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Shimano, S.

Publications and source records attributed to Shimano, S..

2 recordsLinked to original sources

Oribatid Mites Supply Tetrodotoxin to Poisonous Newts

Tetrodotoxin (TTX) is a potent neurotoxin widely distributed among marine and terrestrial animals, yet how terrestrial vertebrates acquire this toxin has been debated for decades. Here, we identify oribatid mites as the primary dietary sources of TTX for the Japanese fire-bellied newt, Cynops pyrrhogaster. We detect TTX and its analogs in the mites Scheloribates processus and Galumna sp. KM1, which are preferentially consumed by terrestrial newts. In a controlled toxification experiment, juvenile newts accumulated TTX after consuming TTX-bearing mites, directly demonstrating dietary sequestration. Our results demonstrate that the early terrestrial stage is critical for lifelong TTX acquisition in newts. Notably, we also detect pumiliotoxin, a poison-frog alkaloid, in S. processus, suggesting that newts and poison frogs have convergently evolved to exploit toxin-bearing microarthropods for chemical defense. We propose a "terrestrial toxic web" hypothesis in which oribatid mites act as a shared environmental reservoir linking putative microbial toxin production to vertebrate chemical defense, highlighting microarthropods as key mediators in terrestrial toxin flow.

ecology↗

Haplotype independence contributes to evolvability in the long-term absence of sex in a mite

Some unique asexual species persist over time and contradict the consensus that sex is a prerequisite for long-term evolutionary survival. How they escape the dead-end fate remains enigmatic. Here, we generated a haplotype-resolved genome assembly based on a single individual and collected genomic data from worldwide populations of the parthenogenetic diploid oribatid mite Platynothrus peltifer to identify signatures of persistence without sex. We found that haplotypes diverge independently since the transition to asexuality at least 20 my ago. Multiple lines of evidence indicate disparate evolutionary trajectories between haplotypic blocks. Our findings imply that such haplotypic independence can lead to non-canonical routes of evolvability, helping some species to adapt, diversify and persist for millions of years in the absence of sex. One-Sentence SummaryFunctionally different chromosome sets in an asexual mite species showcase a survival strategy spanning millions of years.

evolutionary biology↗