Disentangling the impact of AM fungi versus roots on soil structure and water transport
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Root Parameters Show How Management Alters Resource Distribution and Soil Quality in Conventional and Low-Input Cropping Systems in Central IowaMicrobial diversity affects self-organization of the soil-microbe system with consequences for functionThe potential role of arbuscular mycorrhizal fungi in protecting endangered plants and habitats.Symbiosis of Arbuscular Mycorrhizal Fungi and Robinia pseudoacacia L. Improves Root Tensile Strength and Soil Aggregate StabilitySoil compaction: a review of past and present techniques for investigating effects on root growth.Glomalin: an arbuscular mycorrhizal fungal soil protein.Using mycorrhiza-defective mutant genotypes of non-legume plant species to study the formation and functioning of arbuscular mycorrhiza: a review.Variability in colonization of arbuscular mycorrhizal fungi and its effect on mycorrhizal dependency of improved and unimproved soybean cultivars.Assessing the influence of the rhizosphere on soil hydraulic properties using X-ray computed tomography and numerical modelling.High-resolution synchrotron imaging shows that root hairs influence rhizosphere soil structure formation.Plant diversity and root traits benefit physical properties key to soil function in grasslandsPatterns in spatial distribution and root trait syndromes for ecto and arbuscular mycorrhizal temperate trees in a mixed broadleaf forest.The reduced mycorrhizal colonisation (rmc) mutation of tomato disrupts five gene sequences including the CYCLOPS/IPD3 homologue.Genetic variability in arbuscular mycorrhizal fungi compatibility supports the selection of durum wheat genotypes for enhancing soil ecological services and cropping systems in Canada.Root hair length and rhizosheath mass depend on soil porosity, strength and water content in barley genotypes.Subcritical soil hydrophobicity in the presence of native and exotic arbuscular mycorrhizal species at different soil salinity levelsIncreases in Soil Aggregation Following Phosphorus Additions in a Tropical Premontane Forest are Not Driven by Root and Arbuscular Mycorrhizal Fungal AbundancesContribution of arbuscular mycorrhizal fungi to the development of maize (Zea mays L.) grown in three types of coal mine spoilsMycorrhizal Interactions for Reforestation: Constraints to Dryland Agroforest in BrazilIncrease in soil aggregate stability along a Mediterranean successional gradient in severely eroded gully bed ecosystems: combined effects of soil, root traits and plant community characteristics
P2860
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P2860
Disentangling the impact of AM fungi versus roots on soil structure and water transport
description
im Juli 2008 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в липні 2008
@uk
name
Disentangling the impact of AM fungi versus roots on soil structure and water transport
@en
Disentangling the impact of AM fungi versus roots on soil structure and water transport
@nl
type
label
Disentangling the impact of AM fungi versus roots on soil structure and water transport
@en
Disentangling the impact of AM fungi versus roots on soil structure and water transport
@nl
prefLabel
Disentangling the impact of AM fungi versus roots on soil structure and water transport
@en
Disentangling the impact of AM fungi versus roots on soil structure and water transport
@nl
P2093
P1433
P1476
Disentangling the impact of AM fungi versus roots on soil structure and water transport
@en
P2093
A. Glyn Bengough
Charlie M. Scrimgeour
Debbie S. Feeney
Iain M. Young
Paul D. Hallett
P2888
P304
P356
10.1007/S11104-008-9717-Y
P577
2008-07-26T00:00:00Z