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Harry, C. J.

Publications and source records attributed to Harry, C. J..

2 recordsLinked to original sources

Chromosomes remain individualized through interphase in embryos of the tardigrade Hypsibius exemplaris

Tardigrades are microscopic animals that can survive exceptional levels of ionizing radiation or desiccation - DNA-damaging conditions that would kill most animals. Irradiation or radiomimetic drug treatment of the tardigrade Hypsibius exemplaris can induce remarkably high expression levels of DNA repair genes, primarily those in the base excision repair and nonhomologous end joining pathways. How tardigrades can repair widespread DNA damage without producing frequent, large-scale chromosome structural abnormalities, like chromosome translocations and fusions, is unknown. Here, we report the results of examining chromosome and nuclear architecture throughout the cell cycle in early embryos of H. exemplaris. We found that H. exemplaris chromosomes are maintained in an individualized form throughout the cell cycle. We were surprised to also find that each chromosome is housed in a fully or partially separate lamin-lined compartment, instead of all chromosomes being housed in a single, nearly spherical nuclear lamina and envelope. Our results reveal unusual chromosomal and nuclear organization in a tardigrade. We speculate that these unexpected features might limit chromosomal rearrangements during DNA damage repair in extreme conditions. SIGNIFICANCE STATEMENTO_LIWe have investigated unusual chromosome organization in an organism that survives extremely DNA-damaging environments, a tardigrade, through early embryonic cell cycles. C_LIO_LIChromosomes in fixed and stained embryos appeared more condensed through interphase than is typical for animal cells. C_LIO_LIChromosomes remained individualized, in fully or partially separate lamin-lined compartments, through interphase. C_LIO_LIThe results reveal a unique nuclear and chromosomal organization in tardigrades, which we speculate might contribute to limiting chromosomal structure abnormalities under DNA damaging conditions in nature. C_LI

cell biology↗

Three-dimensional reconstruction of the face and feeding apparatus of the predatory nematode Pristionchus pacificus

Pristionchus pacificus is a nematode model for the developmental genetics of morphological polyphenism, especially at the level of individual cells. Morphological polyphenism in this species includes an evolutionary novelty, moveable teeth, which have enabled predatory feeding in this species and others in its family (Diplogastridae). From transmission electron micrographs of serial thin sections through an adult hermaphrodite of P. pacificus, we three-dimensionally reconstructed all epithelial and myoepithelial cells and syncytia, corresponding to 74 nuclei, of its face, mouth, and pharynx. We found that the epithelia that produce the predatory morphology of P. pacificus are identical to Caenorhabditis elegans in the number of cell classes and nuclei. However, differences in cell form, spatial relationships, and nucleus position correlate with gross morphological differences from C. elegans and outgroups. Moreover, we identified fine-structural features, especially in the anteriormost pharyngeal muscles, that underlie the conspicuous, left-right asymmetry that characterizes the P. pacificus feeding apparatus. Our reconstruction provides an anatomical map for studying the genetics of polyphenism, feeding behavior, and the development of novel form in a satellite model to C. elegans.

zoology↗