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

Index « Auteurs » - entrée « Stephanie J. Watts-Williams »
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Stephanie Hunt < Stephanie J. Watts-Williams < Stephanie Kivlin  Facettes :

List of bibliographic references indexed by Stephanie J. Watts-Williams

Number of relevant bibliographic references: 13.
Ident.Authors (with country if any)Title
000033 (2020) Ahmed A. Al Mutairi [Arabie saoudite] ; Timothy R. Cavagnaro [Australie] ; Shi Fang Khor [Australie] ; Kylie Neumann [Australie] ; Rachel A. Burton [Australie] ; Stephanie J. Watts-Williams [Australie]The effect of zinc fertilisation and arbuscular mycorrhizal fungi on grain quality and yield of contrasting barley cultivars.
000177 (2020) Cuc T K. Tran [Australie] ; Stephanie J. Watts-Williams [Australie] ; Ronald J. Smernik [Australie] ; Timothy R. Cavagnaro [Australie]Effects of plant roots and arbuscular mycorrhizas on soil phosphorus leaching.
000282 (2019) Stephanie J. Watts-Williams [Australie] ; Timothy R. Cavagnaro [Australie] ; Stephen D. Tyerman [Australie]Variable effects of arbuscular mycorrhizal fungal inoculation on physiological and molecular measures of root and stomatal conductance of diverse Medicago truncatula accessions.
000311 (2019) Antonio Coccina [Italie] ; Timothy R. Cavagnaro [Australie] ; Elisa Pellegrino [Italie] ; Laura Ercoli [Italie] ; Michael J. Mclaughlin [Australie] ; Stephanie J. Watts-Williams [Australie]The mycorrhizal pathway of zinc uptake contributes to zinc accumulation in barley and wheat grain.
000316 (2019) Thi Diem Nguyen [Australie, Viêt Nam] ; Timothy R. Cavagnaro [Australie] ; Stephanie J. Watts-Williams [Australie]The effects of soil phosphorus and zinc availability on plant responses to mycorrhizal fungi: a physiological and molecular assessment.
000510 (2019) Binh T T. Tran [Viêt Nam] ; Stephanie J. Watts-Williams [Australie] ; Timothy R. Cavagnaro [Australie]Impact of an arbuscular mycorrhizal fungus on the growth and nutrition of fifteen crop and pasture plant species.
000590 (2019) Stephanie J. Watts-Williams [États-Unis] ; Bryan D. Emmett [États-Unis] ; Veronique Levesque-Tremblay [États-Unis] ; Allyson M. Maclean [États-Unis] ; Xuepeng Sun [États-Unis] ; James W. Satterlee [États-Unis] ; Zhangjun Fei [États-Unis] ; Maria J. Harrison [États-Unis]Diverse Sorghum bicolor accessions show marked variation in growth and transcriptional responses to arbuscular mycorrhizal fungi.
000656 (2019) Binh T T. Tran [Australie, Viêt Nam] ; Timothy R. Cavagnaro [Australie] ; Stephanie J. Watts-Williams [Australie]Arbuscular mycorrhizal fungal inoculation and soil zinc fertilisation affect the productivity and the bioavailability of zinc and iron in durum wheat.
000783 (2018) Nanna B. Svenningsen [Danemark] ; Stephanie J. Watts-Williams [Australie] ; Erik J. Joner [Norvège] ; Fabio Battini [Italie] ; Aikaterini Efthymiou [Danemark] ; Carla Cruz-Paredes [Danemark] ; Ole Nybroe [Danemark] ; Iver Jakobsen [Danemark]Suppression of the activity of arbuscular mycorrhizal fungi by the soil microbiota.
000A71 (2018) Stephanie J. Watts-Williams [Australie] ; Timothy R. Cavagnaro [Australie]Arbuscular mycorrhizal fungi increase grain zinc concentration and modify the expression of root ZIP transporter genes in a modern barley (Hordeum vulgare) cultivar.
001038 (2016) Iver Jakobsen [Danemark] ; Sally E. Smith [Danemark, Australie] ; F Andrew Smith [Danemark, Australie] ; Stephanie J. Watts-Williams [Danemark, États-Unis] ; Signe S. Clausen [Danemark] ; Mette Gr Nlund [Danemark]Plant growth responses to elevated atmospheric CO2 are increased by phosphorus sufficiency but not by arbuscular mycorrhizas.
001336 (2015) Stephanie J. Watts-Williams [Australie, États-Unis] ; Timothy R. Cavagnaro [Australie]Using mycorrhiza-defective mutant genotypes of non-legume plant species to study the formation and functioning of arbuscular mycorrhiza: a review.
001508 (2015) Stephanie J. Watts-Williams [Danemark] ; Iver Jakobsen [Danemark] ; Timothy R. Cavagnaro [Australie] ; Mette Gr Nlund [Danemark]Local and distal effects of arbuscular mycorrhizal colonization on direct pathway Pi uptake and root growth in Medicago truncatula.

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