Crops ›› 2020, Vol. 36 ›› Issue (2): 65-70.doi: 10.16035/j.issn.1001-7283.2020.02.011

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Identification of Resistance and Analysis of Resistance Source for Exserohilum turcicum in Maize Inbred Lines

Sun Ruidong1,Zang Zhenyuan1,Ci Jiabin1,Yang Wei1,Ren Xuejiao1,Jiang Liangyu1,2(),Yang Weiguang1()   

  1. 1 College of Agriculture, Jilin Agriculture University, Changchun 130118, Jilin, China
    2 Jilin Agriculture University Postdoctoral Research Center, Changchun 130118, Jilin, China
  • Received:2019-08-21 Revised:2019-10-23 Online:2020-04-15 Published:2020-04-13
  • Contact: Liangyu Jiang,Weiguang Yang E-mail:liangyu0113@163.com;ywg789@126.com

Abstract:

Maize northern leaf blight caused by Exserohilum turcicum is a serious disease, occurring in many parts of China and severely affects maize yield. Screening resistant maize inbred lines and breeding resistant varieties are effective ways to solve this problem. In this experiment, resistance of 185 maize inbred lines were identified by artificial inoculation in two years (2017-2018), the results demonstrated that sixteen inbred lines were high resistance to Exserohilum turcicum, including seven self-selected lines. It was found that the strains such as Y6 and J1577 had strong disease resistance and could be inherited stably.

Key words: Maize, Exserohilum turcicum, Resistance identification, Resistance source

Table 1

Resistance identification results of Exserohilum turcicum from different sources of maize germplasms in 2017"

种质
Germplasm
数量
Amount
高抗
High resistance
抗病
Resistance
中抗
Moderate resistance
感病
Susceptibility
高感
High susceptibility
数量
Amount
比例(%)
Rate
数量
Amount
比例(%)
Rate
数量
Amount
比例(%)
Rate
数量
Amount
比例(%)
Rate
数量
Amount
比例(%)
Rate
自选系Self-selected line 95 7 3.78 37 20.00 20 10.81 22 11.90 9 4.86
骨干系Elite line 90 9 4.87 24 12.97 16 8.65 16 8.65 25 13.51
总计Total 185 16 8.65 61 32.97 36 19.46 38 20.55 34 18.37

Table 2

Resistance identification results of Exserohilum turcicum from different sources of maize germplasms in 2018"

种质
Germplasm
数量
Amount
高抗
High resistance
抗病
Resistance
中抗
Moderate resistance
感病
Susceptibility
高感
High susceptibility
数量
Amount
比例(%)
Rate
数量
Amount
比例(%)
Rate
数量
Amount
比例(%)
Rate
数量
Amount
比例(%)
Rate
数量
Amount
比例(%)
Rate
自选系Self-selected line 95 7 3.78 36 19.46 21 11.35 23 12.43 8 4.32
骨干系Elite line 90 9 4.87 23 12.43 17 9.19 16 8.65 25 13.52
总计Total 185 16 8.65 59 31.89 38 20.54 39 21.08 33 17.84

Table 3

Resistance identification results of 95 self-selected maize inbred lines in 2017-2018"

Table 4

Multi-year resistance identification results of 90 elite maize inbred lines"

自交系
Inbred line
2017年In 2017 2018年In 2018 自交系
Inbred line
2017年In 2017 2018年In 2018
病斑面积(%)
Lesion area
抗性评价
Resistance
evaluation
病斑面积(%)
Lesion area
抗性评价
Resistance evaluation
病斑面积(%)
Lesion area
抗性评价
Resistance
evaluation
病斑面积(%)
Lesion area
抗性评价
Resistance evaluation
Y1 2 HR 2 HR Y45 23 MR 19 MR
Y2 2 HR 5 HR Y46 13 MR 16 MR
Y3 3 HR 3 HR Y47 15 MR 15 MR
Y4 5 HR 4 HR Y48 19 MR 21 MR
Y5 3 HR 3 HR Y49 53 S 47 S
Y6 3 HR 3 HR Y50 56 S 62 S
Y7 7 HR 9 HR Y51 56 S 63 S
Y8 4 HR 4 HR Y52 55 S 49 S
Y9 3 HR 2 HR Y53 55 S 56 S
Y10 9 R 8 R Y54 66 S 58 S
Y11 9 R 11 R Y55 56 S 68 S
Y12 9 R 10 R Y56 56 S 44 S
Y13 10 R 7 R Y57 61 S 55 S
Y14 10 R 7 R Y58 66 S 62 S
Y15 9 R 7 R Y59 46 S 41 S
Y16 9 R 9 R Y60 53 S 56 S
Y17 6 R 8 R Y61 61 S 55 S
Y18 9 R 13 R Y62 65 S 62 S
Y19 7 R 7 R Y63 55 S 53 S
Y20 15 R 16 R Y64 61 S 66 S
Y21 9 R 6 R Y65 82 HS 80 HS
Y22 9 R 9 R Y66 73 HS 79 HS
Y23 10 R 15 R Y67 18 HS 19 HS
Y24 8 R 10 R Y68 97 HS 92 HS
Y25 7 R 7 R Y69 88 HS 83 HS
Y26 6 R 6 R Y70 72 HS 73 HS
Y27 6 R 8 R Y71 79 HS 77 HS
Y28 8 R 8 R Y72 82 HS 88 HS
Y29 8 R 9 R Y73 89 HS 90 HS
Y30 10 R 31 MR 获白Huobai 94 HS 96 HS
Y31 9 R 9 R Y74 73 HS 75 HS
Y32 7 R 7 R Y75 88 HS 85 HS
Y33 6 R 9 R Y76 89 HS 78 HS
Y34 22 MR 19 MR Y77 92 HS 83 HS
Mo17 25 MR 25 MR Y78 96 HS 88 HS
Y35 26 MR 24 MR Y79 78 HS 80 HS
Y36 26 MR 23 MR Y80 89 HS 83 HS
Y37 21 MR 18 MR Y81 88 HS 80 HS
Y38 20 MR 20 MR Y82 81 HS 85 HS
Y39 17 MR 19 MR Y83 79 HS 86 HS
Y40 20 MR 23 MR Y84 90 HS 91 HS
Y41 16 MR 13 MR Y85 81 HS 79 HS
Y42 22 MR 17 MR Y86 88 HS 83 HS
Y43 19 MR 16 MR Y87 76 HS 84 HS
Y44 19 MR 22 MR Y88 82 HS 88 HS
[1] 高卫东, 戴法超 . 玉米大斑病研究的新进展. 植物病理学报, 1993(3):193-195.
[2] 秦宝军 . 吉林省玉米大斑病发生与防治关键技术研究. 长春:吉林大学, 2015.
[3] 孙淑琴, 温雷蕾, 董金皋 . 玉米大斑病菌的生理小种及交配型测定. 玉米科学, 2005,13(4):112-113.
[4] 高金欣, 吕淑霞, 高增贵 , 等. 东北地区2009年玉米大斑病菌生理小种鉴定与动态分析. 玉米科学, 2011,19(3):138-140.
[5] Chia-Lin C, Tiffany J, Joy L , et al. Characterization and fine-mapping of a resistance locus for northern leaf blight in maize bin 8.06. Theoretical and Applied Genetics, 2010,121(2):205-227.
[6] Simcox K D, Bennetzen J L . The use of molecular markers to study Setosphaeria turcica resistance in maize. Phytopathology, 1993,83:1326-1330.
[7] Ogliari J B, Guimarães M A, Camargo L E A . Chromosomal locations of the maize (Zea mays L.) HtP and rt genes that confer resistance to Exserohilum turcicum. Genetics and Molecular Biology, 2007,30:630-634.
[8] Welz H, Geiger H . Genes for resistance to northern corn leaf blight in diverse maize populations. Plant Breed, 2000,119:1-14.
[9] Martin T, Biruma M, Fridborg I , et al. A highly conserved NB-LRR encoding gene cluster effective against Setosphaeria turcica in sorghum. BMC Plant Biology, 2011,11:151.
[10] 桑立君, 刘丽丽, 金宝昌 , 等. 玉米自交系资源对大斑病抗病性的鉴定. 中国种业, 2007(6):69.
[11] 曹天昌, 刘钧芝, 唐耀文 . 玉米自交系资源对大斑病抗病性鉴定. 现代化农业, 1991(12):12.
[12] 姚清鉴 . 玉米新选育品系的抗病性表型鉴定及抗性来源初步分析. 北京:中国农业科学院, 2013.
[13] 高卫东, 戴法超, 朱小阳 . 玉米种质资源对四种病害的抗性鉴定. 植物保护学报, 1997(2):191-192.
[14] 温义鹏, 李成军, 于培洋 , 等. 不同玉米自交系对大斑病和灰斑病抗性分析. 玉米科学, 2012,20(1):135-137.
[15] 郑飞 . 玉米大斑病抗性育种研究进展与展望. 安徽农业科学, 2018,46(4):15-18.
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