Synthetic hexaploid wheat as a source of novel genetic loci for aluminium tolerance

被引:0
作者
Emebiri, L. C. [1 ,2 ]
Raman, H. [1 ,2 ]
Ogbonnaya, F. C. [3 ]
机构
[1] Graham Ctr Agr Innovat, NSW Dept Primary Ind, Wagga Wagga, NSW 2650, Australia
[2] Charles Sturt Univ, Wagga Wagga Agr Inst, Wagga Wagga, NSW 2650, Australia
[3] Grains Res & Dev Corp, POB 5367, Kingston, ACT 2604, Australia
关键词
Synthetic hexaploid wheat; Abiotic stress; Subsoil constraint; Triticum aestivumL; Aluminium tolerance; Association mapping; Molecular marker; Genotyping-by-sequencing; GENOME-WIDE ASSOCIATION; QUANTITATIVE TRAIT LOCI; TRITICUM-AESTIVUM L; RESISTANCE; ACID; STRESS; LINES; IDENTIFICATION; TAUSCHII; YIELD;
D O I
10.1007/s10681-020-02669-9
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Aluminium (Al3+) tolerance is second only to drought tolerance for its importance as an agronomic trait in many parts of the world. In wheat (Triticum aestivumL.), Al(3+)tolerance is largely conditioned by a single gene,TaALMT1, but given the diverse origins of tolerant genotypes, it is possible that other chromosomes may harbour genes that confer Al(3+)tolerance. The large genetic diversity present in synthetic hexaploid wheat (SHW) prompted the objective in this study, which was to evaluate SHW as a source of novel genetic loci linked to Al(3+)tolerance. We evaluated 300 SHW accessions using the haematoxylin staining method, and a genome-wide association analysis (GWAS) using 6575 markers generated from traditional diversity-arrays and genotyping-by-sequencing genotyping platforms and fromTaALMT1gene specific simple sequence repeat polymorphisms. The GWAS detected a set of 24 loci located to chromosomes 1B, 1D, 2A, 2B, 4A, 4D, 5A, 5B, 6A, 6D and 7A that showed statistically significant association with Al(3+)tolerance. We leveraged the available high-quality annotation data of the wheat genome to identify candidate genes localised to within 1.6 Kb of the identified markers. Besides markers forTaALMT1,MATEandNRAMP, identified markers were located close to known transcription factors (C2H2 zinc finger protein) and novel candidate genes that encode ABC transporter-like protein, glutathione synthetase, Blue copper protein and expansin proteins. In summary, our results showed that Al(3+)tolerance is present in SHW but is genetically complex and appeared to involve interactions between the majorTaALMT1gene and other gene loci.
引用
收藏
页数:14
相关论文
共 89 条
  • [1] Linkage disequilibrium in related breeding lines of chickens
    Andreescu, Cristina
    Avendano, Santiago
    Brown, Stewart R.
    Hassen, Abebe
    Lamont, Susan J.
    Dekkers, Jack C. M.
    [J]. GENETICS, 2007, 177 (04) : 2161 - 2169
  • [2] CHROMOSOME LOCATION OF GENES-CONTROLLING ALUMINUM TOLERANCE IN WHEAT, RYE, AND TRITICALE
    ANIOL, A
    GUSTAFSON, JP
    [J]. CANADIAN JOURNAL OF GENETICS AND CYTOLOGY, 1984, 26 (06): : 701 - 705
  • [3] Identification of candidate genes for lutein esterification in common wheat (Triticum aestivum) using physical mapping and genomics tools
    Avila, C. M.
    Palomino, M. C.
    Hornero-Mendez, D.
    Atienza, S. G.
    [J]. CROP & PASTURE SCIENCE, 2019, 70 (07) : 567 - 574
  • [4] Content Factor Analysis of Crowd Workers' Satisfaction
    Barashev, Andrey
    Li, Guoxin
    [J]. ICSLT 2019: PROCEEDINGS OF THE 5TH INTERNATIONAL CONFERENCE ON E-SOCIETY, E-LEARNING AND E-TECHNOLOGIES, 2019, : 25 - 29
  • [5] Fast root growth responses, root exudates, and internal detoxification as clues to the mechanisms of aluminium toxicity and resistance: a review
    Barcelo, J
    Poschenrieder, C
    [J]. ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2002, 48 (01) : 75 - 92
  • [6] Haploview: analysis and visualization of LD and haplotype maps
    Barrett, JC
    Fry, B
    Maller, J
    Daly, MJ
    [J]. BIOINFORMATICS, 2005, 21 (02) : 263 - 265
  • [7] The rhizosheath: a potential root trait helping plants to tolerate drought stress
    Basirat, Majid
    Mousavi, Seyed Majid
    Abbaszadeh, Shirzad
    Ebrahimi, Mohsen
    Zarebanadkouki, Mohsen
    [J]. PLANT AND SOIL, 2019, 445 (1-2) : 565 - 575
  • [8] CONTROLLING THE FALSE DISCOVERY RATE - A PRACTICAL AND POWERFUL APPROACH TO MULTIPLE TESTING
    BENJAMINI, Y
    HOCHBERG, Y
    [J]. JOURNAL OF THE ROYAL STATISTICAL SOCIETY SERIES B-STATISTICAL METHODOLOGY, 1995, 57 (01) : 289 - 300
  • [9] THE GENOMIC INHERITANCE OF ALUMINUM TOLERANCE IN ATLAS-66 WHEAT
    BERZONSKY, WA
    [J]. GENOME, 1992, 35 (04) : 689 - 693
  • [10] expVIP: a Customizable RNA-seq Data Analysis and Visualization Platform
    Borrill, Philippa
    Ramirez-Gonzalez, Ricardo
    Uauy, Cristobal
    [J]. PLANT PHYSIOLOGY, 2016, 170 (04) : 2172 - 2186