Serveur d'exploration sur la mycorhize

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[Regulation effect of soil P availability on mycorrhizal infection in relation to root architecture and P efficiency of Glycine max].

Identifieur interne : 002B41 ( Main/Exploration ); précédent : 002B40; suivant : 002B42

[Regulation effect of soil P availability on mycorrhizal infection in relation to root architecture and P efficiency of Glycine max].

Auteurs : Ling Liu [République populaire de Chine] ; Hong Liao ; Xiu-Rong Wang ; Xiao-Long Yan

Source :

RBID : pubmed:18533526

Descripteurs français

English descriptors

Abstract

A pot experiment with thirty soybean (Glycine max) genotypes differing in root architecture was conducted to investigate the effects of soil phosphorus (P) availability on the colonization of arbuscular mycorrhizae (AM) fungus (Glomus mosseae) as well as the relationships of the colonization with the root architecture and P efficiency of soybean. The results indicated that soil P availability had significant effects on the colonization of G. mosseae. Under low P condition, the AM had a higher infection rate and contributed more to the P uptake by soybean; while under high P condition, it was in adverse. There was a significant interaction between soybean genotypes and soil P availability on the colonization of G. mosseae. Under low P condition, the soybean genotypes with intermediate and deep root architectures had the highest infection rate of AM, but on the contrary, no significant correlation was observed between root architecture and AM colonization under high-P condition. In general, P-efficient soybean genotypes had better root architecture or higher AM colonization, indicating that a complementary relationship between root architecture and AM colonization was existed on their contribution to soybean P efficiency.

PubMed: 18533526


Affiliations:


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Le document en format XML

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<title xml:lang="en">[Regulation effect of soil P availability on mycorrhizal infection in relation to root architecture and P efficiency of Glycine max].</title>
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<name sortKey="Liu, Ling" sort="Liu, Ling" uniqKey="Liu L" first="Ling" last="Liu">Ling Liu</name>
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<nlm:affiliation>Root Biology Center, South China Agricultural University, Guangzhou 510642, China. liuling@mailbox.gxnu.edu.cn</nlm:affiliation>
<country xml:lang="fr">République populaire de Chine</country>
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<name sortKey="Liao, Hong" sort="Liao, Hong" uniqKey="Liao H" first="Hong" last="Liao">Hong Liao</name>
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<name sortKey="Wang, Xiu Rong" sort="Wang, Xiu Rong" uniqKey="Wang X" first="Xiu-Rong" last="Wang">Xiu-Rong Wang</name>
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<name sortKey="Yan, Xiao Long" sort="Yan, Xiao Long" uniqKey="Yan X" first="Xiao-Long" last="Yan">Xiao-Long Yan</name>
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<term>Mycorrhizae (metabolism)</term>
<term>Phosphorus (metabolism)</term>
<term>Phosphorus (pharmacology)</term>
<term>Plant Roots (genetics)</term>
<term>Plant Roots (metabolism)</term>
<term>Plant Roots (microbiology)</term>
<term>Soil (analysis)</term>
<term>Soil Microbiology (MeSH)</term>
<term>Soybeans (genetics)</term>
<term>Soybeans (metabolism)</term>
<term>Soybeans (microbiology)</term>
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<keywords scheme="KwdFr" xml:lang="fr">
<term>Génotype (MeSH)</term>
<term>Microbiologie du sol (MeSH)</term>
<term>Mycorhizes (croissance et développement)</term>
<term>Mycorhizes (effets des médicaments et des substances chimiques)</term>
<term>Mycorhizes (métabolisme)</term>
<term>Phosphore (métabolisme)</term>
<term>Phosphore (pharmacologie)</term>
<term>Racines de plante (génétique)</term>
<term>Racines de plante (microbiologie)</term>
<term>Racines de plante (métabolisme)</term>
<term>Soja (génétique)</term>
<term>Soja (microbiologie)</term>
<term>Soja (métabolisme)</term>
<term>Sol (analyse)</term>
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<term>Soil</term>
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<term>Phosphorus</term>
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<term>Sol</term>
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<term>Mycorhizes</term>
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<term>Mycorrhizae</term>
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<term>Plant Roots</term>
<term>Soybeans</term>
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<term>Mycorrhizae</term>
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<term>Racines de plante</term>
<term>Soja</term>
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<term>Mycorrhizae</term>
<term>Plant Roots</term>
<term>Soybeans</term>
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<term>Racines de plante</term>
<term>Soja</term>
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<term>Genotype</term>
<term>Soil Microbiology</term>
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<front>
<div type="abstract" xml:lang="en">A pot experiment with thirty soybean (Glycine max) genotypes differing in root architecture was conducted to investigate the effects of soil phosphorus (P) availability on the colonization of arbuscular mycorrhizae (AM) fungus (Glomus mosseae) as well as the relationships of the colonization with the root architecture and P efficiency of soybean. The results indicated that soil P availability had significant effects on the colonization of G. mosseae. Under low P condition, the AM had a higher infection rate and contributed more to the P uptake by soybean; while under high P condition, it was in adverse. There was a significant interaction between soybean genotypes and soil P availability on the colonization of G. mosseae. Under low P condition, the soybean genotypes with intermediate and deep root architectures had the highest infection rate of AM, but on the contrary, no significant correlation was observed between root architecture and AM colonization under high-P condition. In general, P-efficient soybean genotypes had better root architecture or higher AM colonization, indicating that a complementary relationship between root architecture and AM colonization was existed on their contribution to soybean P efficiency.</div>
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<DateRevised>
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<Day>16</Day>
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<Month>Mar</Month>
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<Title>Ying yong sheng tai xue bao = The journal of applied ecology</Title>
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<AbstractText>A pot experiment with thirty soybean (Glycine max) genotypes differing in root architecture was conducted to investigate the effects of soil phosphorus (P) availability on the colonization of arbuscular mycorrhizae (AM) fungus (Glomus mosseae) as well as the relationships of the colonization with the root architecture and P efficiency of soybean. The results indicated that soil P availability had significant effects on the colonization of G. mosseae. Under low P condition, the AM had a higher infection rate and contributed more to the P uptake by soybean; while under high P condition, it was in adverse. There was a significant interaction between soybean genotypes and soil P availability on the colonization of G. mosseae. Under low P condition, the soybean genotypes with intermediate and deep root architectures had the highest infection rate of AM, but on the contrary, no significant correlation was observed between root architecture and AM colonization under high-P condition. In general, P-efficient soybean genotypes had better root architecture or higher AM colonization, indicating that a complementary relationship between root architecture and AM colonization was existed on their contribution to soybean P efficiency.</AbstractText>
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