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Arabidopsis HIPP27 is a host susceptibility gene for the beet cyst nematode Heterodera schachtii
Authors:Zoran S. Radakovic  Muhammad Shahzad Anjam  Elizabeth Escobar  Divykriti Chopra  Javier Cabrera  Ana Cláudia Silva  Carolina Escobar  Miroslaw Sobczak  Florian M. W. Grundler  Shahid Siddique
Affiliation:1. INRES–Molecular Phytomedicine, Rheinische‐Friedrich‐Wilhelms‐University of Bonn, Germany;2. Facultad de Ciencias Ambientales y Bioquímica, Universidad de Castilla‐La Mancha, área de Fisiología Vegetal, Avda, Carlos III, s/n, 45071 Toledo, Spain;3. Department of Botany, Warsaw University of Life Sciences, Poland
Abstract:Sedentary plant‐parasitic cyst nematodes are obligate biotrophs that infect the roots of their host plant. Their parasitism is based on the modification of root cells to form a hypermetabolic syncytium from which the nematodes draw their nutrients. The aim of this study was to identify nematode susceptibility genes in Arabidopsis thaliana and to characterize their roles in supporting the parasitism of Heterodera schachtii. By selecting genes that were most strongly upregulated in response to cyst nematode infection, we identified HIPP27 (HEAVY METAL‐ASSOCIATED ISOPRENYLATED PLANT PROTEIN 27) as a host susceptibility factor required for beet cyst nematode infection and development. Detailed expression analysis revealed that HIPP27 is a cytoplasmic protein and that HIPP27 is strongly expressed in leaves, young roots and nematode‐induced syncytia. Loss‐of‐function Arabidopsis hipp27 mutants exhibited severely reduced susceptibility to H. schachtii and abnormal starch accumulation in syncytial and peridermal plastids. Our results suggest that HIPP27 is a susceptibility gene in Arabidopsis whose loss of function reduces plant susceptibility to cyst nematode infection without increasing the susceptibility to other pathogens or negatively affecting the plant phenotype.
Keywords:cyst nematode  Heterodera schachtii  HIPP27  plant‐parasitic nematodes  starch  susceptibility gene  syncytium
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