Seedling and adult stage resistance to spot form of net blotch (SFNB) in spring barley and stability of adult stage resistance to SFNB in Morocco

被引:0
|
作者
Sanjaya Gyawali
Reda Amezrou
Ramesh Pal Singh Verma
Robert Brueggeman
Sajid Rehman
Loubna Belqadi
Mustapha Arbaoui
Prabin Tamang
Murari Singh
机构
[1] International Center for Agricultural Research in the Dry Areas (ICARDA),Department of Plant Pathology
[2] Crop Improvement Program,undefined
[3] BIGM Program,undefined
[4] Washington State University,undefined
[5] NWREC,undefined
[6] North Dakota State University,undefined
[7] IAV Hassan II,undefined
[8] Department of Plant Breeding and Genetics,undefined
来源
European Journal of Plant Pathology | 2019年 / 153卷
关键词
AMMI; Barley; Net blotch; Ptm; Resistance; SFNB;
D O I
暂无
中图分类号
学科分类号
摘要
The aims of this study were to identify resistance to spot form of net blotch (SFNB) in spring barley and to investigate the stability of SFNB resistance in Morocco. The seedling resistance to SFNB was evaluated by inoculating 340 barley genotypes with the Pyrenophora teres F. maculata (Ptm) isolate FGOB10Ptm-1 (FGO) in the greenhouse. The same barely genotypes were evaluated for adult-stage plant resistance to SFNB in field trials in Morocco. All experiments were conducted in alpha-lattices with two replicates. SFNB disease severity was estimated on barley leaves using double digit scale. To investigate the stability of both qualitative and quantitative resistance to SFNB, 104 barley genotypes were subjected to AMMI analysis. Differential responses of SFNB barley resistance to FGO were found at the seedling stage in the greenhouse. Twelve genotypes showing scores of <1.5, at the seedling stage, were determined to be highly resistant to FGO. The ANOVA showed highly significant (p < 0.001) effects of genotype (G) and G × E (E-Pathotypes of SFNB) interaction on SFNB severity among the 340 barley genotypes at the adult plant stage. The AMMI ANOVA showed that IPCA1, IPCA2 and IPCA3 accounted for 77.9% of the variation of the G × E interaction for SFNB severity. The G × E interaction consisted of divergent genotypic responses to SFNB severity due to different pathotypes prevalent in hot-spot environments. The AMMI stability value demonstrated that barley genotypes AM-14, 30, 31, 68, 107, 108, 112, 149, 170, 185, 204, 240, 304, 326, 326 and 337 were resistant and stable across hot-spot environments against SFNB. Divergent environmental responses of SFNB were recorded in MCH_2015, SE_2015, AT_2016, SE_2016 and JS_2015. Stable SFNB resistant genotypes are valuable resources for the introgression of qualitative and quantitative resistance to barley in Morocco.
引用
收藏
页码:475 / 487
页数:12
相关论文
共 35 条
  • [1] Seedling and adult stage resistance to spot form of net blotch (SFNB) in spring barley and stability of adult stage resistance to SFNB in Morocco
    Gyawali, Sanjaya
    Amezrou, Reda
    Verma, Ramesh Pal Singh
    Brueggeman, Robert
    Rehman, Sajid
    Belqadi, Loubna
    Arbaoui, Mustapha
    Tamang, Prabin
    Singh, Murari
    EUROPEAN JOURNAL OF PLANT PATHOLOGY, 2019, 153 (02) : 475 - 487
  • [2] Seedling and adult stage resistance to net form of net blotch (NFNB) in spring barley and stability of adult stage resistance to NFNB in Morocco
    Gyawali, Sanjaya
    Amezrou, Reda
    Verma, Ramesh Pal Singh
    Brueggeman, Robert
    Rehman, Sajid
    Belqadi, Loubna
    Arbaoui, Mustapha
    Tamang, Prabin
    Singh, Murari
    JOURNAL OF PHYTOPATHOLOGY, 2020, 168 (05) : 254 - 266
  • [3] Genome-wide association studies of net form of net blotch resistance at seedling and adult plant stages in spring barley collection
    Reda Amezrou
    Ramesh Pal Singh Verma
    Shiaoman Chao
    Robert S. Brueggeman
    Loubna Belqadi
    Mustapha Arbaoui
    Sajid Rehman
    Sanjaya Gyawali
    Molecular Breeding, 2018, 38
  • [4] Genome-wide association studies of net form of net blotch resistance at seedling and adult plant stages in spring barley collection
    Amezrou, Reda
    Verma, Ramesh Pal Singh
    Chao, Shiaoman
    Brueggeman, Robert S.
    Belqadi, Loubna
    Arbaoui, Mustapha
    Rehman, Sajid
    Gyawali, Sanjaya
    MOLECULAR BREEDING, 2018, 38 (05)
  • [5] Genome wide association studies (GWAS) of spot blotch resistance at the seedling and the adult plant stages in a collection of spring barley
    Gyawali, Sanjaya
    Chao, Shiaoman
    Vaish, Shyam Saran
    Singh, Shiv P.
    Rehman, Sajid
    Vishwakarma, Siya Ram
    Verma, Ramesh Pal Singh
    MOLECULAR BREEDING, 2018, 38 (05)
  • [6] Evaluation of indigenous accessions of wheat for spot blotch resistance at the seedling and adult plant stage
    Reddy Y.N.
    Gurjar M.S.
    Kumar T.P.J.
    Saharan M.S.
    Kumar S.
    Khokhar M.K.
    Kumar N.
    Aggarwal R.
    Indian Phytopathology, 2023, 76 (4) : 959 - 968
  • [7] Genome wide association studies (GWAS) of spot blotch resistance at the seedling and the adult plant stages in a collection of spring barley
    Sanjaya Gyawali
    Shiaoman Chao
    Shyam Saran Vaish
    Shiv P. Singh
    Sajid Rehman
    Siya Ram Vishwakarma
    Ramesh Pal Singh Verma
    Molecular Breeding, 2018, 38
  • [8] Genome Wide Association Mapping of Spot Blotch Resistance at Seedling and Adult Plant Stages in Barley
    Visioni, Andrea
    Rehman, Sajid
    Viash, Shyam Saran
    Singh, Shiw Pratap
    Vishwakarma, Ram
    Gyawaii, Sanjaya
    Al-Abdaliatt, Ayed M.
    Verma, Ramesh Pal Singh
    FRONTIERS IN PLANT SCIENCE, 2020, 11
  • [9] Determining quantitative resistance of barley cultivars at the seedling stage to net blotch caused by Pyrenophora teres
    Xi, K
    Burnett, PA
    Turkington, TK
    Tekauz, A
    Helm, JH
    CANADIAN JOURNAL OF PLANT PATHOLOGY, 1999, 21 (03) : 284 - 290
  • [10] Seedling and adult-plant stage resistance of a world collection of barley genotypes to stripe rust
    Gyawali, Sanjaya
    Verma, Ramesh Pal Singh
    Kumar, Subodh
    Bhardwaj, Subhash Chand
    Gangwar, Om Prakash
    Selvakumar, Rajan
    Shekhawat, Pradip Singh
    Rehman, Sajid
    Sharma-Poudyal, Dipak
    JOURNAL OF PHYTOPATHOLOGY, 2018, 166 (01) : 18 - 27