Plants can be exposed to ionising radiation not only in Space but also on Earth, due to specific technological applications or after nuclear disasters. The response of plants to ionising radiation depends on radiation quality/quantity and/or plant characteristics. In this paper, we analyse some growth traits, leaf anatomy, and ecophysiological features of plants of Solanum lycopersicum L. “Microtom” grown from seeds irradiated with increasing doses of X-rays (0.3, 10, 20, 50, and 100 Gy). Both juvenile and compound leaves from plants developed from irradiated and control seeds were analysed through light and epifluorescence microscopy. Digital image analysis allowed quantifying anatomical parameters to detect the occurrence of signs of stru...
In Space exploration, plants will play a crucial role, not only for resource regeneration, but also ...
The scenarios for the long-term habitation of space platforms and planetary stations involve plants...
Plant cultivation in Space is a challenge for biology. In this context, preliminary studies with hig...
Plants can be exposed to ionising radiation not only in Space but also on Earth, due to specific tec...
Copyright © 2014 V. De Micco et al. This is an open access article distributed under the Creative Co...
The realisation of manned space exploration requires the development of Bioregenerative Life Support...
This study evaluated if specific light quality (LQ) regimes (white fluorescent, FL; full-spectrum, F...
The cultivation of higher plants in Space involves not only the development of new agro-technologie...
The possibility to cultivate plants in Space represents an ongoing challenge because in extraterrest...
ABSTRACT: A sustainable human space exploration, including long-duration manned missions, needs some...
The response of higher plants to ionising radiation depends on factors related to both radiation pro...
Ionising radiation may have different effects on plant metabolism, growth and reproduction, dependi...
For manned Space exploration, the possibility to integrate astronauts’ diet with fresh food directly...
The scenarios for the long-term habitation of space platforms and planetary stations involve plants ...
In Space exploration, plants will play a crucial role, not only for resource regeneration, but also ...
The scenarios for the long-term habitation of space platforms and planetary stations involve plants...
Plant cultivation in Space is a challenge for biology. In this context, preliminary studies with hig...
Plants can be exposed to ionising radiation not only in Space but also on Earth, due to specific tec...
Copyright © 2014 V. De Micco et al. This is an open access article distributed under the Creative Co...
The realisation of manned space exploration requires the development of Bioregenerative Life Support...
This study evaluated if specific light quality (LQ) regimes (white fluorescent, FL; full-spectrum, F...
The cultivation of higher plants in Space involves not only the development of new agro-technologie...
The possibility to cultivate plants in Space represents an ongoing challenge because in extraterrest...
ABSTRACT: A sustainable human space exploration, including long-duration manned missions, needs some...
The response of higher plants to ionising radiation depends on factors related to both radiation pro...
Ionising radiation may have different effects on plant metabolism, growth and reproduction, dependi...
For manned Space exploration, the possibility to integrate astronauts’ diet with fresh food directly...
The scenarios for the long-term habitation of space platforms and planetary stations involve plants ...
In Space exploration, plants will play a crucial role, not only for resource regeneration, but also ...
The scenarios for the long-term habitation of space platforms and planetary stations involve plants...
Plant cultivation in Space is a challenge for biology. In this context, preliminary studies with hig...