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Ascorbate peroxidase 1 confers resistance to southern corn leaf blight in maize

  • Jinghua Zhang
  • , Xingmeng Jia
  • , Guan-Feng Wang
  • , Shijun Ma
  • , Shunxi Wang
  • , Qin Yang
  • , Xueyan Chen
  • , Yuqian Zhang
  • , Yajing Lyu
  • , Xiaoxu Wang
  • , Jiawei Shi
  • , Yangtao Zhao
  • , Yanhui Chen
  • , Liuji Wu

Research output: Contribution to journalArticlepeer-review

42 Citations (Scopus)

Abstract

Southern corn leaf blight (SCLB), caused by Bipolaris maydis, is one of the most devastating diseases affecting maize production. However, only one SLCB resistance gene, conferring partial resistance, is currently known, underscoring the importance of isolating new SCLB resistance-related genes. Here, we performed a comparative proteomic analysis and identified 258 proteins showing differential abundance during the maize response to B. maydis. These proteins included an ascorbate peroxidase (Zea mays ascorbate peroxidase 1 (ZmAPX1)) encoded by a gene located within the mapping interval of a previously identified quantitative trait locus associated with SCLB resistance. ZmAPX1 overexpression resulted in lower H2O2 accumulation and enhanced resistance against B. maydis. Jasmonic acid (JA) contents and transcript levels for JA biosynthesis and responsive genes increased in ZmAPX1-overexpressing plants infected with B. maydis, whereas Zmapx1 mutants showed the opposite effects. We further determined that low levels of H2O2 are accompanied by an accumulation of JA that enhances SCLB resistance. These results demonstrate that ZmAPX1 positively regulates SCLB resistance by decreasing H2O2 accumulation and activating the JA-mediated defense signaling pathway. This study identified ZmAPX1 as a potentially useful gene for increasing SCLB resistance. Furthermore, the generated data may be relevant for clarifying the functions of plant APXs.

Original languageEnglish
Pages (from-to)1196-1211
JournalJournal of Integrative Plant Biology
Volume64
Issue number6
Early online date31 Dec 2022
DOIs
Publication statusPublished - 31 Dec 2022

Keywords

  • southern corn leaf blight
  • comparative proteomics
  • disease resistance
  • jasmonic acid
  • maize
  • Biochemistry & Molecular Biology
  • Plant Sciences
  • ascorbate peroxidase

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