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Registro Completo |
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Biblioteca(s): |
Embrapa Florestas. |
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Data corrente: |
16/07/1991 |
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Data da última atualização: |
27/01/2025 |
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Autoria: |
KOTHARI, S. K.; MARSCHNER, H.; ROMHELD, V. |
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Título: |
Direct and indirect effects of VA mycorrhizal fungi and rhizosphere microorganisms on acquisition of mineral nutrients by maize (Zea mays L.) in a calcareous soil. |
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Ano de publicação: |
1990 |
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Fonte/Imprenta: |
New Phytologist, v. 116, n. 4, p. 637-646, 1990. |
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Idioma: |
Inglês |
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Conteúdo: |
Maize (Zea mays L.) was grown in a fertilized calcareous soil in pots which were separated by 30 μm nylon nets into three compartments, a central one for root growth and two outer ones for hyphal growth. The treatments comprised of sterilised soil, either inoculated with rhizosphere microorganisms together with Glomus mosseae (Nicol. & Gerd.) Gerdemann & Trappe, with rhizosphere microorganisms alone, or non-inoculated (sterile control). In the mycorrhizal treatment concentrations of P and Zn were increased in shoot and roots, as was uptake of P and Zn per unit root dry weight or per unit root length. Copper concentration in roots of mycorrhizal plants, and total uptake and uptake per unit root dry weight or per unit root length of Cu was also increased. The higher acquisition of P, Zn and Cu in the mycorrhizal plants is ascribed to VA mycorrhiza per se (hyphal uptake and translocation to the host). Besides these direct effects, VA mycorrhizal fungi and rhizosphere microorganisms affected the acquisition of other nutrients mostly through alteration of root morphology. In both mycorrhizal and sterile treatments, the decreased concentrations of Ca and Si in the shoot but increased concentrations in the roots seem to be related to restricted apoplasmic solute transport across the endodermal barrier due to decreased number of lateral roots. The concentration of K in both shoot and roots, and Fe in shoot were lower in mycorrhizal plants due to reduced root length. Manganese concentration was also distinctly lower in both shoot and roots in mycorrhizal and sterile treatments, an effect which is attributed to the decrease in Mn reduction in the rhizosphere. Irrespective of nutrient, the uptake per unit root length was higher in mycorrhizal plants, probably due to hyphal contribution and increased supply of nutrients to the root surface by mass flow. Soil analysis indicates hyphal translocation of K but not Mg. The results demonstrate that effects of VA mycorrhizal infection on root morphology and rhizosphere microorganisms have to be considered in interpretations of mycorrhizal effects on mineral nutrient acquisition. MenosMaize (Zea mays L.) was grown in a fertilized calcareous soil in pots which were separated by 30 μm nylon nets into three compartments, a central one for root growth and two outer ones for hyphal growth. The treatments comprised of sterilised soil, either inoculated with rhizosphere microorganisms together with Glomus mosseae (Nicol. & Gerd.) Gerdemann & Trappe, with rhizosphere microorganisms alone, or non-inoculated (sterile control). In the mycorrhizal treatment concentrations of P and Zn were increased in shoot and roots, as was uptake of P and Zn per unit root dry weight or per unit root length. Copper concentration in roots of mycorrhizal plants, and total uptake and uptake per unit root dry weight or per unit root length of Cu was also increased. The higher acquisition of P, Zn and Cu in the mycorrhizal plants is ascribed to VA mycorrhiza per se (hyphal uptake and translocation to the host). Besides these direct effects, VA mycorrhizal fungi and rhizosphere microorganisms affected the acquisition of other nutrients mostly through alteration of root morphology. In both mycorrhizal and sterile treatments, the decreased concentrations of Ca and Si in the shoot but increased concentrations in the roots seem to be related to restricted apoplasmic solute transport across the endodermal barrier due to decreased number of lateral roots. The concentration of K in both shoot and roots, and Fe in shoot were lower in mycorrhizal plants due to reduced root length. Manganese concen... Mostrar Tudo |
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Thesagro: |
Absorção de Nutrientes; Fósforo; Magnésio; Micorriza Vesicular Arbuscular; Potássio; Zinco. |
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Categoria do assunto: |
P Recursos Naturais, Ciências Ambientais e da Terra |
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Marc: |
LEADER 02852naa a2200217 a 4500 001 1279585 005 2025-01-27 008 1990 bl uuuu u00u1 u #d 100 1 $aKOTHARI, S. K. 245 $aDirect and indirect effects of VA mycorrhizal fungi and rhizosphere microorganisms on acquisition of mineral nutrients by maize (Zea mays L.) in a calcareous soil.$h[electronic resource] 260 $c1990 520 $aMaize (Zea mays L.) was grown in a fertilized calcareous soil in pots which were separated by 30 μm nylon nets into three compartments, a central one for root growth and two outer ones for hyphal growth. The treatments comprised of sterilised soil, either inoculated with rhizosphere microorganisms together with Glomus mosseae (Nicol. & Gerd.) Gerdemann & Trappe, with rhizosphere microorganisms alone, or non-inoculated (sterile control). In the mycorrhizal treatment concentrations of P and Zn were increased in shoot and roots, as was uptake of P and Zn per unit root dry weight or per unit root length. Copper concentration in roots of mycorrhizal plants, and total uptake and uptake per unit root dry weight or per unit root length of Cu was also increased. The higher acquisition of P, Zn and Cu in the mycorrhizal plants is ascribed to VA mycorrhiza per se (hyphal uptake and translocation to the host). Besides these direct effects, VA mycorrhizal fungi and rhizosphere microorganisms affected the acquisition of other nutrients mostly through alteration of root morphology. In both mycorrhizal and sterile treatments, the decreased concentrations of Ca and Si in the shoot but increased concentrations in the roots seem to be related to restricted apoplasmic solute transport across the endodermal barrier due to decreased number of lateral roots. The concentration of K in both shoot and roots, and Fe in shoot were lower in mycorrhizal plants due to reduced root length. Manganese concentration was also distinctly lower in both shoot and roots in mycorrhizal and sterile treatments, an effect which is attributed to the decrease in Mn reduction in the rhizosphere. Irrespective of nutrient, the uptake per unit root length was higher in mycorrhizal plants, probably due to hyphal contribution and increased supply of nutrients to the root surface by mass flow. Soil analysis indicates hyphal translocation of K but not Mg. The results demonstrate that effects of VA mycorrhizal infection on root morphology and rhizosphere microorganisms have to be considered in interpretations of mycorrhizal effects on mineral nutrient acquisition. 650 $aAbsorção de Nutrientes 650 $aFósforo 650 $aMagnésio 650 $aMicorriza Vesicular Arbuscular 650 $aPotássio 650 $aZinco 700 1 $aMARSCHNER, H. 700 1 $aROMHELD, V. 773 $tNew Phytologist$gv. 116, n. 4, p. 637-646, 1990.
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| 6. |  | BARTZ, M.; BROWN, G. G.; JAMES, S.; DECÄENS, T.; ROSA, M. da; TRIERVEILER, S.; BARRETA, D. Earthworms in land-use systems in Santa Catarina State, Brazil. In: INTERNATIONAL SYMPOSIUM ON EARTHWORM ECOLOGY, 10., 2014, Athens, Georgia. Abstracts. [S.l.: Soil Ecology Society], 2014. p. 100. ISEE 10.| Tipo: Resumo em Anais de Congresso |
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| 7. |  | LOCATELLI, M.; JAMES, S.; BROWN, G. G.; BARTZ, M.; BARRETA, D.; FORBES, A. Genotyping of putative Urobenus brasiliensis Benham, 1886 (Clitellata: Rhinodrilidae) validates geographically clustered cryptic lineages including the type locality population. In: INTERNATIONAL SYMPOSIUM ON EARTHWORM ECOLOGY, 10., 2014, Athens, Georgia. Abstracts. [S.l.: Soil Ecology Society], 2014. p. 163. ISEE 10.| Tipo: Resumo em Anais de Congresso |
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| 8. |  | BARTZ, M.; BROWN, G. G.; JAMES, S.; DECÄENS, T.; BARRETA, D. No-tillage improves earthworm species richness in southern Brazil. In: INTERNATIONAL SYMPOSIUM ON EARTHWORM ECOLOGY, 10., 2014, Athens, Georgia. Abstracts. [S.l.: Soil Ecology Society], 2014. p. 126. ISEE 10.| Tipo: Resumo em Anais de Congresso |
| Biblioteca(s): Embrapa Florestas. |
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| 9. |  | JAMES, S. W.; LOCATELLI, M.; BARTZ, M. L. C.; SILVA, E. da; BROWN, G. G.; BARRETA, D.; FORBES, A. Genotyping of putative Urobenus brasiliensis Benham, 1886 (Clitellata: Rhinodrilidae) reveals geographically clustered cryptic lineages. In: ENCONTRO LATINO-AMERICANO DE ECOLOGIA E TAXONOMIA DE OLIGOQUETAS, 5; SIMPÓSIO ENGENHEIROS EDÁFICOS, FERTILIDADE DO SOLO E TERRA PRETA DE ÍNDIO (TPI), 2015, Curitiba. Anais. [S.l.]: Federação Brasileira de plantio direto de irrigação, 2015. p. 16. Disponível online. Resumo. 5° ELAETAO.| Tipo: Resumo em Anais de Congresso |
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| 10. |  | CRESTANI, M.; CARAVALHO, F. I. F. de; OLIVEIRA, A. C. de; SILVA, J. A. G. da; GUTKOSKI, L. C.; SARTORI, J. F.; BARBIERI, R. L.; BARRETA, D. Conteúdo de b-glucana em cultivares de aveia-branca cultivadas em diferentes ambientes. Pesquisa Agropecuária Brasileira, Brasilia, DF, v. 45, n. 3, p. 261-268, mar. 2010.| Tipo: Artigo em Periódico Indexado | Circulação/Nível: A - 2 |
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| 11. |  | BARTZ, M. L. C.; BROWN, G. G.; KLAUBER FILHO, O.; ROSA, M. G. da; LOCATELLI, M.; FORALOSSO, R.; MATEUS, K.; LUCIANER, E.; ZORTÉA, T.; CASAROTTO, K.; DECÄENS, T.; BARRETA, D. Minhocas em plantio direto e integração lavoura-pecuária na região serrana do Estado de Santa Catarina. In: ENCONTRO NACIONAL DE PLANTIO DIRETO NA PALHA, 13., 2012, Passo Fundo. Sistema plantio direto, em constante evolução: resumos. Passo Fundo: Febrapdp, 2012. CD-ROM. Resumo também apresentado no CONGRESSO DE INICIAÇÃO CIENTÍFICA E PÓS-GRADUAÇÃO, 2., 2012, São Leopoldo. Mostra de iniciação científica da UNISINOS. São Leopoldo: Casa Leiria, 2012. e-book. II CICPG.| Tipo: Resumo em Anais de Congresso |
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| Registros recuperados : 11 | |
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