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Clay chips and beads capture in situ barley root microbiota and facilitate in vitro long-term preservation of microbial strains

Capturing the diverse microbiota from healthy and/or stress resilient plants for further preservation and transfer to unproductive and pathogen overloaded soils, might be a tool to restore disturbed plant–microbe interactions. Here, we introduce Aswan Pink Clay as a low-cost technology for capturing...

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Autores principales: Abdelfadil, Mohamed R, Taha, Manar H, El-Hadidi, Mohamed, Hamza, Mervat A, Youssef, Hanan H, Khalil, Mohab, Henawy, Ahmed R, Nemr, Rahma A, Elsawey, Hend, Tchuisseu Tchakounte, Gylaine Vanissa, Abbas, Mohamed, Youssef, Gehan H, Witzel, Katja, Shawky, Mohamed Essam, Fayez, Mohamed, Kolb, Steffen, Hegazi, Nabil A, Ruppel, Silke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9249396/
https://www.ncbi.nlm.nih.gov/pubmed/35641146
http://dx.doi.org/10.1093/femsec/fiac064
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author Abdelfadil, Mohamed R
Taha, Manar H
El-Hadidi, Mohamed
Hamza, Mervat A
Youssef, Hanan H
Khalil, Mohab
Henawy, Ahmed R
Nemr, Rahma A
Elsawey, Hend
Tchuisseu Tchakounte, Gylaine Vanissa
Abbas, Mohamed
Youssef, Gehan H
Witzel, Katja
Shawky, Mohamed Essam
Fayez, Mohamed
Kolb, Steffen
Hegazi, Nabil A
Ruppel, Silke
author_facet Abdelfadil, Mohamed R
Taha, Manar H
El-Hadidi, Mohamed
Hamza, Mervat A
Youssef, Hanan H
Khalil, Mohab
Henawy, Ahmed R
Nemr, Rahma A
Elsawey, Hend
Tchuisseu Tchakounte, Gylaine Vanissa
Abbas, Mohamed
Youssef, Gehan H
Witzel, Katja
Shawky, Mohamed Essam
Fayez, Mohamed
Kolb, Steffen
Hegazi, Nabil A
Ruppel, Silke
author_sort Abdelfadil, Mohamed R
collection PubMed
description Capturing the diverse microbiota from healthy and/or stress resilient plants for further preservation and transfer to unproductive and pathogen overloaded soils, might be a tool to restore disturbed plant–microbe interactions. Here, we introduce Aswan Pink Clay as a low-cost technology for capturing and storing the living root microbiota. Clay chips were incorporated into the growth milieu of barley plants and developed under gnotobiotic conditions, to capture and host the rhizospheric microbiota. Afterward, it was tested by both a culture-independent (16S rRNA gene metabarcoding) and -dependent approach. Both methods revealed no significant differences between roots and adjacent clay chips in regard total abundance and structure of the present microbiota. Clay shaped as beads adequately supported the long-term preservation of viable pure isolates of typical rhizospheric microbes, i.e. Bacillus circulans, Klebsiella oxytoca, Sinorhizobium meliloti, and Saccharomyces sp., up to 11 months stored at −20°C, 4°C, and ambient temperature. The used clay chips and beads have the capacity to capture the root microbiota and to long-term preserve pure isolates. Hence, the developed approach is qualified to build on it a comprehensive strategy to transfer and store complex and living environmental microbiota of rhizosphere toward biotechnological application in sustainable plant production and environmental rehabilitation.
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spelling pubmed-92493962022-07-05 Clay chips and beads capture in situ barley root microbiota and facilitate in vitro long-term preservation of microbial strains Abdelfadil, Mohamed R Taha, Manar H El-Hadidi, Mohamed Hamza, Mervat A Youssef, Hanan H Khalil, Mohab Henawy, Ahmed R Nemr, Rahma A Elsawey, Hend Tchuisseu Tchakounte, Gylaine Vanissa Abbas, Mohamed Youssef, Gehan H Witzel, Katja Shawky, Mohamed Essam Fayez, Mohamed Kolb, Steffen Hegazi, Nabil A Ruppel, Silke FEMS Microbiol Ecol Research Article Capturing the diverse microbiota from healthy and/or stress resilient plants for further preservation and transfer to unproductive and pathogen overloaded soils, might be a tool to restore disturbed plant–microbe interactions. Here, we introduce Aswan Pink Clay as a low-cost technology for capturing and storing the living root microbiota. Clay chips were incorporated into the growth milieu of barley plants and developed under gnotobiotic conditions, to capture and host the rhizospheric microbiota. Afterward, it was tested by both a culture-independent (16S rRNA gene metabarcoding) and -dependent approach. Both methods revealed no significant differences between roots and adjacent clay chips in regard total abundance and structure of the present microbiota. Clay shaped as beads adequately supported the long-term preservation of viable pure isolates of typical rhizospheric microbes, i.e. Bacillus circulans, Klebsiella oxytoca, Sinorhizobium meliloti, and Saccharomyces sp., up to 11 months stored at −20°C, 4°C, and ambient temperature. The used clay chips and beads have the capacity to capture the root microbiota and to long-term preserve pure isolates. Hence, the developed approach is qualified to build on it a comprehensive strategy to transfer and store complex and living environmental microbiota of rhizosphere toward biotechnological application in sustainable plant production and environmental rehabilitation. Oxford University Press 2022-05-31 /pmc/articles/PMC9249396/ /pubmed/35641146 http://dx.doi.org/10.1093/femsec/fiac064 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of FEMS. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Research Article
Abdelfadil, Mohamed R
Taha, Manar H
El-Hadidi, Mohamed
Hamza, Mervat A
Youssef, Hanan H
Khalil, Mohab
Henawy, Ahmed R
Nemr, Rahma A
Elsawey, Hend
Tchuisseu Tchakounte, Gylaine Vanissa
Abbas, Mohamed
Youssef, Gehan H
Witzel, Katja
Shawky, Mohamed Essam
Fayez, Mohamed
Kolb, Steffen
Hegazi, Nabil A
Ruppel, Silke
Clay chips and beads capture in situ barley root microbiota and facilitate in vitro long-term preservation of microbial strains
title Clay chips and beads capture in situ barley root microbiota and facilitate in vitro long-term preservation of microbial strains
title_full Clay chips and beads capture in situ barley root microbiota and facilitate in vitro long-term preservation of microbial strains
title_fullStr Clay chips and beads capture in situ barley root microbiota and facilitate in vitro long-term preservation of microbial strains
title_full_unstemmed Clay chips and beads capture in situ barley root microbiota and facilitate in vitro long-term preservation of microbial strains
title_short Clay chips and beads capture in situ barley root microbiota and facilitate in vitro long-term preservation of microbial strains
title_sort clay chips and beads capture in situ barley root microbiota and facilitate in vitro long-term preservation of microbial strains
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9249396/
https://www.ncbi.nlm.nih.gov/pubmed/35641146
http://dx.doi.org/10.1093/femsec/fiac064
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