4.4 Article

Contrasts in cellulolytic activities of gut microorganisms between the wood borer, Saperda vestita (Coleoptera: Cerambycidae), and the bark beetles, Ips pini and Dendroctonus frontalis (Coleoptera: Curculionidae)

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ENVIRONMENTAL ENTOMOLOGY
卷 34, 期 3, 页码 541-547

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OXFORD UNIV PRESS INC
DOI: 10.1603/0046-225X-34.3.541

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cellulose degradation; longhorned beetles; bark beetles; microbial diversity

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The goal of this study was to characterize the cellulose-degrading microorganisms in the guts of wood-inhabiting beetles. We enriched for cellulose-degrading microorganisms by inoculating filter paper in liquid growth medium with macerated guts from larvae and adults of the wood-boring longhorned beetle, Saperda vestita, and the phloeophagous bark beetles, Ips pini and Dendroctontisfrontalis. After incubation, microorganisms were isolated in pure culture and tested for their ability to digest carboxymethylcellulose (CMC). Isolates were identified based on their ribosornal RNA gene or intergenic region sequences. Bacteria and fungi front the gut of S. vestita degraded filter paper, whereas the microorganisms from the phloeophagous insects did not. The only bacterium detected that was able to degrade CMC is closely related to Sphingobiun yanoikuytte, a member of the alpha-Proteobacteria class. We found this species in all field-collected S. vestita larvae in 2002 and 2003. Population densities of cellulolytic bacteria in S. vestita ranged from 2.4 X 10(5) to 3.6 X 10(6) CFU/gut. Bacteria isolated from the phloeophagous beetles L pini and D. frontalis did not degrade CMC. Two fungi isolated front the gut of S. vestita adults had strong degradative activity. Sequences of the ITS1, 5.8S, and ITS2 rRNA regions indicated that these fungi are highly similar to Fusarium, culniorum. and Penicillium crustosum, respectively. This study provides the first description of the gut microbial community of S. vestita and the first documentation of association between cellulolytic microorganisms and a wood-boring beetle.

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