
- W2803382022 cites W2060834037 @default.
- W2803382022 cites W2062986477 @default.
- W2803382022 cites W2090046564 @default.
- W2803382022 cites W2108375187 @default.
- W2803382022 cites W2109721710 @default.
- W2803382022 cites W2118476033 @default.
- W2803382022 cites W2123236387 @default.
- W2803382022 cites W2127411647 @default.
- W2803382022 cites W2127681490 @default.
- W2803382022 cites W2127996130 @default.
- W2803382022 cites W2129721986 @default.
- W2803382022 cites W2132128939 @default.
- W2803382022 cites W2133707890 @default.
- W2803382022 cites W2135732088 @default.
- W2803382022 cites W2138704856 @default.
- W2803382022 cites W2145335801 @default.
- W2803382022 cites W2146047193 @default.
- W2803382022 cites W2147203478 @default.
- W2803382022 cites W2147619502 @default.
- W2803382022 cites W2148958822 @default.
- W2803382022 cites W2154793163 @default.
- W2803382022 cites W2162230784 @default.
- W2803382022 cites W2163874015 @default.
- W2803382022 cites W2166949970 @default.
- W2803382022 cites W2176648664 @default.
- W2803382022 cites W2207468565 @default.
- W2803382022 cites W2222488794 @default.
- W2803382022 cites W2291791899 @default.
- W2803382022 cites W231119063 @default.
- W2803382022 cites W2342998979 @default.
- W2803382022 cites W2485493954 @default.
- W2803382022 cites W2520988914 @default.
- W2803382022 cites W2526412211 @default.
- W2803382022 cites W2565208994 @default.
- W2803382022 cites W2566630742 @default.
- W2803382022 cites W2587799988 @default.
- W2803382022 cites W2588733921 @default.
- W2803382022 cites W2604297947 @default.
- W2803382022 cites W2604301520 @default.
- W2803382022 cites W2619412927 @default.
- W2803382022 cites W2729403658 @default.
- W2803382022 cites W2731129057 @default.
- W2803382022 cites W2743305373 @default.
- W2803382022 cites W2746136510 @default.
- W2803382022 cites W2765583828 @default.
- W2803382022 cites W2768219770 @default.
- W2803382022 cites W2951692737 @default.
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- W2803382022 doi "https://doi.org/10.1111/1744-7917.12606" @default.
- W2803382022 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/7379937" @default.
- W2803382022 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/29797656" @default.
- W2803382022 hasPublicationYear "2018" @default.
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