A Rice Black-Streaked Dwarf Virus Replication Curve Model to Evaluate Maize Rough Dwarf Disease Resistance

  • Han Xiaohua
    The Cereal Crops Institute, Henan Academy of Agricultural Sciences/Henan Key Laboratory of Maize Biology, Zhengzhou, Henan Province 450002, China; and
  • Chen Tingmu
    Lianyungang Academy of Agricultural Sciences, Lianyungang, Jiangsu Province 222000, China
  • Yue Runqing
    The Cereal Crops Institute, Henan Academy of Agricultural Sciences/Henan Key Laboratory of Maize Biology, Zhengzhou, Henan Province 450002, China; and
  • Guo Shulei
    The Cereal Crops Institute, Henan Academy of Agricultural Sciences/Henan Key Laboratory of Maize Biology, Zhengzhou, Henan Province 450002, China; and
  • Xu Mengmeng
    The Cereal Crops Institute, Henan Academy of Agricultural Sciences/Henan Key Laboratory of Maize Biology, Zhengzhou, Henan Province 450002, China; and
  • Lu Caixia
    The Cereal Crops Institute, Henan Academy of Agricultural Sciences/Henan Key Laboratory of Maize Biology, Zhengzhou, Henan Province 450002, China; and
  • Fan Yanping
    The Cereal Crops Institute, Henan Academy of Agricultural Sciences/Henan Key Laboratory of Maize Biology, Zhengzhou, Henan Province 450002, China; and
  • Chen Nana
    The Cereal Crops Institute, Henan Academy of Agricultural Sciences/Henan Key Laboratory of Maize Biology, Zhengzhou, Henan Province 450002, China; and
  • Liu Lu
    The Cereal Crops Institute, Henan Academy of Agricultural Sciences/Henan Key Laboratory of Maize Biology, Zhengzhou, Henan Province 450002, China; and
  • Fu Xiaolei
    The Cereal Crops Institute, Henan Academy of Agricultural Sciences/Henan Key Laboratory of Maize Biology, Zhengzhou, Henan Province 450002, China; and
  • Chi Haifeng
    The Cereal Crops Institute, Henan Academy of Agricultural Sciences/Henan Key Laboratory of Maize Biology, Zhengzhou, Henan Province 450002, China; and
  • Guo Xinhai
    The Cereal Crops Institute, Henan Academy of Agricultural Sciences/Henan Key Laboratory of Maize Biology, Zhengzhou, Henan Province 450002, China; and
  • Xia Yan
    The Cereal Crops Institute, Henan Academy of Agricultural Sciences/Henan Key Laboratory of Maize Biology, Zhengzhou, Henan Province 450002, China; and
  • Tie Shuanggui
    The Cereal Crops Institute, Henan Academy of Agricultural Sciences/Henan Key Laboratory of Maize Biology, Zhengzhou, Henan Province 450002, China; and

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Description

<jats:p> Resistance to maize rough dwarf disease (MRDD), a major cause of crop losses, depends on external conditions such as the virus transmission period and the rate of viruliferous small brown planthoppers, Laodelphax striatellus. The precise identification of MRDD contributes to the utilization of resistant germplasm and the cloning of resistant genes. In this study, eight maize varieties were artificially inoculated in a greenhouse with viruliferous planthoppers. The viral titers in maize seedlings were detected by quantitative fluorescence RT-PCR, and the viral replication curves were analyzed by regression. A logistic model fit the Rice black-streaked dwarf virus (RBSDV) replication data for five susceptible varieties well, whereas a linear model fit the data for three resistant varieties. Among the five susceptible varieties, the time points with the maximum replication rates (t<jats:sub>IP</jats:sub>) of the highly susceptible Ye478 and XH6 were significantly earlier than those of the three susceptible varieties, Mo17, Zheng58, and Zhengdan958. P138, the most highly resistant variety, had the lowest slope of the best fit line, followed by moderately resistant Chang7-2 and Dan 340. The RBSDV replication curve model developed in this study can accurately identify the resistance of maize germplasm to MRDD at the molecular level. Our results also suggested that t<jats:sub>IP</jats:sub> and the slope of the RBSDV replication curve can be considered new criteria to evaluate maize resistance to MRDD. </jats:p>

Journal

  • Plant Disease

    Plant Disease 103 (5), 868-873, 2019-05

    Scientific Societies

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