Biochar treatment resulted in a combined effect on soybean growth promotion and a shift in plant growth promoting rhizobacteria

The application of biochar to soil is considered to have the potential for long-term soil carbon sequestration, as well as for improving plant growth and suppressing soil pathogens. In our study we evaluated the effect of biochar on the plant growth of soybeans, as well as on the composition of root...

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Main Authors: Dilfuza eEgamberdieva, Stephan eWirth, Undine eBehrendt, Elsayed eAbd_Allah, Gabriele eBerg
Format: Article
Language:English
Published: Frontiers Media S.A. 2016-02-01
Series:Frontiers in Microbiology
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fmicb.2016.00209/full
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spelling doaj-4ab12abcc4c84524ad610e60594269ed2020-11-24T23:43:23ZengFrontiers Media S.A.Frontiers in Microbiology1664-302X2016-02-01710.3389/fmicb.2016.00209181533Biochar treatment resulted in a combined effect on soybean growth promotion and a shift in plant growth promoting rhizobacteriaDilfuza eEgamberdieva0Stephan eWirth1Undine eBehrendt2Elsayed eAbd_Allah3Gabriele eBerg4Leibniz Centre for Agricultural Landscape Research (ZALF),Leibniz Centre for Agricultural Landscape Research (ZALF),Leibniz Centre for Agricultural Landscape Research (ZALF),King Saud UniversityGraz University of TechnologyThe application of biochar to soil is considered to have the potential for long-term soil carbon sequestration, as well as for improving plant growth and suppressing soil pathogens. In our study we evaluated the effect of biochar on the plant growth of soybeans, as well as on the composition of root-associated bacteria with plant growth promoting traits. Two types of biochar, namely, maize biochar (MBC), wood biochar (WBC), and hydrochar (HTC) were used for pot experiments to monitor plant growth. Soybean plants grown in soil amended with HTC char (2%) showed the best performance and were collected for isolation and further characterization of root-associated bacteria for multiple plant growth promoting traits.Only HTC char amendment resulted in a statistically significant increase in the root and shoot dry weight of soybeans. Interestingly, rhizosphere isolates from HTC char amended soil showed higher diversity than the rhizosphere isolates from the control soil. In addition, a higher proportion of isolates from HTC char amended soil compared with control soil was found to express plant growth promoting properties and showed antagonistic activity against one or more phytopathogenic fungi. Our study provided evidence that improved plant growth by biochar incorporation into soil results from the combination of a direct effect that is dependent on the type of char and a microbiome shift in root-associated beneficial bacteria.http://journal.frontiersin.org/Journal/10.3389/fmicb.2016.00209/fullSoybeanrhizospherebiocharHydrocharPlant growth promoting rhizobacteria
collection DOAJ
language English
format Article
sources DOAJ
author Dilfuza eEgamberdieva
Stephan eWirth
Undine eBehrendt
Elsayed eAbd_Allah
Gabriele eBerg
spellingShingle Dilfuza eEgamberdieva
Stephan eWirth
Undine eBehrendt
Elsayed eAbd_Allah
Gabriele eBerg
Biochar treatment resulted in a combined effect on soybean growth promotion and a shift in plant growth promoting rhizobacteria
Frontiers in Microbiology
Soybean
rhizosphere
biochar
Hydrochar
Plant growth promoting rhizobacteria
author_facet Dilfuza eEgamberdieva
Stephan eWirth
Undine eBehrendt
Elsayed eAbd_Allah
Gabriele eBerg
author_sort Dilfuza eEgamberdieva
title Biochar treatment resulted in a combined effect on soybean growth promotion and a shift in plant growth promoting rhizobacteria
title_short Biochar treatment resulted in a combined effect on soybean growth promotion and a shift in plant growth promoting rhizobacteria
title_full Biochar treatment resulted in a combined effect on soybean growth promotion and a shift in plant growth promoting rhizobacteria
title_fullStr Biochar treatment resulted in a combined effect on soybean growth promotion and a shift in plant growth promoting rhizobacteria
title_full_unstemmed Biochar treatment resulted in a combined effect on soybean growth promotion and a shift in plant growth promoting rhizobacteria
title_sort biochar treatment resulted in a combined effect on soybean growth promotion and a shift in plant growth promoting rhizobacteria
publisher Frontiers Media S.A.
series Frontiers in Microbiology
issn 1664-302X
publishDate 2016-02-01
description The application of biochar to soil is considered to have the potential for long-term soil carbon sequestration, as well as for improving plant growth and suppressing soil pathogens. In our study we evaluated the effect of biochar on the plant growth of soybeans, as well as on the composition of root-associated bacteria with plant growth promoting traits. Two types of biochar, namely, maize biochar (MBC), wood biochar (WBC), and hydrochar (HTC) were used for pot experiments to monitor plant growth. Soybean plants grown in soil amended with HTC char (2%) showed the best performance and were collected for isolation and further characterization of root-associated bacteria for multiple plant growth promoting traits.Only HTC char amendment resulted in a statistically significant increase in the root and shoot dry weight of soybeans. Interestingly, rhizosphere isolates from HTC char amended soil showed higher diversity than the rhizosphere isolates from the control soil. In addition, a higher proportion of isolates from HTC char amended soil compared with control soil was found to express plant growth promoting properties and showed antagonistic activity against one or more phytopathogenic fungi. Our study provided evidence that improved plant growth by biochar incorporation into soil results from the combination of a direct effect that is dependent on the type of char and a microbiome shift in root-associated beneficial bacteria.
topic Soybean
rhizosphere
biochar
Hydrochar
Plant growth promoting rhizobacteria
url http://journal.frontiersin.org/Journal/10.3389/fmicb.2016.00209/full
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AT undineebehrendt biochartreatmentresultedinacombinedeffectonsoybeangrowthpromotionandashiftinplantgrowthpromotingrhizobacteria
AT elsayedeabdallah biochartreatmentresultedinacombinedeffectonsoybeangrowthpromotionandashiftinplantgrowthpromotingrhizobacteria
AT gabrieleeberg biochartreatmentresultedinacombinedeffectonsoybeangrowthpromotionandashiftinplantgrowthpromotingrhizobacteria
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