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BdorOR88a Modulates the Responsiveness to Methyl Eugenol in Mature Males of Bactrocera dorsalis (Hendel).


ABSTRACT: Insect attractants are important prevention tools for managing populations of the Oriental fruit fly, Bactrocera dorsalis (Hendel), which is a highly destructive agricultural pest with health implications in tropical and subtropical countries. Methyl eugenol (ME) is still considered the gold standard of B. dorsalis attractants. Mature male flies use their olfactory system to detect ME, but the molecular mechanism underlying their olfactory detection of ME largely remains unclear. Here, we showed that ME activates the odorant receptors OR63a-1 and OR88a in mature B. dorsalis males antennae by RNA-Seq and qRT-PCR analysis. Interestingly, ME only elicited robust responses in the BdorOR88a/BdorOrco-expressing Xenopus oocytes, thus suggesting that BdorOR88a is necessary for ME reception and tropism in B. dorsalis. Next, our indoor behavioral assays demonstrated that BdorOR63a-1 knockdown had no significant effects on ME detection and tropism. By contrast, reducing the BdorOR88a transcript levels led to a significant decrease in the males' responsiveness to ME. Taken together, our results gave novel insight in the understanding of the olfactory background to the Oriental fruit fly's attraction toward ME.

SUBMITTER: Liu H 

PROVIDER: S-EPMC6094957 | biostudies-literature | 2018

REPOSITORIES: biostudies-literature

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<i>BdorOR88a</i> Modulates the Responsiveness to Methyl Eugenol in Mature Males of <i>Bactrocera dorsalis</i> (Hendel).

Liu Huan H   Chen Zheng-Shi ZS   Zhang Dong-Ju DJ   Lu Yong-Yue YY  

Frontiers in physiology 20180726


Insect attractants are important prevention tools for managing populations of the Oriental fruit fly, <i>Bactrocera dorsalis</i> (Hendel), which is a highly destructive agricultural pest with health implications in tropical and subtropical countries. Methyl eugenol (ME) is still considered the gold standard of <i>B. dorsalis</i> attractants. Mature male flies use their olfactory system to detect ME, but the molecular mechanism underlying their olfactory detection of ME largely remains unclear. H  ...[more]

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