Diversity of ectomycorrhizal fungi naturally established on containerised Pinus seedlings in nursery conditions.
Identifieur interne : 003586 ( Main/Curation ); précédent : 003585; suivant : 003587Diversity of ectomycorrhizal fungi naturally established on containerised Pinus seedlings in nursery conditions.
Auteurs : Khalid El Karkouri [France] ; Francis Martin ; J P Emmanuel Douzery ; Daniel MousainSource :
- Microbiological research [ 0944-5013 ] ; 2005.
Descripteurs français
- KwdFr :
- ADN fongique (génétique), Basidiomycota (génétique), Basidiomycota (isolement et purification), Espaceur de l'ADN ribosomique (MeSH), Mycorhizes (génétique), Mycorhizes (isolement et purification), Pinus (croissance et développement), Pinus (microbiologie), Plant (croissance et développement), Plant (microbiologie), Polymorphisme de restriction (MeSH), Racines de plante (microbiologie), Réaction de polymérisation en chaîne (MeSH), Spécificité d'espèce (MeSH), Symbiose (MeSH), Éléments transposables d'ADN (MeSH).
- MESH :
- croissance et développement : Pinus, Plant.
- génétique : ADN fongique, Basidiomycota, Mycorhizes.
- isolement et purification : Basidiomycota, Mycorhizes.
- microbiologie : Pinus, Plant, Racines de plante.
- Espaceur de l'ADN ribosomique, Polymorphisme de restriction, Réaction de polymérisation en chaîne, Spécificité d'espèce, Symbiose, Éléments transposables d'ADN.
English descriptors
- KwdEn :
- Basidiomycota (genetics), Basidiomycota (isolation & purification), DNA Transposable Elements (MeSH), DNA, Fungal (genetics), DNA, Ribosomal Spacer (MeSH), Mycorrhizae (genetics), Mycorrhizae (isolation & purification), Pinus (growth & development), Pinus (microbiology), Plant Roots (microbiology), Polymerase Chain Reaction (MeSH), Polymorphism, Restriction Fragment Length (MeSH), Seedlings (growth & development), Seedlings (microbiology), Species Specificity (MeSH), Symbiosis (MeSH).
- MESH :
- chemical , genetics : DNA, Fungal.
- chemical : DNA Transposable Elements, DNA, Ribosomal Spacer.
- genetics : Basidiomycota, Mycorrhizae.
- growth & development : Pinus, Seedlings.
- isolation & purification : Basidiomycota, Mycorrhizae.
- microbiology : Pinus, Plant Roots, Seedlings.
- Polymerase Chain Reaction, Polymorphism, Restriction Fragment Length, Species Specificity, Symbiosis.
Abstract
The study examined the diversity of ectomycorrhizal fungi, naturally established on roots of containerised Pinus seedlings in a nursery, using PCR-RFLP and sequencing of the nuclear ribosomal internal transcribed spacer. Seventy-two samples, including ectomycorrhizae and fruit bodies, were examined. Molecular typing assigned the fungal symbionts to four ectomycorrhizal Boletales: Rhizopogon rubescens, Suillus bovinus, S. variegatus, and R. luteolus. R. rubescens was abundant (37.5%), while Suillus and R. luteolus species were moderately established (25-26%) and rare (2.8%), respectively. In addition, Rhizopogon species colonised P. nigra ssp. salzmannii seedlings, whereas Suillus species were identified on Pinus nigra ssp. nigra seedlings. The diversity and the ability of these naturally established symbionts under artificial nursery conditions were discussed. The molecular survey investigated here should contribute to successful monitoring of mycorrhizal application under both nursery and plantation conditions.
DOI: 10.1016/j.micres.2004.09.008
PubMed: 15782937
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pubmed:15782937Le document en format XML
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<term>Pinus (growth & development)</term>
<term>Pinus (microbiology)</term>
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<term>Polymerase Chain Reaction (MeSH)</term>
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<term>Réaction de polymérisation en chaîne</term>
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<front><div type="abstract" xml:lang="en">The study examined the diversity of ectomycorrhizal fungi, naturally established on roots of containerised Pinus seedlings in a nursery, using PCR-RFLP and sequencing of the nuclear ribosomal internal transcribed spacer. Seventy-two samples, including ectomycorrhizae and fruit bodies, were examined. Molecular typing assigned the fungal symbionts to four ectomycorrhizal Boletales: Rhizopogon rubescens, Suillus bovinus, S. variegatus, and R. luteolus. R. rubescens was abundant (37.5%), while Suillus and R. luteolus species were moderately established (25-26%) and rare (2.8%), respectively. In addition, Rhizopogon species colonised P. nigra ssp. salzmannii seedlings, whereas Suillus species were identified on Pinus nigra ssp. nigra seedlings. The diversity and the ability of these naturally established symbionts under artificial nursery conditions were discussed. The molecular survey investigated here should contribute to successful monitoring of mycorrhizal application under both nursery and plantation conditions.</div>
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<Abstract><AbstractText>The study examined the diversity of ectomycorrhizal fungi, naturally established on roots of containerised Pinus seedlings in a nursery, using PCR-RFLP and sequencing of the nuclear ribosomal internal transcribed spacer. Seventy-two samples, including ectomycorrhizae and fruit bodies, were examined. Molecular typing assigned the fungal symbionts to four ectomycorrhizal Boletales: Rhizopogon rubescens, Suillus bovinus, S. variegatus, and R. luteolus. R. rubescens was abundant (37.5%), while Suillus and R. luteolus species were moderately established (25-26%) and rare (2.8%), respectively. In addition, Rhizopogon species colonised P. nigra ssp. salzmannii seedlings, whereas Suillus species were identified on Pinus nigra ssp. nigra seedlings. The diversity and the ability of these naturally established symbionts under artificial nursery conditions were discussed. The molecular survey investigated here should contribute to successful monitoring of mycorrhizal application under both nursery and plantation conditions.</AbstractText>
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