Matches in SemOpenAlex for { <https://semopenalex.org/work/W2122010930> ?p ?o ?g. }
- W2122010930 endingPage "5137" @default.
- W2122010930 startingPage "5124" @default.
- W2122010930 abstract "Abstract Many insects contain diverse gut microbial communities. While several studies have focused on a single or small group of species, comparative studies of phylogenetically diverse hosts can illuminate general patterns of host–microbiota associations. In this study, we tested the hypotheses that (i) host diet and (ii) host taxonomy structure intestinal bacterial community composition among insects. We used published 16S rRNA gene sequence data for 58 insect species in addition to four beetle species sampled from the S evilleta N ational W ildlife R efuge to test these hypotheses. Overall, gut bacterial species richness in these insects was low. Decaying wood xylophagous insects harboured the richest bacterial gut flora (102.8 species level operational taxonomic units ( OTU s)/sample ± 71.7, 11.8 ± 5.9 phylogenetic diversity ( PD )/sample), while bees and wasps harboured the least rich bacterial communities (11.0 species level OTU s/sample ± 5.4, 2.6 ± 0.8 PD /sample). We found evidence to support our hypotheses that host diet and taxonomy structure insect gut bacterial communities ( P < 0.001 for both). However, while host taxonomy was important in hymenopteran and termite gut community structure, diet was an important community structuring factor particularly for insect hosts that ingest lignocellulose‐derived substances. Our analysis provides a baseline comparison of insect gut bacterial communities from which to test further hypotheses concerning proximate and ultimate causes of these associations." @default.
- W2122010930 created "2016-06-24" @default.
- W2122010930 creator A5016682261 @default.
- W2122010930 creator A5018482244 @default.
- W2122010930 creator A5040062254 @default.
- W2122010930 date "2012-09-14" @default.
- W2122010930 modified "2023-10-11" @default.
- W2122010930 title "Do diet and taxonomy influence insect gut bacterial communities?" @default.
- W2122010930 cites W1501341626 @default.
- W2122010930 cites W1507126152 @default.
- W2122010930 cites W1513816695 @default.
- W2122010930 cites W1571359276 @default.
- W2122010930 cites W1910392422 @default.
- W2122010930 cites W1941713626 @default.
- W2122010930 cites W1948723230 @default.
- W2122010930 cites W1956639641 @default.
- W2122010930 cites W1964106002 @default.
- W2122010930 cites W1967249811 @default.
- W2122010930 cites W1968129467 @default.
- W2122010930 cites W1972085576 @default.
- W2122010930 cites W1974146655 @default.
- W2122010930 cites W1975336752 @default.
- W2122010930 cites W1981220482 @default.
- W2122010930 cites W1986672690 @default.
- W2122010930 cites W1988987622 @default.
- W2122010930 cites W2000259070 @default.
- W2122010930 cites W2000427217 @default.
- W2122010930 cites W2008194879 @default.
- W2122010930 cites W2009964889 @default.
- W2122010930 cites W2012971912 @default.
- W2122010930 cites W2019165418 @default.
- W2122010930 cites W2020346862 @default.
- W2122010930 cites W2025181520 @default.
- W2122010930 cites W2030154486 @default.
- W2122010930 cites W2036647435 @default.
- W2122010930 cites W2040659516 @default.
- W2122010930 cites W2045549309 @default.
- W2122010930 cites W2047276309 @default.
- W2122010930 cites W2060641998 @default.
- W2122010930 cites W2064313228 @default.
- W2122010930 cites W2064632494 @default.
- W2122010930 cites W2068262987 @default.
- W2122010930 cites W2072735086 @default.
- W2122010930 cites W2072812562 @default.
- W2122010930 cites W2079107595 @default.
- W2122010930 cites W2090925778 @default.
- W2122010930 cites W2098805614 @default.
- W2122010930 cites W2104239586 @default.
- W2122010930 cites W2108718991 @default.
- W2122010930 cites W2109544029 @default.
- W2122010930 cites W2110770504 @default.
- W2122010930 cites W2115028530 @default.
- W2122010930 cites W2119686278 @default.
- W2122010930 cites W2122233144 @default.
- W2122010930 cites W2124575137 @default.
- W2122010930 cites W2125085285 @default.
- W2122010930 cites W2132383640 @default.
- W2122010930 cites W2132904441 @default.
- W2122010930 cites W2133581710 @default.
- W2122010930 cites W2136274814 @default.
- W2122010930 cites W2136426646 @default.
- W2122010930 cites W2138433276 @default.
- W2122010930 cites W2138846451 @default.
- W2122010930 cites W2138969412 @default.
- W2122010930 cites W2139159827 @default.
- W2122010930 cites W2139385054 @default.
- W2122010930 cites W2141098490 @default.
- W2122010930 cites W2144568881 @default.
- W2122010930 cites W2145664556 @default.
- W2122010930 cites W2146443465 @default.
- W2122010930 cites W2148108676 @default.
- W2122010930 cites W2150564583 @default.
- W2122010930 cites W2150847355 @default.
- W2122010930 cites W2153318994 @default.
- W2122010930 cites W2154326098 @default.
- W2122010930 cites W2156211435 @default.
- W2122010930 cites W2156465688 @default.
- W2122010930 cites W2158096004 @default.
- W2122010930 cites W2158286566 @default.
- W2122010930 cites W2158421363 @default.
- W2122010930 cites W2161163382 @default.
- W2122010930 cites W2161902938 @default.
- W2122010930 cites W2164646272 @default.
- W2122010930 cites W2166655850 @default.
- W2122010930 cites W2170024099 @default.
- W2122010930 cites W2172791027 @default.
- W2122010930 cites W2174503635 @default.
- W2122010930 cites W2177709753 @default.
- W2122010930 cites W2180578415 @default.
- W2122010930 cites W2184417979 @default.
- W2122010930 cites W4206408300 @default.
- W2122010930 cites W4230957658 @default.
- W2122010930 cites W4250478989 @default.
- W2122010930 doi "https://doi.org/10.1111/j.1365-294x.2012.05752.x" @default.
- W2122010930 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/22978555" @default.
- W2122010930 hasPublicationYear "2012" @default.
- W2122010930 type Work @default.
- W2122010930 sameAs 2122010930 @default.