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丛枝菌根真菌对玉米根中蔗糖合酶编码基因的表达有不同影响。

Arbuscular mycorrhizal fungi differentially affect expression of genes coding for sucrose synthases in maize roots.

作者信息

Ravnskov Sabine, Wu Yong, Graham James H

机构信息

Department of Crop Protection, Danish Institute of Agricultural Sciences, Research Centre Flakkebjerg DK-4200 Slagelse, Denmark.

Citrus Research and Education Center, University of Florida, Institute of Food and Agricultural Sciences, Lake Alfred, Florida 33850, USA.

出版信息

New Phytol. 2003 Mar;157(3):539-545. doi: 10.1046/j.1469-8137.2003.00692.x.

Abstract

•   The effects of three arbuscular mycorrhizal (AM) fungal isolates on the expression of genes coding for sucrose synthase and on the nonstructural carbohydrate (CHO) status of maize roots were evaluated. Gene expression and CHOs were compared with their status in nonmycorrhizal plants grown at three soil phosphorus (P) concentrations. •   The AM fungi and soil P supply influenced expression of genes coding for sucrose synthase in maize roots. In general, up to 18 d after plant emergence, AM colonization increased the expression of genes coding for sucrose synthase in maize roots, whereas increasing soil P decreased this gene expression. The responses in gene expression were detected earlier than other effects of AM fungal colonization, such as increased leaf P status and plant growth response under limiting P supply. •   Higher sucrose-synthase gene expression was not related to the concentration of sucrose, reducing sugars or starch in the root tissue. •   Higher gene expression in AM roots confirms that there is greater allocation of sucrose from nonstructural CHO pools in roots for the AM fungus during the earliest phase of colonization than in nonmycorrhizal roots.

摘要

• 评估了三种丛枝菌根(AM)真菌分离物对编码蔗糖合酶的基因表达以及玉米根中非结构性碳水化合物(CHO)状态的影响。将基因表达和CHO与在三种土壤磷(P)浓度下生长的非菌根植物中的情况进行了比较。

• AM真菌和土壤磷供应影响玉米根中编码蔗糖合酶的基因表达。一般来说,在植物出苗后长达18天,AM定殖增加了玉米根中编码蔗糖合酶的基因表达,而增加土壤磷则降低了该基因表达。基因表达的响应比AM真菌定殖的其他影响更早被检测到,例如在磷供应受限的情况下叶片磷状态增加和植物生长响应。

• 较高的蔗糖合酶基因表达与根组织中蔗糖、还原糖或淀粉的浓度无关。

• AM根中较高的基因表达证实,在定殖的最早阶段,与非菌根根相比,根中非结构性CHO库向AM真菌分配的蔗糖更多。

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