Published 2007 | Version v1
Miscellaneous

Non-linearity of dose-effect relationship at low level exposure on the example of cytogenetic effects in plant cells

  • 1. Russian Institute of Agricultural Radiology and Agroecology, Obninsk (Russian Federation)

Description

Complete text of publication follows. There has been an increasing concern in the current scientific society and among the public about the need to protect the environment in order to maintain the ecosystem sustainability and future well-being of man. The linear non-threshold (LNT) hypothesis as the most officially acknowledged concept of biological effect of radiation fails to explain many facts on effects at low level exposures (LLE) accumulated lately. Available information on the dose-effect relationship at low doses is scarce and incomplete for non-human species despite the fact that, under conditions of increased radiation exposure, some biota species occur at a risk of higher impact than humans because of differences in ecological niches occupied. Dose-effect relationships for cytogenetic damage in the range of LLE are studied in a series os experiments with plant (Hordeum vulgare L.) meristem cells. Dose-effect dependences obtained show an obvious non-linear behavior in the LLE region. A piecewise linear model (PLM) for dose-cytogenetic effect relationship that considers an existence of dose-independent part at LLE ('plateau') is developed and specified on the data obtained. An advantage of the PLM over linear model in approximating the frequency of cytogenetic disturbances is demonstrated. From an empirical probability distribution analysis, it is shown that the increase in cytogenetic damage level is tightly connected with changes in a process of absorbed energy distribution between target volumes in terms of fraction of cells experienced a radiation hit event. An appropriateness of the LNT hypothesis to the description of cytogenetic disturbances yield in plant meristem cells in the LLE region is discussed. The results support a conclusion about indirect mechanism of mutagenesis induced by low doses. New data obtained concern a perception of fundamental mechanisms governing cell response to LLE. These findings are of general biological interest, since response to LLE is one of the manifestations of basic laws determining and ensuring the living systems resistance and their adaptation potential under varying habitat conditions. Revealing dose dependence shape and LNT hypothesis eligibility are important at development of both the general ideology of environment radiation protection and the derivation of radiation safety standards that will ensure the human population and ecosystem integrity.

Part of:
6. LOWRAD International Conference on Low dose radiation effects on human health and environment

Additional details

Publishing Information

Publisher
F. Joliot-Curie National Research Institute for Radiobiology and Radiohygiene, Budapest
Imprint Place
Budapest (Hungary)
Imprint Title
6. LOWRAD International Conference on Low dose radiation effects on human health and environment
Imprint Pagination
[130 p.]
Journal Page Range
p. 105
Report number
INIS-HU--012

Conference

Title
6. LOWRAD International Conference on Low dose radiation effects on human health and environment
Dates
17-20 Oct 2007
Place
Budapest (Hungary)

INIS

Country of Publication
Hungary
Country of Input or Organization
Hungary
INIS RN
41133564
Subject category
S63: RADIATION, THERMAL, AND OTHER ENVIRONMENTAL POLLUTANT EFFECTS ON LIVING ORGANISMS AND BIOLOGICAL MATERIALS; S54: ENVIRONMENTAL SCIENCES;
Resource subtype / Literary indicator
Conference, Non-conventional Literature
Descriptors DEI
BIOLOGICAL EFFECTS; CYTOLOGY; DOSE RATES; ECOLOGY; LOW DOSE IRRADIATION; PLANT CELLS
Descriptors DEC
BIOLOGY; IRRADIATION

Optional Information