Abstract
ABSTRACTTardigrades are small metazoans renowned for their exceptional tolerance against various harsh environments in a dehydrated state. Some species exhibited an extraordinary tolerance against high-dose irradiation even in a hydrated state. Given that natural sources of high radiation are rare, the selective pressure to obtain such a high radiotolerance during evolution remains elusive. It has been postulated that high radiation tolerances could be derived from adaptation to dehydration, because both dehydration and radiation cause similar damage on biomolecules at least partly, e.g., DNA cleavage and oxidation of various biomolecules, and dehydration is a common environmental stress that terrestrial organisms should adapt to. Although tardigrades are known for high radiotolerance, the radiotolerance records have been reported only for desiccation-tolerant tardigrade species and nothing was known about the radio-tolerance in desiccation-sensitive tardigrade species. Hence, the relationship between desiccation-tolerance and radio-tolerance remained unexplored. To this end, we examined the radiotolerance of the desiccation-sensitive tardigrade,Grevenius myrops(formerly known asIsohypsibius myrops) in comparison to the well-characterized desiccation-tolerant tardigrade,Ramazzottius varieornatus. The median lethal dose (LD50) ofG. myropswas approximately 2,240 Gy. This was much lower than those reported for desiccation tolerant eutardigrades. The effects of irradiation on the lifespan and the ovipositions were more severe inG. myropscompared to those inR. varieornatus. The present study provides the precise records on the radiotolerance of a desiccation-sensitive tardigrade and the current data supported the certain correlation between desiccation tolerance and radiotolerance at least in eutardigrades.
Publisher
Cold Spring Harbor Laboratory
Reference40 articles.
1. Aguilar R , Khan L , Arslanovic N , Birmingham K , Kasliwal K , Posnikoff S , et al. (2023) Multivalent binding of the tardigrade Dsup protein to chromatin promotes yeast survival and longevity upon exposure to oxidative damage. Res Sq [Preprint] rs.3.rs-3182883
2. Comparative transcriptomics reveal a novel tardigrade specific DNA binding protein induced in response to ionizing radiation;eLife,2024
3. Tolerance to Gamma Radiation in the Tardigrade Hypsibius dujardini from Embryo to Adult Correlate Inversely with Cellular Proliferation
4. Ionizing-Radiation Resistance in the Desiccation-Tolerant Cyanobacterium
Chroococcidiopsis
5. Mitigation of UV-B radiation stress in tobacco pollen by expression of the tardigrade Damage suppressor protein (Dsup);Cells,2024