4.7 Article

Constitutive overexpression of the sucrose transporter SoSUT1 in potato plants increases arbuscular mycorrhiza fungal root colonization under high, but not under low, soil phosphorus availability

期刊

JOURNAL OF PLANT PHYSIOLOGY
卷 168, 期 9, 页码 911-919

出版社

ELSEVIER GMBH
DOI: 10.1016/j.jplph.2010.11.026

关键词

Arbuscular mycorrhiza; Carbohydrate partitioning; Phloem loading; Phosphorus nutrition; Sucrose transporter SUT1

资金

  1. MYCHINTEC INCO-DEV [ICA4-CT-2000-30014]
  2. States of Brandenburg
  3. Free State of Thuringia
  4. Federal Republic of Germany

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The sucrose transporter SUT1 functions in phloem loading of photoassimilates in solanaceous plant species. In the present study, wildtype and transgenic potato plants with either constitutive overexpression or antisense inhibition of SUT1 were grown under high or low phosphorus (P) fertilization levels in the presence or absence of the arbuscular mycorrhizal (AM) fungus Glomus intraradices. At a low soil P fertilization level, the extent of AM fungal root colonization was not different among the genotypes. In all plants, the AM symbiosis contributed significantly to P uptake under these conditions. In response to a high soil P fertilization level, all genotypes showed a decrease in AM fungal root colonization, indicating that the expression level of SUT1 does not constitute a major mechanism of control over AM development in response to the soil P availability. However, plants with overexpression of SUT1 showed a higher extent of AM fungal root colonization compared with the other genotypes when the soil P availability was high. Whether an increased symbiotic C supply, alterations in the phytohormonal balance, or a decreased synthesis of antimicrobial compounds was the major cause for this effect requires further investigation. In plants with impaired phloem loading, a low C status of plant sink tissues did apparently not negatively affect plant C supply to the AM symbiosis. It is possible that, at least during vegetative and early generative growth, source rather than sink tissues exert control over amounts of C supplied to AM fungi. (C) 2011 Elsevier GmbH. All rights reserved.

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