Serveur d'exploration sur la mycorhize - Corpus (Accueil)

Index « MedMesh.i » - entrée « Sodium »
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Sociological Factors < Sodium < Sodium Azide  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 18.
Ident.Authors (with country if any)Title
000487 (2019) Carmen Guerrero-Galán ; Monica Calvo-Polanco ; Sabine Dagmar ZimmermannEctomycorrhizal symbiosis helps plants to challenge salt stress conditions.
000813 (2018) Javier Rivero ; Domingo Álvarez ; Víctor Flors ; Concepci N Azc N-Aguilar ; María J. PozoRoot metabolic plasticity underlies functional diversity in mycorrhiza-enhanced stress tolerance in tomato.
000866 (2018) Gopal Selvakumar ; Charlotte C. Shagol ; Kiyoon Kim ; Seunggab Han ; Tongmin SaSpore associated bacteria regulates maize root K+/Na+ ion homeostasis to promote salinity tolerance during arbuscular mycorrhizal symbiosis.
000893 (2018) Chunguang Liu ; Zheng Dai ; Mengying Cui ; Wenkai Lu ; Hongwen SunArbuscular mycorrhizal fungi alleviate boron toxicity in Puccinellia tenuiflora under the combined stresses of salt and drought.
000C93 (2017) Klara Scharnagl ; Anna Scharnagl ; Eric Von WettbergNature's potato chip: The role of salty fungi in a changing world.
001091 (2016) Rosa Porcel ; Ricardo Aroca ; Rosario Azcon ; Juan Manuel Ruiz-LozanoRegulation of cation transporter genes by the arbuscular mycorrhizal symbiosis in rice plants subjected to salinity suggests improved salt tolerance due to reduced Na(+) root-to-shoot distribution.
001A40 (2014) Kevin Garcia ; Amandine Delteil ; Geneviève Conéjéro ; Adeline Becquer ; Claude Plassard ; Hervé Sentenac ; Sabine ZimmermannPotassium nutrition of ectomycorrhizal Pinus pinaster: overexpression of the Hebeloma cylindrosporum HcTrk1 transporter affects the translocation of both K(+) and phosphorus in the host plant.
001C97 (2013) Zhongqun He ; Zhi HuangExpression analysis of LeNHX1 gene in mycorrhizal tomato under salt stress.
001D10 (2013) Beatriz Estrada ; Ricardo Aroca ; Frans J M. Maathuis ; José Miguel Barea ; Juan Manuel Ruiz-LozanoArbuscular mycorrhizal fungi native from a Mediterranean saline area enhance maize tolerance to salinity through improved ion homeostasis.
001F57 (2012) Jing Li ; Siqin Bao ; Yuhong Zhang ; Xujun Ma ; Manika Mishra-Knyrim ; Jian Sun ; Gang Sa ; Xin Shen ; Andrea Polle ; Shaoliang ChenPaxillus involutus strains MAJ and NAU mediate K(+)/Na(+) homeostasis in ectomycorrhizal Populus x canescens under sodium chloride stress.
001F97 (2012) I. García ; R. MendozaImpact of defoliation intensities on plant biomass, nutrient uptake and arbuscular mycorrhizal symbiosis in Lotus tenuis growing in a saline-sodic soil.
002013 (2012) Masahide Yamato ; Takahiro Yagame ; Yuko Yoshimura ; Koji IwaseEffect of environmental gradient in coastal vegetation on communities of arbuscular mycorrhizal fungi associated with Ixeris repens (Asteraceae).
002654 (2011) Edith C. Hammer ; Hafedh Nasr ; Jan Pallon ; P L Axel Olsson ; H Kan WallanderElemental composition of arbuscular mycorrhizal fungi at high salinity.
002E87 (2007) Claire Corratgé ; Sabine Zimmermann ; Raphaël Lambilliotte ; Claude Plassard ; Roland Marmeisse ; Jean-Baptiste Thibaud ; Benoît Lacombe ; Hervé SentenacMolecular and functional characterization of a Na(+)-K(+) transporter from the Trk family in the ectomycorrhizal fungus Hebeloma cylindrosporum.
002F94 (2007) Bhoopander Giri ; Rupam Kapoor ; K G MukerjiImproved tolerance of Acacia nilotica to salt stress by Arbuscular mycorrhiza, Glomus fasciculatum may be partly related to elevated K/Na ratios in root and shoot tissues.
003258 (2006) H. Nguyen ; M. Calvo Polanco ; J J ZwiazekGas exchange and growth responses of ectomycorrhizal Picea mariana, Picea glauca, and Pinus banksiana seedlings to NaCl and Na2SO4.
003425 (2006) G. Bois ; A. Bertrand ; Y. Piché ; M. Fung ; D P KhasaGrowth, compatible solute and salt accumulation of five mycorrhizal fungal species grown over a range of NaCl concentrations.
003840 (2004) Bhoopander Giri ; K G MukerjiMycorrhizal inoculant alleviates salt stress in Sesbania aegyptiaca and Sesbania grandiflora under field conditions: evidence for reduced sodium and improved magnesium uptake.

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