Correction to ‘Population differences in olfaction accompany host shift in Drosophila mojavensis ’

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Correction to 'Population differences in olfaction accompany host shift in Drosophila mojavensis'.

Evolutionary shifts in plant-herbivore interactions provide a model for understanding the link among the evolution of behaviour, ecological specialization and incipient speciation. Drosophila mojavensis uses different host cacti across its range, and volatile chemicals emitted by the host are the primary cue for host plant identification. In this study, we show that changes in host plant use be...

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Correction: Divergence in Olfactory Host Plant Preference in D. mojavensis in Response to Cactus Host Use

Panels A and B in Supplementary Figure S1 are switched. The panel labels are not switched. Please see a corrected version of Supplementary Figure S1 below. Figure S1 Analysis of host plant volatile composition with cactus rot stage. Cacti were either uninoculated (NI) or inoculated and fermented for one to nine weeks. Peak numbers correspond to the list of volatiles. (A–D) Typical gas chromato-...

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Functional genomics of cactus host shifts in Drosophila mojavensis.

Understanding the genetic basis of adaptation to novel environments remains one of the major challenges confronting evolutionary biologists. While newly developed genomic approaches hold considerable promise for addressing this overall question, the relevant tools have not often been available in the most ecologically interesting organisms. Our study organism, Drosophila mojavensis, is a cactop...

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Decoding olfaction in Drosophila.

Recent experiments in Drosophila demonstrate striking stereotypy in the neural architecture of the olfactory system. Functional imaging experiments in mammals and honeybees suggest a mechanism of odor coding that translates discrete patterns of activity in olfactory glomeruli into an odor image. Future experiments in Drosophila may permit a direct test of this odor-coding hypothesis.

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Olfaction in Drosophila.

The fruit fly, Drosophila melanogaster, is equipped with a sophisticated olfactory sensory system that permits it to recognize and discriminate hundreds of discrete odorants. The perception of these odorants is essential for the animal to identify relevant food sources and suitable sites for egg-laying. Advances in the last year have begun to define the molecular basis of this insect's discrimi...

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ژورنال

عنوان ژورنال: Proceedings of the Royal Society B: Biological Sciences

سال: 2017

ISSN: 0962-8452,1471-2954

DOI: 10.1098/rspb.2017.1260