Priestia megaterium ILBB592 based biofertilizer increases the efficiency of phosphorus fertilization, positively affects soybean nutrition and yield and modifies the rhizospheric bacterial community. [Preprint].

TORRES, P. - FRESIA, P. - BEYHAUT, E. - CUITIÑO, M. - ALTIER, N. - ABREO, E.

Resumen:

ABSTRACT.- Phosphorus (P) is needed by soybean plants to form vital molecules like ATP and nucleotides and perform plant functions like photosynthesis and Nitrogen biological fixation at nodules. Because P concentration in the soil solution is naturally low, P fertilization is applied to satisfy soybean requirements in high yielding crops. However, a small portion of added P is readily available to the plants, while most is retained by the soil matrix and eventually made available or lost through erosion and run-off to water bodies, where it promotes eutrophication. Therefore, technologies that enhance P uptake by crops could lead to lower P inputs and outputs from soybean cropping systems, improving sustainability. Priestia megaterium ILBB592 and Bacillus pumilus ILBB44 are two PGPR with P mobilization features that were single formulated as biofertilizers and co-inoculated with Bradyrhizobium elkanii on seeds of soybean Genesis 5602 in two consecutive years in the field, with and without P fertilization. Co-inoculation with ILBB592 improved plant P uptake, along with N and K, with and without P fertilization. Diversity was increased by co-inoculation with ILBB44 and ILBB592, and predicted genes related with P cycling in the rhizospheric soils were also augmented after co-inoculation with ILBB592, mostly with P fertilization. Shoot dry weight and yield were also improved although effect on yield was not statistically significant. P fertilization alone had no effect in the first year but showed some effect on nodules dry weight, P uptake and yield on the second year, suggesting a sufficient P level was obtained after repeated fertilizations. ILBB592 biofertilizer showed a positive effect on most plant parameters, including nodulation and P uptake in both years and both P fertilization regimes and is therefore considered as a useful technology to reduce P fertilization without jeopardizing plant performance.

Detalles Bibliográficos
2024
Phosphorus (P)
Nitrogen biological fixation
PLATAFORMA DE BIOINSUMOS - INIA
Microbiology
Inglés
Instituto Nacional de Investigación Agropecuaria
AINFO
https://ainfo.inia.uy/consulta/busca?b=pc&id=65058&biblioteca=vazio&busca=65058&qFacets=65058
Acceso abierto
_version_ 1856772334037237760
author TORRES, P.
author2 FRESIA, P.
BEYHAUT, E.
CUITIÑO, M.
ALTIER, N.
ABREO, E.
author2_role author
author
author
author
author
author_facet TORRES, P.
FRESIA, P.
BEYHAUT, E.
CUITIÑO, M.
ALTIER, N.
ABREO, E.
author_role author
bitstream.checksum.fl_str_mv 3691709b0e888c3fb07e76fac330f2b6
bitstream.checksumAlgorithm.fl_str_mv MD5
bitstream.url.fl_str_mv https://redi.anii.org.uy/jspui/bitstream/20.500.12381/4997/1/sword-2025-06-23T15%3a47%3a19.original.xml
collection AINFO
dc.creator.none.fl_str_mv TORRES, P.
FRESIA, P.
BEYHAUT, E.
CUITIÑO, M.
ALTIER, N.
ABREO, E.
dc.date.accessioned.none.fl_str_mv 2025-06-23T18:47:19Z
dc.date.available.none.fl_str_mv 2025-06-23T18:47:19Z
dc.date.issued.none.fl_str_mv 2024
dc.date.updated.none.fl_str_mv 2025-06-23T18:47:19Z
dc.description.abstract.none.fl_txt_mv ABSTRACT.- Phosphorus (P) is needed by soybean plants to form vital molecules like ATP and nucleotides and perform plant functions like photosynthesis and Nitrogen biological fixation at nodules. Because P concentration in the soil solution is naturally low, P fertilization is applied to satisfy soybean requirements in high yielding crops. However, a small portion of added P is readily available to the plants, while most is retained by the soil matrix and eventually made available or lost through erosion and run-off to water bodies, where it promotes eutrophication. Therefore, technologies that enhance P uptake by crops could lead to lower P inputs and outputs from soybean cropping systems, improving sustainability. Priestia megaterium ILBB592 and Bacillus pumilus ILBB44 are two PGPR with P mobilization features that were single formulated as biofertilizers and co-inoculated with Bradyrhizobium elkanii on seeds of soybean Genesis 5602 in two consecutive years in the field, with and without P fertilization. Co-inoculation with ILBB592 improved plant P uptake, along with N and K, with and without P fertilization. Diversity was increased by co-inoculation with ILBB44 and ILBB592, and predicted genes related with P cycling in the rhizospheric soils were also augmented after co-inoculation with ILBB592, mostly with P fertilization. Shoot dry weight and yield were also improved although effect on yield was not statistically significant. P fertilization alone had no effect in the first year but showed some effect on nodules dry weight, P uptake and yield on the second year, suggesting a sufficient P level was obtained after repeated fertilizations. ILBB592 biofertilizer showed a positive effect on most plant parameters, including nodulation and P uptake in both years and both P fertilization regimes and is therefore considered as a useful technology to reduce P fertilization without jeopardizing plant performance.
dc.identifier.none.fl_str_mv https://ainfo.inia.uy/consulta/busca?b=pc&id=65058&biblioteca=vazio&busca=65058&qFacets=65058
dc.language.iso.none.fl_str_mv en
eng
dc.rights.es.fl_str_mv Acceso abierto
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
dc.source.none.fl_str_mv reponame:AINFO
instname:Instituto Nacional de Investigación Agropecuaria
instacron:Instituto Nacional de Investigación Agropecuaria
dc.subject.none.fl_str_mv Phosphorus (P)
Nitrogen biological fixation
PLATAFORMA DE BIOINSUMOS - INIA
Microbiology
dc.title.none.fl_str_mv Priestia megaterium ILBB592 based biofertilizer increases the efficiency of phosphorus fertilization, positively affects soybean nutrition and yield and modifies the rhizospheric bacterial community. [Preprint].
dc.type.none.fl_str_mv Article
PublishedVersion
info:eu-repo/semantics/article
dc.type.version.none.fl_str_mv info:eu-repo/semantics/publishedVersion
description ABSTRACT.- Phosphorus (P) is needed by soybean plants to form vital molecules like ATP and nucleotides and perform plant functions like photosynthesis and Nitrogen biological fixation at nodules. Because P concentration in the soil solution is naturally low, P fertilization is applied to satisfy soybean requirements in high yielding crops. However, a small portion of added P is readily available to the plants, while most is retained by the soil matrix and eventually made available or lost through erosion and run-off to water bodies, where it promotes eutrophication. Therefore, technologies that enhance P uptake by crops could lead to lower P inputs and outputs from soybean cropping systems, improving sustainability. Priestia megaterium ILBB592 and Bacillus pumilus ILBB44 are two PGPR with P mobilization features that were single formulated as biofertilizers and co-inoculated with Bradyrhizobium elkanii on seeds of soybean Genesis 5602 in two consecutive years in the field, with and without P fertilization. Co-inoculation with ILBB592 improved plant P uptake, along with N and K, with and without P fertilization. Diversity was increased by co-inoculation with ILBB44 and ILBB592, and predicted genes related with P cycling in the rhizospheric soils were also augmented after co-inoculation with ILBB592, mostly with P fertilization. Shoot dry weight and yield were also improved although effect on yield was not statistically significant. P fertilization alone had no effect in the first year but showed some effect on nodules dry weight, P uptake and yield on the second year, suggesting a sufficient P level was obtained after repeated fertilizations. ILBB592 biofertilizer showed a positive effect on most plant parameters, including nodulation and P uptake in both years and both P fertilization regimes and is therefore considered as a useful technology to reduce P fertilization without jeopardizing plant performance.
eu_rights_str_mv openAccess
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rights_invalid_str_mv Acceso abierto
spelling 2025-06-23T18:47:19Z2025-06-23T18:47:19Z20242025-06-23T18:47:19Zhttps://ainfo.inia.uy/consulta/busca?b=pc&id=65058&biblioteca=vazio&busca=65058&qFacets=65058ABSTRACT.- Phosphorus (P) is needed by soybean plants to form vital molecules like ATP and nucleotides and perform plant functions like photosynthesis and Nitrogen biological fixation at nodules. Because P concentration in the soil solution is naturally low, P fertilization is applied to satisfy soybean requirements in high yielding crops. However, a small portion of added P is readily available to the plants, while most is retained by the soil matrix and eventually made available or lost through erosion and run-off to water bodies, where it promotes eutrophication. Therefore, technologies that enhance P uptake by crops could lead to lower P inputs and outputs from soybean cropping systems, improving sustainability. Priestia megaterium ILBB592 and Bacillus pumilus ILBB44 are two PGPR with P mobilization features that were single formulated as biofertilizers and co-inoculated with Bradyrhizobium elkanii on seeds of soybean Genesis 5602 in two consecutive years in the field, with and without P fertilization. Co-inoculation with ILBB592 improved plant P uptake, along with N and K, with and without P fertilization. Diversity was increased by co-inoculation with ILBB44 and ILBB592, and predicted genes related with P cycling in the rhizospheric soils were also augmented after co-inoculation with ILBB592, mostly with P fertilization. Shoot dry weight and yield were also improved although effect on yield was not statistically significant. P fertilization alone had no effect in the first year but showed some effect on nodules dry weight, P uptake and yield on the second year, suggesting a sufficient P level was obtained after repeated fertilizations. ILBB592 biofertilizer showed a positive effect on most plant parameters, including nodulation and P uptake in both years and both P fertilization regimes and is therefore considered as a useful technology to reduce P fertilization without jeopardizing plant performance.https://hdl.handle.net/20.500.12381/4997enenginfo:eu-repo/semantics/openAccessAcceso abiertoPhosphorus (P)Nitrogen biological fixationPLATAFORMA DE BIOINSUMOS - INIAMicrobiologyPriestia megaterium ILBB592 based biofertilizer increases the efficiency of phosphorus fertilization, positively affects soybean nutrition and yield and modifies the rhizospheric bacterial community. [Preprint].ArticlePublishedVersioninfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionreponame:AINFOinstname:Instituto Nacional de Investigación Agropecuariainstacron:Instituto Nacional de Investigación AgropecuariaTORRES, P.FRESIA, P.BEYHAUT, E.CUITIÑO, M.ALTIER, N.ABREO, E.SWORDsword-2025-06-23T15:47:19.original.xmlOriginal SWORD entry documentapplication/octet-stream3239https://redi.anii.org.uy/jspui/bitstream/20.500.12381/4997/1/sword-2025-06-23T15%3a47%3a19.original.xml3691709b0e888c3fb07e76fac330f2b6MD5120.500.12381/49972026-02-10 15:54:03.638oai:redi.anii.org.uy:20.500.12381/4997Institucionalhttps://ainfo.inia.uy/Organismo científico-tecnológicohttp://inia.uyhttps://redi.anii.org.uy/oai/requestlorrego@inia.org.uyUruguayopendoar:2026-02-10T18:54:03AINFO - Instituto Nacional de Investigación Agropecuariafalse
spellingShingle Priestia megaterium ILBB592 based biofertilizer increases the efficiency of phosphorus fertilization, positively affects soybean nutrition and yield and modifies the rhizospheric bacterial community. [Preprint].
TORRES, P.
Phosphorus (P)
Nitrogen biological fixation
PLATAFORMA DE BIOINSUMOS - INIA
Microbiology
status_str publishedVersion
title Priestia megaterium ILBB592 based biofertilizer increases the efficiency of phosphorus fertilization, positively affects soybean nutrition and yield and modifies the rhizospheric bacterial community. [Preprint].
title_full Priestia megaterium ILBB592 based biofertilizer increases the efficiency of phosphorus fertilization, positively affects soybean nutrition and yield and modifies the rhizospheric bacterial community. [Preprint].
title_fullStr Priestia megaterium ILBB592 based biofertilizer increases the efficiency of phosphorus fertilization, positively affects soybean nutrition and yield and modifies the rhizospheric bacterial community. [Preprint].
title_full_unstemmed Priestia megaterium ILBB592 based biofertilizer increases the efficiency of phosphorus fertilization, positively affects soybean nutrition and yield and modifies the rhizospheric bacterial community. [Preprint].
title_short Priestia megaterium ILBB592 based biofertilizer increases the efficiency of phosphorus fertilization, positively affects soybean nutrition and yield and modifies the rhizospheric bacterial community. [Preprint].
title_sort Priestia megaterium ILBB592 based biofertilizer increases the efficiency of phosphorus fertilization, positively affects soybean nutrition and yield and modifies the rhizospheric bacterial community. [Preprint].
topic Phosphorus (P)
Nitrogen biological fixation
PLATAFORMA DE BIOINSUMOS - INIA
Microbiology
url https://ainfo.inia.uy/consulta/busca?b=pc&id=65058&biblioteca=vazio&busca=65058&qFacets=65058