Rhizosphere properties of maize genotypes with contrasting phosphorus efficiency

An experiment was conducted in a growth chamber to evaluate characteristics of the rhizosphere of maize genotypes contrasting in P-use efficiency, by determining length and density of root hairs, the rhizosphere pH and the functional diversity of rhizosphere bacteria. A sample of a Red Oxisol was li...

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Main Authors: Edilson Carvalho Brasil, Vera Maria Carvalho Alves, Ivanildo Evódio Marriel, Gilson Villaça Exel Pitta, Janice Guedes de Carvalho
Format: Article
Language:English
Published: Sociedade Brasileira de Ciência do Solo 2011-02-01
Series:Revista Brasileira de Ciência do Solo
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-06832011000100016&lng=en&tlng=en
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author Edilson Carvalho Brasil
Vera Maria Carvalho Alves
Ivanildo Evódio Marriel
Gilson Villaça Exel Pitta
Janice Guedes de Carvalho
author_facet Edilson Carvalho Brasil
Vera Maria Carvalho Alves
Ivanildo Evódio Marriel
Gilson Villaça Exel Pitta
Janice Guedes de Carvalho
author_sort Edilson Carvalho Brasil
collection DOAJ
description An experiment was conducted in a growth chamber to evaluate characteristics of the rhizosphere of maize genotypes contrasting in P-use efficiency, by determining length and density of root hairs, the rhizosphere pH and the functional diversity of rhizosphere bacteria. A sample of a Red Oxisol was limed and fertilized with N, K and micronutrients. In the treatment with the highest P level, 174 mg kg-1 P was added. Each experimental unit corresponded to a PVC rhizobox filled with 2.2 dm-3 soil. The experiment was completely randomized with three replications in a 5 x 2 factorial design, corresponding to five genotypes (H1, H2 and H3 = P-efficient hybrids, H4 and H5 = P-inefficient hybrids) and two P levels (low = 3 mg dm-3, high = 29 mg dm-3). It was found that 18 days after transplanting, the nodal roots of the hybrids H3 and H2 had the longest root hairs. In general, the pH in the rhizosphere of the different genotypes was higher than in non-rhizosphere soil, irrespective of the P level. The pH was higher in the rhizosphere of lateral than of nodal roots. At low P levels, the pH variation of the hybrids H2, H4 and H5 was greater in rhizospheric than in non-rhizospheric soil. The functional microbial activity in the rhizosphere of the hybrids H3 and H5 was highest. At low soil P levels, the indices of microbial functional diversity were also higher. The microbial metabolic profile in the rhizosphere of hybrids H1, H2, H3, and H5 remained unaltered when the plants were grown at low P. The variations in the rhizosphere properties could not be related to patterns of P-use efficiency in the tested genotypes.
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spelling doaj.art-5ff8e45dda874961ac4723622ccf53eb2022-12-21T18:55:44ZengSociedade Brasileira de Ciência do SoloRevista Brasileira de Ciência do Solo1806-96572011-02-0135117118110.1590/S0100-06832011000100016S0100-06832011000100016Rhizosphere properties of maize genotypes with contrasting phosphorus efficiencyEdilson Carvalho Brasil0Vera Maria Carvalho Alves1Ivanildo Evódio Marriel2Gilson Villaça Exel Pitta3Janice Guedes de Carvalho4EmbrapaEmbrapaEmbrapaEmbrapaUniversidade Federal de LavrasAn experiment was conducted in a growth chamber to evaluate characteristics of the rhizosphere of maize genotypes contrasting in P-use efficiency, by determining length and density of root hairs, the rhizosphere pH and the functional diversity of rhizosphere bacteria. A sample of a Red Oxisol was limed and fertilized with N, K and micronutrients. In the treatment with the highest P level, 174 mg kg-1 P was added. Each experimental unit corresponded to a PVC rhizobox filled with 2.2 dm-3 soil. The experiment was completely randomized with three replications in a 5 x 2 factorial design, corresponding to five genotypes (H1, H2 and H3 = P-efficient hybrids, H4 and H5 = P-inefficient hybrids) and two P levels (low = 3 mg dm-3, high = 29 mg dm-3). It was found that 18 days after transplanting, the nodal roots of the hybrids H3 and H2 had the longest root hairs. In general, the pH in the rhizosphere of the different genotypes was higher than in non-rhizosphere soil, irrespective of the P level. The pH was higher in the rhizosphere of lateral than of nodal roots. At low P levels, the pH variation of the hybrids H2, H4 and H5 was greater in rhizospheric than in non-rhizospheric soil. The functional microbial activity in the rhizosphere of the hybrids H3 and H5 was highest. At low soil P levels, the indices of microbial functional diversity were also higher. The microbial metabolic profile in the rhizosphere of hybrids H1, H2, H3, and H5 remained unaltered when the plants were grown at low P. The variations in the rhizosphere properties could not be related to patterns of P-use efficiency in the tested genotypes.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-06832011000100016&lng=en&tlng=enP-aquisiçãomecanismosrizobox
spellingShingle Edilson Carvalho Brasil
Vera Maria Carvalho Alves
Ivanildo Evódio Marriel
Gilson Villaça Exel Pitta
Janice Guedes de Carvalho
Rhizosphere properties of maize genotypes with contrasting phosphorus efficiency
Revista Brasileira de Ciência do Solo
P-aquisição
mecanismos
rizobox
title Rhizosphere properties of maize genotypes with contrasting phosphorus efficiency
title_full Rhizosphere properties of maize genotypes with contrasting phosphorus efficiency
title_fullStr Rhizosphere properties of maize genotypes with contrasting phosphorus efficiency
title_full_unstemmed Rhizosphere properties of maize genotypes with contrasting phosphorus efficiency
title_short Rhizosphere properties of maize genotypes with contrasting phosphorus efficiency
title_sort rhizosphere properties of maize genotypes with contrasting phosphorus efficiency
topic P-aquisição
mecanismos
rizobox
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-06832011000100016&lng=en&tlng=en
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