4.7 Article

An apple cyclic nucleotide-gated ion channel gene highly responsive to Botryosphaeria dothidea infection enhances the susceptibility of Nicotiana benthamiana to bacterial and fungal pathogens

Journal

PLANT SCIENCE
Volume 269, Issue -, Pages 94-105

Publisher

ELSEVIER IRELAND LTD
DOI: 10.1016/j.plantsci.2018.01.009

Keywords

Botryosphaeria dothidea; Cyclic nucleotide-gated ion channel; Innate immunity; Malus x domestica; Pathogen infection

Funding

  1. National Natural Science Foundation of China [31471853]
  2. China Agricultural Research System [CARS-28-01-07]
  3. Advanced Talents Foundation of Qingdao Agricultural University [631436]
  4. Qingdao Science and Technology Program [12-1-4-5-(1)-jch]
  5. Project for Modern Fruit Tree Industry Techological System of Qingdao [6622316107]

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Apple ring rot caused by the fungus Botryosphaeria dothidea is one of the devastating diseases. Up to date, the responsive mechanism of apple plant to this disease remains unclear. In the present study, an apple CNGC gene (designated as MdCNGC1) was found among highly expressed genes responding to B. dothidea infection. The expression of MdCNGC1 was different among apple cultivars with different resistance to B. dothidea. Intriguingly, MdCNGC1 expression was not induced by other two apple pathogens, Marssonina coronaria and Valsa ceratosperma. Ectopic overexpression of MdCNGC1 in Nicotiana benthamiana conferred elevated susceptibility to bacterial and fungal pathogens. Notably, overexpression of MdCNGC1 reduced salicylic acid (SA) accumulation induced by Alternaria alternate or Pseudomonas syringae. Decreased induction of pathogenesis-related (PR) genes and ROS accumulation were also observed in MdCNGC1-overexpressing plants. Up-regulated scavenging systems as indicated by enhanced expressions of CAT, APX, SOD genes and activities of antioxidative enzymes may in part contribute to reduced ROS accumulation. MdCNGC1 expression in N. benthamiana also decreased flg22 and chitosan-induced callose deposition and lowered the expression of NbPMR4, an ortholog of Arabidopsis callose synthase gene PMR4. These combined results suggested that MdCNGC1 might be a negative factor to plant resistance to bacterial and fungal pathogens.

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