GWAS scans of cereal cyst nematode (Heterodera avenae) resistance in Indian wheat germplasm

被引:7
作者
Singh, Vikas Kumar [1 ]
Chaturvedi, Deepti [1 ]
Pundir, Saksham [1 ,2 ]
Kumar, Deepak [1 ,2 ]
Sharma, Rajiv [3 ]
Kumar, Sundeep [4 ]
Sharma, Shiveta [1 ]
Sharma, Shailendra [1 ]
机构
[1] Chaudhary Charan Singh Univ CCSU, Dept Genet & Plant Breeding, Meerut 250004, Uttar Pradesh, India
[2] Chaudhary Charan Singh Univ CCSU, Dept Bot, Meerut 250004, Uttar Pradesh, India
[3] Scotlands Rural Coll SRUC, Peter Wilson Bldg,West Mains Rd, Edinburgh EH9 3JG, Scotland
[4] Natl Bur Plant Genet Resources NBPGR, Div Genom Resources, Pusa Campus, New Delhi 110012, India
关键词
Cereal cyst nematode; Heterodera avenae; Triticum aestivum; Resistance; GWAS; SYNTHETIC HEXAPLOID WHEAT; GENOME-WIDE ASSOCIATION; PRATYLENCHUS-THORNEI; BREAD WHEAT; TRAITS; GENE; CULTIVARS; FILIPJEVI; YIELD; LOCI;
D O I
10.1007/s00438-023-01996-5
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Significant yield losses in major cereal-growing regions around the world have been linked to cereal cyst nematodes (Heterodera spp.). Identifying and deploying natural sources of resistance is of utmost importance due to increasing concerns associated with chemical methods over the years. We screened 141 diverse wheat genotypes collected from pan-Indian wheat cultivation states for nematode resistance over two years, alongside two resistant (Raj MR1, W7984 (M6)) and two susceptible (WH147, Opata M85) checks. We performed genome-wide association analysis using four single-locus models (GLM, MLM, CMLM, and ECMLM) and three multi-locus models (Blink, FarmCPU, and MLMM). Single locus models identified nine significant MTAs (-log10 (P) > 3.0) on chromosomes 2A, 3B, and 4B whereas, multi-locus models identified 11 significant MTAs on chromosomes 1B, 2A, 3B, 3D and 4B. Single and multi-locus models identified nine common significant MTAs. Candidate gene analysis identified 33 genes like F-box-like domain superfamily, Cytochrome P450 superfamily, Leucine-rich repeat, cysteine-containing subtype Zinc finger RING/FYVE/PHD-type, etc., having a putative role in disease resistance. Such genetic resources can help to reduce the impact of this disease on wheat production. Additionally, these results can be used to design new strategies for controlling the spread of H. avenae, such as the development of resistant varieties or the use of resistant cultivars. Finally, the obtained results can also be used to identify new sources of resistance to this pathogen and develop novel control methods.
引用
收藏
页码:579 / 601
页数:23
相关论文
共 76 条
[1]   The dynamics of cereal cyst nematode infection differ between susceptible and resistant barley cultivars and lead to changes in (1,3;1,4)--glucan levels and HvCslF gene transcript abundance [J].
Aditya, Jessika ;
Lewis, John ;
Shirley, Neil J. ;
Tan, Hwei-Ting ;
Henderson, Marilyn ;
Fincher, Geoffrey B. ;
Burton, Rachel A. ;
Mather, Diane E. ;
Tucker, Matthew R. .
NEW PHYTOLOGIST, 2015, 207 (01) :135-147
[2]   Molecular mapping of a novel QTL for resistance to cereal cyst nematode in F4 wheat population [J].
Al-Ateeq, Talal K. ;
Al-Doss, Abdullah A. ;
Al-Hazmi, Ahmad S. ;
Ghazy, Abdelhalim, I ;
Dawabah, Ahmed M. ;
Motawei, Mohamed I. .
CEREAL RESEARCH COMMUNICATIONS, 2022, 50 (01) :11-17
[3]  
ALLARD R. W., 1960
[4]   Characterization of a Wheat Breeders' Array suitable for high-throughput SNP genotyping of global accessions of hexaploid bread wheat (Triticum aestivum) [J].
Allen, Alexandra M. ;
Winfield, Mark O. ;
Burridge, Amanda J. ;
Downie, Rowena C. ;
Benbow, Harriet R. ;
Barker, Gary L. A. ;
Wilkinson, Paul A. ;
Coghill, Jane ;
Waterfall, Christy ;
Davassi, Alessandro ;
Scopes, Geoff ;
Pirani, Ali ;
Webster, Teresa ;
Brew, Fiona ;
Bloor, Claire ;
Griffiths, Simon ;
Bentley, Alison R. ;
Alda, Mark ;
Jack, Peter ;
Phillips, Andrew L. ;
Edwards, Keith J. .
PLANT BIOTECHNOLOGY JOURNAL, 2017, 15 (03) :390-401
[5]  
Alvarado G, 2017, HDL1152910201 CIMMYT
[6]   Shifting the limits in wheat research and breeding using a fully annotated reference genome [J].
Appels, Rudi ;
Eversole, Kellye ;
Feuillet, Catherine ;
Keller, Beat ;
Rogers, Jane ;
Stein, Nils ;
Pozniak, Curtis J. ;
Choulet, Frederic ;
Distelfeld, Assaf ;
Poland, Jesse ;
Ronen, Gil ;
Sharpe, Andrew G. ;
Pozniak, Curtis ;
Barad, Omer ;
Baruch, Kobi ;
Keeble-Gagnere, Gabriel ;
Mascher, Martin ;
Ben-Zvi, Gil ;
Josselin, Ambre-Aurore ;
Himmelbach, Axel ;
Balfourier, Francois ;
Gutierrez-Gonzalez, Juan ;
Hayden, Matthew ;
Koh, ChuShin ;
Muehlbauer, Gary ;
Pasam, Raj K. ;
Paux, Etienne ;
Rigault, Philippe ;
Tibbits, Josquin ;
Tiwari, Vijay ;
Spannagl, Manuel ;
Lang, Daniel ;
Gundlach, Heidrun ;
Haberer, Georg ;
Mayer, Klaus F. X. ;
Ormanbekova, Danara ;
Prade, Verena ;
Simkova, Hana ;
Wicker, Thomas ;
Swarbreck, David ;
Rimbert, Helene ;
Felder, Marius ;
Guilhot, Nicolas ;
Kaithakottil, Gemy ;
Keilwagen, Jens ;
Leroy, Philippe ;
Lux, Thomas ;
Twardziok, Sven ;
Venturini, Luca ;
Juhasz, Angela .
SCIENCE, 2018, 361 (6403) :661-+
[7]   A broad characterization of the transcriptional profile of the compatible tomato response to the plant parasitic root knot nematode Meloidogyne java']javanica [J].
Bar-Or, C ;
Kapulnik, Y ;
Koltai, H .
EUROPEAN JOURNAL OF PLANT PATHOLOGY, 2005, 111 (02) :181-192
[8]   expVIP: a Customizable RNA-seq Data Analysis and Visualization Platform [J].
Borrill, Philippa ;
Ramirez-Gonzalez, Ricardo ;
Uauy, Cristobal .
PLANT PHYSIOLOGY, 2016, 170 (04) :2172-2186
[9]   TASSEL: software for association mapping of complex traits in diverse samples [J].
Bradbury, Peter J. ;
Zhang, Zhiwu ;
Kroon, Dallas E. ;
Casstevens, Terry M. ;
Ramdoss, Yogesh ;
Buckler, Edward S. .
BIOINFORMATICS, 2007, 23 (19) :2633-2635
[10]   Association mapping of kernel size and milling quality in wheat (Triticum aestivum L.) cultivars [J].
Breseghello, F ;
Sorrells, ME .
GENETICS, 2006, 172 (02) :1165-1177