PacBio-based de novo transcriptomics of the coconut rhinoceros beetle <i>Oryctes rhinoceros</i> identifies physiologically important full-length genes and sheds insights into the molecular relationship (chitin synthase) between Scarabaeidae (Coleoptera) and Hymenoptera. [PDF]
Bhuvaragavan S +5 more
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Rhinoceros beetle (Trypoxylus dichotomus) cuticular hydrocarbons contain information about body size and sex. [PDF]
Bell MA +4 more
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Evaluation of new strain (AAD16) of Beauveria bassiana recovered from Japanese rhinoceros beetle: Effects on three coleopteran insects. [PDF]
Sarker S, Choi HW, Lim UT.
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Mechanical limits to maximum weapon size in a giant rhinoceros beetle. [PDF]
McCullough EL.
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Attraction to Carbon Dioxide from Feeding Resources and Conspecific Neighbours in Larvae of the Rhinoceros Beetle Trypoxylus dichotomus. [PDF]
Kojima W.
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The role of doublesex in the evolution of exaggerated horns in the Japanese rhinoceros beetle. [PDF]
Ito Y +9 more
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Complete Mitochondrial Genomes of Three Rhinoceros Beetles (Coleoptera: Scarabaeidae: Dynastinae) and Phylogenetic Implications. [PDF]
Song N, Shao R, Zhai Q.
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Elaborate horns in a giant rhinoceros beetle incur negligible aerodynamic costs. [PDF]
McCullough EL, Tobalske BW.
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The Missing Piece: Functional Telomerase Restored in the Beetle Model. [PDF]
Fajkus P +6 more
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Electroporation-mediated functional analysis method of genes in the giant insect Trypoxylus dichotomus. [PDF]
Sakura K +5 more
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