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丛枝菌根植物分根系统中的碳分配取决于真菌和植物种类。

Carbon partitioning in a split-root system of arbuscular mycorrhizal plants is fungal and plant species dependent.

作者信息

Lerat Sylvain, Lapointe Line, Gutjahr Sylvain, Piché Yves, Vierheilig Horst

机构信息

Département de Biologie, Pavillon Vachon, Université Laval, Québec, Canada G1K 7P4.

Centre de Recherche en Biologie Forestière, Pavillon Marchand, Université Laval, Québec, Canada G1K 7P4.

出版信息

New Phytol. 2003 Mar;157(3):589-595. doi: 10.1046/j.1469-8137.2003.00691.x.

Abstract

•   Root carbon (C) partitioning in two host plant species colonized by one of three arbuscular mycorrhizal (AM) fungal species was investigated. •   Split-root systems of barley (Hordeum vulgare) and sugar maple (Acer saccharum) were inoculated on one side with one of three AM fungi. Leaves were labelled with CO 3 wk after inoculation. Plants were harvested 24 h later and the root systems from the mycorrhizal (M) and nonmycorrhizal (NM) sides were analysed separately for C. •   Partitioning of C between M and NM sides varied depending on the fungal and host plant species used. Gigaspora rosea showed a strong C-sink capacity with both plant species, Glomus intraradices showed a strong C-sink capacity with barley, and Glomus mosseae did not affect C partitioning. The C-sink strength of the M barley roots inoculated with G. rosea or G. intraradices was linearly correlated with the degree of colonization. •   The use of three AM fungal and two plant species allowed us to conclude that C-sink strength of AM fungi depends on both partners involved in the symbiosis.

摘要

• 研究了三种丛枝菌根(AM)真菌之一定殖的两种寄主植物根系碳(C)的分配情况。

• 大麦(Hordeum vulgare)和糖枫(Acer saccharum)的分根系统一侧接种三种AM真菌之一。接种后3周用¹⁴CO₂标记叶片。24小时后收获植株,分别分析菌根(M)侧和非菌根(NM)侧根系的碳含量。

• M侧和NM侧之间的碳分配因所用真菌和寄主植物种类而异。玫瑰巨孢囊霉在两种植物中均表现出较强的碳汇能力,根内球囊霉在大麦中表现出较强的碳汇能力,而摩西球囊霉不影响碳分配。接种玫瑰巨孢囊霉或根内球囊霉的M侧大麦根的碳汇强度与定殖程度呈线性相关。

• 使用三种AM真菌和两种植物使我们能够得出结论,AM真菌的碳汇强度取决于共生关系中的双方。

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