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Effects of a mixed-isolate mycorrhizal inoculum on the potato - Potato cyst nematode interaction

  • N. A. Ryan
  • , T. Deliopoulos
  • , P. Jones
  • , P. P.J. Haydock
  • Harper Adams University

Research output: Contribution to journalArticlepeer-review

Abstract

Inoculation of microplants of potato cv. Golden Wonder with Vaminoc, a mycorrhizal inoculum of three arbuscular mycorrhizal fungi (Glomus spp.), resulted in an increase in in-sand hatch of Globodera pallida, but not G. rostochiensis, within 2 weeks. By this time, mycorrhized plants also supported a larger number of feeding nematodes of both PCN species (50% higher for G. rostochiensis) than did non-mycorrhized plants, with a higher proportion of the G. pallida population being fertilised females than for G. rostochiensis. After 12 weeks, the multiplication rate of G. rostochiensis on mycorrhized plants was significantly greater than on non-mycorrhized plants, whereas no such difference was observed for G. pallida. The principal component of PCN multiplication affected by mycorrhization was increased cyst number per plant from 6 to 12 weeks. Over this period, there was no increase in cyst number per plant for either PCN species on non-mycorrhized plants, whereas the value increased on mycorrhized plants for both G. rostochiensis (by almost 200%) and G. pallida (57%). Mycorrhization resulted in significant increases in the root and shoot dry weights of plants grown in the absence of PCN. Although mycorrhized plants carried a larger PCN burden than non-mycorrhized plants when grown on PCN-infested medium, as a result of the increased PCN multiplication rate, they produced larger root systems than did non-mycorrhized plants, suggesting increased tolerance to PCN of the mycorrhized plants, particularly to G. rostochiensis. Of morphological characters investigated in the absence of PCN, only stem height (increased) was significantly affected by mycorrhization. Colonisation by mycorrhizal fungi resulted in increased tuber yield both in the absence (significant increase) and presence (non significant) of PCN, as a result of increased tuber number per plant. These results are discussed in the light of the possible use of AMF as part of an integrated PCN management plan.

Original languageEnglish
Pages (from-to)111-119
Number of pages9
JournalAnnals of Applied Biology
Volume143
Issue number1
DOIs
Publication statusPublished - 2003

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 2 - Zero Hunger
    SDG 2 Zero Hunger

Keywords

  • Arbuscular mycorrhizal fungi
  • Globodera pallida
  • Globodera rostochiensis
  • Hatching
  • Integrated pest management
  • Mycorrhiza
  • Potato cyst nematode
  • Potatoes

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