Exploration and isolation of indigenous arbuscular mycorrhizal fungi in post-landslide sandy and clayey silt for eco-friendly remediation
Critical lands are formed after landslides due to the erosion and stripping of the surface soil in the depletion zone and the formation of accumulation zones, requiring remediation efforts. Indigenous arbuscular mycorrhizal fungi help rehabilitate degraded lands, including post-landslide sites, by a...
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Format: | Article |
Language: | English |
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EDP Sciences
2023-01-01
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Series: | BIO Web of Conferences |
Online Access: | https://www.bio-conferences.org/articles/bioconf/pdf/2023/18/bioconf_ctress2023_01009.pdf |
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author | H Sittadewi Euthalia G Tejakusuma Iwan Handayani Titin Tohari Adrin Lailati Masfiro Zakaria Zulfiadi Fakhrus Shomim Achmad Mulyono Asep |
author_facet | H Sittadewi Euthalia G Tejakusuma Iwan Handayani Titin Tohari Adrin Lailati Masfiro Zakaria Zulfiadi Fakhrus Shomim Achmad Mulyono Asep |
author_sort | H Sittadewi Euthalia |
collection | DOAJ |
description | Critical lands are formed after landslides due to the erosion and stripping of the surface soil in the depletion zone and the formation of accumulation zones, requiring remediation efforts. Indigenous arbuscular mycorrhizal fungi help rehabilitate degraded lands, including post-landslide sites, by adapting to native soil conditions. This study investigates mycorrhiza’s presence in post-landslide areas with sandy silt in Cililin and clayey silt in Citatah. Soil samples are collected at 30 cm depth using a corer near Dysoxylum macrocarpum in Citatah and Gmelina arborea in Cililin. Mycorrhiza isolation involves wet sieving and centrifugation. Local mycorrhiza genera identified are Glomus, Gigaspora, Acaulospora, and Scutellospora. Sandy silt soil 2 exhibits the highest spore density of 178 per 100 grams, while clayey silt soil 1 has the lowest density of 148 per 100 grams. Glomus dominates in sandy silt with a 93 per 100 grams concentration and a 38–45 µm size. Scutellospora is scarce in clayey silt, with only 1 per 100 grams, 90-170 µm size. Isolated mycorrhiza can serve as compatible and adaptive inoculum. The discovery of mycorrhiza tolerant to post-landslide conditions is expected to play an important role in the remediation process of critical lands caused by landslides. |
first_indexed | 2024-03-08T13:26:37Z |
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id | doaj.art-7834cb05464c4cecb08100f22912ae6d |
institution | Directory Open Access Journal |
issn | 2117-4458 |
language | English |
last_indexed | 2024-03-08T13:26:37Z |
publishDate | 2023-01-01 |
publisher | EDP Sciences |
record_format | Article |
series | BIO Web of Conferences |
spelling | doaj.art-7834cb05464c4cecb08100f22912ae6d2024-01-17T14:53:37ZengEDP SciencesBIO Web of Conferences2117-44582023-01-01730100910.1051/bioconf/20237301009bioconf_ctress2023_01009Exploration and isolation of indigenous arbuscular mycorrhizal fungi in post-landslide sandy and clayey silt for eco-friendly remediationH Sittadewi Euthalia0G Tejakusuma Iwan1Handayani Titin2Tohari Adrin3Lailati Masfiro4Zakaria Zulfiadi5Fakhrus Shomim Achmad6Mulyono Asep7Research Center for Geological Disaster, ORKM, BRINResearch Center for Geological Disaster, ORKM, BRINResearch Center for Sustainable Production System and Life Cycle Assessment, OREM, BRINResearch Center for Geological Disaster, ORKM, BRINResearch Center for Plant Conservation, Botanical Gardens and Forestry, ORHL, BRINFaculty of Geological Engineering, Universitas PadjadjaranResearch Center for Geological Disaster, ORKM, BRINResearch Center for Environmental and Clean Technology, ORHL, BRINCritical lands are formed after landslides due to the erosion and stripping of the surface soil in the depletion zone and the formation of accumulation zones, requiring remediation efforts. Indigenous arbuscular mycorrhizal fungi help rehabilitate degraded lands, including post-landslide sites, by adapting to native soil conditions. This study investigates mycorrhiza’s presence in post-landslide areas with sandy silt in Cililin and clayey silt in Citatah. Soil samples are collected at 30 cm depth using a corer near Dysoxylum macrocarpum in Citatah and Gmelina arborea in Cililin. Mycorrhiza isolation involves wet sieving and centrifugation. Local mycorrhiza genera identified are Glomus, Gigaspora, Acaulospora, and Scutellospora. Sandy silt soil 2 exhibits the highest spore density of 178 per 100 grams, while clayey silt soil 1 has the lowest density of 148 per 100 grams. Glomus dominates in sandy silt with a 93 per 100 grams concentration and a 38–45 µm size. Scutellospora is scarce in clayey silt, with only 1 per 100 grams, 90-170 µm size. Isolated mycorrhiza can serve as compatible and adaptive inoculum. The discovery of mycorrhiza tolerant to post-landslide conditions is expected to play an important role in the remediation process of critical lands caused by landslides.https://www.bio-conferences.org/articles/bioconf/pdf/2023/18/bioconf_ctress2023_01009.pdf |
spellingShingle | H Sittadewi Euthalia G Tejakusuma Iwan Handayani Titin Tohari Adrin Lailati Masfiro Zakaria Zulfiadi Fakhrus Shomim Achmad Mulyono Asep Exploration and isolation of indigenous arbuscular mycorrhizal fungi in post-landslide sandy and clayey silt for eco-friendly remediation BIO Web of Conferences |
title | Exploration and isolation of indigenous arbuscular mycorrhizal fungi in post-landslide sandy and clayey silt for eco-friendly remediation |
title_full | Exploration and isolation of indigenous arbuscular mycorrhizal fungi in post-landslide sandy and clayey silt for eco-friendly remediation |
title_fullStr | Exploration and isolation of indigenous arbuscular mycorrhizal fungi in post-landslide sandy and clayey silt for eco-friendly remediation |
title_full_unstemmed | Exploration and isolation of indigenous arbuscular mycorrhizal fungi in post-landslide sandy and clayey silt for eco-friendly remediation |
title_short | Exploration and isolation of indigenous arbuscular mycorrhizal fungi in post-landslide sandy and clayey silt for eco-friendly remediation |
title_sort | exploration and isolation of indigenous arbuscular mycorrhizal fungi in post landslide sandy and clayey silt for eco friendly remediation |
url | https://www.bio-conferences.org/articles/bioconf/pdf/2023/18/bioconf_ctress2023_01009.pdf |
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