Exploring the effect of UV-C radiation on earthworm and understanding its genomic integrity in the context of H2AX expression

Autor: Johnson Retnaraj Samuel Selvan Christyraj, Jemima Kamalapriya John Samuel, Ananthaselvam Azhagesan, Beryl Vedha Yesudhason, Karthikeyan Subbiahanadar Chelladurai, Johnson Benedict, Kamarajan Rajagopalan, Mijithra Ganesan, Saravanakumar Venkatachalam, Niranjan Chellathurai Vasantha, Vennila Devi Paulraj, Jackson Durairaj Selvan Christyraj, Muralidharan Jothimani
Rok vydání: 2020
Předmět:
Zdroj: Scientific Reports
ISSN: 2045-2322
DOI: 10.1038/s41598-020-77719-2
Popis: Maintaining genomic stability is inevitable for organism survival and it is challenged by mutagenic agents, which include ultraviolet (UV) radiation. Whenever DNA damage occurs, it is sensed by DNA-repairing proteins and thereby performing the DNA-repair mechanism. Specifically, in response to DNA damage, H2AX is a key protein involved in initiating the DNA-repair processes. In this present study, we investigate the effect of UV-C on earthworm, Perionyx excavatus and analyzed the DNA-damage response. Briefly, we expose the worms to different doses of UV-C and find that worms are highly sensitive to UV-C. As a primary response, earthworms produce coelomic fluid followed by autotomy. However, tissue inflammation followed by death is observed when we expose worm to increased doses of UV-C. In particular, UV-C promotes damages in skin layers and on the contrary, it mediates the chloragogen and epithelial outgrowth in intestinal tissues. Furthermore, UV-C promotes DNA damages followed by upregulation of H2AX on dose-dependent manner. Our finding confirms DNA damage caused by UV-C is directly proportional to the expression of H2AX. In short, we conclude that H2AX is present in the invertebrate earthworm, which plays an evolutionarily conserved role in DNA damage event as like that in higher animals.
Databáze: OpenAIRE