Approaches for Surveying Cosmic Radiation Damage in Large Populations of Arabidopsis thaliana Seeds- an Antarctic Example

The Cosmic Ray Exposure Sequencing Science (CRESS) payload system is a proof of concept experiment to assess the genomic impact of space radiation on seeds. CRESS was designed as a secondary payload for the December 2016 high-altitude, high-latitude, and long-duration balloon flight carrying the Bor...

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Main Author: Ferl, Robert J
Format: Dataset
Language:unknown
Published: NASA GeneLab 2018
Subjects:
Online Access:https://dx.doi.org/10.26030/cxya-dg98
https://genelab-data.ndc.nasa.gov/genelab/accession/GLDS-210
id ftdatacite:10.26030/cxya-dg98
record_format openpolar
spelling ftdatacite:10.26030/cxya-dg98 2023-05-15T13:35:42+02:00 Approaches for Surveying Cosmic Radiation Damage in Large Populations of Arabidopsis thaliana Seeds- an Antarctic Example Ferl, Robert J 2018 https://dx.doi.org/10.26030/cxya-dg98 https://genelab-data.ndc.nasa.gov/genelab/accession/GLDS-210 unknown NASA GeneLab Arabidopsis thaliana Cosmic Radiation Genotype genome sequencing Cosmic Ray Exposure Sequencing Science CRESS NASA Boron And Carbon Cosmic Rays in the Upper Stratosphere BACCUS hardware Suborbital Flight Study dataset Dataset 2018 ftdatacite https://doi.org/10.26030/cxya-dg98 2021-11-05T12:55:41Z The Cosmic Ray Exposure Sequencing Science (CRESS) payload system is a proof of concept experiment to assess the genomic impact of space radiation on seeds. CRESS was designed as a secondary payload for the December 2016 high-altitude, high-latitude, and long-duration balloon flight carrying the Boron And Carbon Cosmic Rays in the Upper Stratosphere (BACCUS) experimental hardware. Investigation of the biological effects of Galactic Cosmic Radiation (GCR), particularly those of ions with High-Z and Energy (HZE), is of interest due to the genomic damage this type of radiation inflicts. The biological effects of upper-stratospheric mixed radiation above Antarctica (ANT) were sampled using Arabidopsis thaliana seeds and were compared to those resulting from a controlled simulation of GCR at Brookhaven National Laboratory (BNL) and to laboratory control seed. The payload developed for Antarctica exposure was broadly designed to 1U CubeSat specifications (10cmx10cmx10cm, <1.33kg), maintained 1 atm internal pressure, and carried an internal cargo of four seed trays (about 580,000 seeds) and twelve CR-39 Solid-State Nuclear Track Detectors (SSNTDs). The irradiated seeds were recovered, sterilized and grown on Petri plates for phenotypic screening. BNL and ANT M0 seeds showed significantly reduced germination rates and elevated somatic mutation rates when compared to non-irradiated controls, with the BNL mutation rate also being significantly higher than that of ANT. Genomic DNA from mutants of interest was evaluated with whole-genome sequencing using PacBio SMRT technology. Sequence data revealed the presence of an array of genome structural variants in the genomes of M0 and M1 mutant plants. Dataset Antarc* Antarctic Antarctica DataCite Metadata Store (German National Library of Science and Technology) Antarctic
institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language unknown
topic Arabidopsis thaliana
Cosmic Radiation
Genotype
genome sequencing
Cosmic Ray Exposure Sequencing Science CRESS
NASA
Boron And Carbon Cosmic Rays in the Upper Stratosphere BACCUS hardware
Suborbital Flight Study
spellingShingle Arabidopsis thaliana
Cosmic Radiation
Genotype
genome sequencing
Cosmic Ray Exposure Sequencing Science CRESS
NASA
Boron And Carbon Cosmic Rays in the Upper Stratosphere BACCUS hardware
Suborbital Flight Study
Ferl, Robert J
Approaches for Surveying Cosmic Radiation Damage in Large Populations of Arabidopsis thaliana Seeds- an Antarctic Example
topic_facet Arabidopsis thaliana
Cosmic Radiation
Genotype
genome sequencing
Cosmic Ray Exposure Sequencing Science CRESS
NASA
Boron And Carbon Cosmic Rays in the Upper Stratosphere BACCUS hardware
Suborbital Flight Study
description The Cosmic Ray Exposure Sequencing Science (CRESS) payload system is a proof of concept experiment to assess the genomic impact of space radiation on seeds. CRESS was designed as a secondary payload for the December 2016 high-altitude, high-latitude, and long-duration balloon flight carrying the Boron And Carbon Cosmic Rays in the Upper Stratosphere (BACCUS) experimental hardware. Investigation of the biological effects of Galactic Cosmic Radiation (GCR), particularly those of ions with High-Z and Energy (HZE), is of interest due to the genomic damage this type of radiation inflicts. The biological effects of upper-stratospheric mixed radiation above Antarctica (ANT) were sampled using Arabidopsis thaliana seeds and were compared to those resulting from a controlled simulation of GCR at Brookhaven National Laboratory (BNL) and to laboratory control seed. The payload developed for Antarctica exposure was broadly designed to 1U CubeSat specifications (10cmx10cmx10cm, <1.33kg), maintained 1 atm internal pressure, and carried an internal cargo of four seed trays (about 580,000 seeds) and twelve CR-39 Solid-State Nuclear Track Detectors (SSNTDs). The irradiated seeds were recovered, sterilized and grown on Petri plates for phenotypic screening. BNL and ANT M0 seeds showed significantly reduced germination rates and elevated somatic mutation rates when compared to non-irradiated controls, with the BNL mutation rate also being significantly higher than that of ANT. Genomic DNA from mutants of interest was evaluated with whole-genome sequencing using PacBio SMRT technology. Sequence data revealed the presence of an array of genome structural variants in the genomes of M0 and M1 mutant plants.
format Dataset
author Ferl, Robert J
author_facet Ferl, Robert J
author_sort Ferl, Robert J
title Approaches for Surveying Cosmic Radiation Damage in Large Populations of Arabidopsis thaliana Seeds- an Antarctic Example
title_short Approaches for Surveying Cosmic Radiation Damage in Large Populations of Arabidopsis thaliana Seeds- an Antarctic Example
title_full Approaches for Surveying Cosmic Radiation Damage in Large Populations of Arabidopsis thaliana Seeds- an Antarctic Example
title_fullStr Approaches for Surveying Cosmic Radiation Damage in Large Populations of Arabidopsis thaliana Seeds- an Antarctic Example
title_full_unstemmed Approaches for Surveying Cosmic Radiation Damage in Large Populations of Arabidopsis thaliana Seeds- an Antarctic Example
title_sort approaches for surveying cosmic radiation damage in large populations of arabidopsis thaliana seeds- an antarctic example
publisher NASA GeneLab
publishDate 2018
url https://dx.doi.org/10.26030/cxya-dg98
https://genelab-data.ndc.nasa.gov/genelab/accession/GLDS-210
geographic Antarctic
geographic_facet Antarctic
genre Antarc*
Antarctic
Antarctica
genre_facet Antarc*
Antarctic
Antarctica
op_doi https://doi.org/10.26030/cxya-dg98
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