4.7 Article

Endophytic Colonization of Onions Induces Resistance Against Viruliferous Thrips and Virus Replication

期刊

FRONTIERS IN PLANT SCIENCE
卷 9, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fpls.2018.01785

关键词

Hypocrea lixii; Thrips tabaci; Iris yellow spot virus; onions; systemic; host plant resistance; multi-trophic interactions

资金

  1. BMZ (The German Federal Ministry for Economic Cooperation and Development) through GIZ (Deutsche Gesellschaft fur Internationale Zusammenarbeit) [11.7860.7-001.00, 81141840]
  2. United Kingdom Government
  3. Swedish International Development Cooperation Agency (Sida)
  4. Swiss Agency for Development and Cooperation (SDC)
  5. Federal Ministry for Economic Cooperation and Development (BMZ)
  6. Germany and the Kenyan Government
  7. Open Access fund of Leibniz Universitat Hannover

向作者/读者索取更多资源

In agricultural ecosystems, insect pests, pathogens, weather patterns, and reduced soil fertility pose major challenges to crop productivity and are responsible for significant yield losses worldwide. Iris yellow spot virus (IYSV) vectored by Thrips tabaci Lindeman, is a major hindrance to onion production in eastern Africa. Control measures often rely on insecticides with deleterious effects. Endophytes are one key alternative as they can play important roles in mediating induced systemic resistance. Hence, we examined the potential effect of endophytic fungus Hypocrea lixii (F3ST1) on feeding and replication of IYSV on endophyte-colonized (E+) and endophyte-free (E-) onion plants. For more precise assessment, replication was also tested using leaf disk bioassays and individual thrips. The number of feeding punctures was significantly lower in E+ as compared to E- plants. Disease level was significantly lower in E+ as compared to E- plants for four weeks post-exposure to thrips. IYSV replication was reduced by 2.5-fold in endophytic treatment on both whole plant and leaf disk assays. Thrips tabaci showed 2 times higher feeding activities on endophyte-free onion leaf disks as compared to the endophyte-inoculated leaf disks. Our results suggest potential utility of the endophytes to reduce feeding damage and virus infection on onion plants. Further studies should be conducted to elucidate the secondary metabolites involved in such endophyte-thripsvirus mediated interaction and determine whether the interactions extend for this and other onion varieties and viruses under field conditions.

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