THE MICROBIOME OF A GREENHOUSE FOR GROUND DEMONSTRATION OF PLANT CULTIVATION TECHNOLOGIES IN SPACE

The EDEN ISS greenhouse is a confined mobile test facility in Antarctica for the development and optimization of new plant cultivation techniques for future space programs. The EDEN ISS greenhouse was in operation from February to November 2018 for fresh food production for the overwintering crew at...

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Main Authors: Rettberg, Petra, Fahrion, Jana, Zabel, Paul, Schubert, Daniel
Format: Conference Object
Language:English
Published: 2021
Subjects:
Online Access:https://elib.dlr.de/141311/
https://elib.dlr.de/141311/1/ME-SBA-2021-Rettberg-Fahrion-Schubert_etal_oral_F4.5-0008-21-oral%20%281%29_COSPAR_Sydney.pdf
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spelling ftdlr:oai:elib.dlr.de:141311 2024-05-19T07:29:34+00:00 THE MICROBIOME OF A GREENHOUSE FOR GROUND DEMONSTRATION OF PLANT CULTIVATION TECHNOLOGIES IN SPACE Rettberg, Petra Fahrion, Jana Zabel, Paul Schubert, Daniel 2021-02-01 application/pdf https://elib.dlr.de/141311/ https://elib.dlr.de/141311/1/ME-SBA-2021-Rettberg-Fahrion-Schubert_etal_oral_F4.5-0008-21-oral%20%281%29_COSPAR_Sydney.pdf en eng https://elib.dlr.de/141311/1/ME-SBA-2021-Rettberg-Fahrion-Schubert_etal_oral_F4.5-0008-21-oral%20%281%29_COSPAR_Sydney.pdf Rettberg, Petra und Fahrion, Jana und Zabel, Paul und Schubert, Daniel (2021) THE MICROBIOME OF A GREENHOUSE FOR GROUND DEMONSTRATION OF PLANT CULTIVATION TECHNOLOGIES IN SPACE. COSPAR 2021, 2021-01-28 - 2021-02-04, Sydney, Australia and Virtual Event (Hybrid). Strahlenbiologie Systemanalyse Raumsegment Konferenzbeitrag PeerReviewed 2021 ftdlr 2024-04-25T00:56:38Z The EDEN ISS greenhouse is a confined mobile test facility in Antarctica for the development and optimization of new plant cultivation techniques for future space programs. The EDEN ISS greenhouse was in operation from February to November 2018 for fresh food production for the overwintering crew at the German Antarctic Neumayer III station. During the nine months of operation, samples from the different plants, from the nutrition solution of the aeroponic planting system and from diverse surfaces within the three different compartments of the container were taken (future exploration greenhouse, service section, cold porch). Quantity as well as diversity of microorganisms was examined by cultivation. For identification, 16S rRNA gene sequencing was performed for the isolated prokaryotic organisms. In case of the plant samples, microbial quantities were in a range from 102 to 104 colony forming units per gram plant material. Compared to plants purchased from a German grocery, the produce hosted much more microorganisms than the EDEN ISS plants. The EDEN ISS plant samples contained mainly fungi and a few, most probably harmless bacteria. Most likely due to the used cultivation approach, Archaea were not found in the samples. The bioburden in the nutrition solutions increased constantly over time but never reached critical values. The surface samples revealed high differences in the microbial burden between the greenhouse part of the container and the service section and cold porch part. However, the numbers of organisms (bacteria and fungi) found in the planted greenhouse were still not critical. The microbial loaded surfaces showed strong temporal as well as spatial fluctuations. In samples of the nutrition solution and the surface, the amount of bacteria exceeded the amount of fungi by many times. The most abundant bacterial phyla were Firmicutes and Actinobacteria. These phyla include plant- and human-associated bacterial species. In general, there is a low risk of infection due to microbial contamination ... Conference Object Antarc* Antarctic Antarctica German Aerospace Center: elib - DLR electronic library
institution Open Polar
collection German Aerospace Center: elib - DLR electronic library
op_collection_id ftdlr
language English
topic Strahlenbiologie
Systemanalyse Raumsegment
spellingShingle Strahlenbiologie
Systemanalyse Raumsegment
Rettberg, Petra
Fahrion, Jana
Zabel, Paul
Schubert, Daniel
THE MICROBIOME OF A GREENHOUSE FOR GROUND DEMONSTRATION OF PLANT CULTIVATION TECHNOLOGIES IN SPACE
topic_facet Strahlenbiologie
Systemanalyse Raumsegment
description The EDEN ISS greenhouse is a confined mobile test facility in Antarctica for the development and optimization of new plant cultivation techniques for future space programs. The EDEN ISS greenhouse was in operation from February to November 2018 for fresh food production for the overwintering crew at the German Antarctic Neumayer III station. During the nine months of operation, samples from the different plants, from the nutrition solution of the aeroponic planting system and from diverse surfaces within the three different compartments of the container were taken (future exploration greenhouse, service section, cold porch). Quantity as well as diversity of microorganisms was examined by cultivation. For identification, 16S rRNA gene sequencing was performed for the isolated prokaryotic organisms. In case of the plant samples, microbial quantities were in a range from 102 to 104 colony forming units per gram plant material. Compared to plants purchased from a German grocery, the produce hosted much more microorganisms than the EDEN ISS plants. The EDEN ISS plant samples contained mainly fungi and a few, most probably harmless bacteria. Most likely due to the used cultivation approach, Archaea were not found in the samples. The bioburden in the nutrition solutions increased constantly over time but never reached critical values. The surface samples revealed high differences in the microbial burden between the greenhouse part of the container and the service section and cold porch part. However, the numbers of organisms (bacteria and fungi) found in the planted greenhouse were still not critical. The microbial loaded surfaces showed strong temporal as well as spatial fluctuations. In samples of the nutrition solution and the surface, the amount of bacteria exceeded the amount of fungi by many times. The most abundant bacterial phyla were Firmicutes and Actinobacteria. These phyla include plant- and human-associated bacterial species. In general, there is a low risk of infection due to microbial contamination ...
format Conference Object
author Rettberg, Petra
Fahrion, Jana
Zabel, Paul
Schubert, Daniel
author_facet Rettberg, Petra
Fahrion, Jana
Zabel, Paul
Schubert, Daniel
author_sort Rettberg, Petra
title THE MICROBIOME OF A GREENHOUSE FOR GROUND DEMONSTRATION OF PLANT CULTIVATION TECHNOLOGIES IN SPACE
title_short THE MICROBIOME OF A GREENHOUSE FOR GROUND DEMONSTRATION OF PLANT CULTIVATION TECHNOLOGIES IN SPACE
title_full THE MICROBIOME OF A GREENHOUSE FOR GROUND DEMONSTRATION OF PLANT CULTIVATION TECHNOLOGIES IN SPACE
title_fullStr THE MICROBIOME OF A GREENHOUSE FOR GROUND DEMONSTRATION OF PLANT CULTIVATION TECHNOLOGIES IN SPACE
title_full_unstemmed THE MICROBIOME OF A GREENHOUSE FOR GROUND DEMONSTRATION OF PLANT CULTIVATION TECHNOLOGIES IN SPACE
title_sort microbiome of a greenhouse for ground demonstration of plant cultivation technologies in space
publishDate 2021
url https://elib.dlr.de/141311/
https://elib.dlr.de/141311/1/ME-SBA-2021-Rettberg-Fahrion-Schubert_etal_oral_F4.5-0008-21-oral%20%281%29_COSPAR_Sydney.pdf
genre Antarc*
Antarctic
Antarctica
genre_facet Antarc*
Antarctic
Antarctica
op_relation https://elib.dlr.de/141311/1/ME-SBA-2021-Rettberg-Fahrion-Schubert_etal_oral_F4.5-0008-21-oral%20%281%29_COSPAR_Sydney.pdf
Rettberg, Petra und Fahrion, Jana und Zabel, Paul und Schubert, Daniel (2021) THE MICROBIOME OF A GREENHOUSE FOR GROUND DEMONSTRATION OF PLANT CULTIVATION TECHNOLOGIES IN SPACE. COSPAR 2021, 2021-01-28 - 2021-02-04, Sydney, Australia and Virtual Event (Hybrid).
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