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Molecular Characterization of Atlas 66-Derived Wheat Near-Isogenic Lines Contrasting in Aluminum (Al) Tolerance 被引量:4

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摘要 Aluminum (Al) toxicity is the major limiting factor for wheat growth in acidic soils. Genetic improvement of Al tolerance is one of the most cost-effective solutions to improve wheat productivity. The objective of this study was to characterize near isogenic lines (NILs) contrasting in Al tolerance derived from Atlas 66 in the backgrounds of Al-sensitive cultivars Chisholm and Century using amplified fragment length polymorphism (AFLP) and simple sequence repeat (SSR). A total of 200 AFLP and 88 SSR primer pairs were screened and 12 markers (11 AFLPs and one SSR) were associated with Al-tolerance in NILs of at least one recurrent parental background. Among them, nine were linked to A1 tolerance in the Chisholm-derived NILs, seven were associated with Al-tolerance in the Century-derived NILs, and three AFLPs derived from the primer combinations of pAG/mGCAG, pCAG/mAGC and pGTG/mGCG, and one SSR, Xwmc331 on chromosome 4D, associated with A1 tolerance in NILs of both recurrent parental backgrounds. Those common markers across two backgrounds may be the major marker loci associated with Al-tolerance in Atlas 66 and could be useful for marker-assisted breeding to improve Al tolerance in wheat. In addition, evaluation of Al tolerance among different genotypes using hematoxylin stain and relative root growth revealed that Atlas 66 was more tolerant to Al stress than the NILs, therefore suggested that the Al-tolerant NILs might not carry all Al-tolerance loci from Arias 66 and inheritance of Al tolerance in Arias 66 is more likely multigenic. Aluminum (Al) toxicity is the major limiting factor for wheat growth in acidic soils. Genetic improvement of Al tolerance is one of the most cost-effective solutions to improve wheat productivity. The objective of this study was to characterize near isogenic lines (NILs) contrasting in Al tolerance derived from Atlas 66 in the backgrounds of Al-sensitive cultivars Chisholm and Century using amplified fragment length polymorphism (AFLP) and simple sequence repeat (SSR). A total of 200 AFLP and 88 SSR primer pairs were screened and 12 markers (11 AFLPs and one SSR) were associated with Al-tolerance in NILs of at least one recurrent parental background. Among them, nine were linked to A1 tolerance in the Chisholm-derived NILs, seven were associated with Al-tolerance in the Century-derived NILs, and three AFLPs derived from the primer combinations of pAG/mGCAG, pCAG/mAGC and pGTG/mGCG, and one SSR, Xwmc331 on chromosome 4D, associated with A1 tolerance in NILs of both recurrent parental backgrounds. Those common markers across two backgrounds may be the major marker loci associated with Al-tolerance in Atlas 66 and could be useful for marker-assisted breeding to improve Al tolerance in wheat. In addition, evaluation of Al tolerance among different genotypes using hematoxylin stain and relative root growth revealed that Atlas 66 was more tolerant to Al stress than the NILs, therefore suggested that the Al-tolerant NILs might not carry all Al-tolerance loci from Arias 66 and inheritance of Al tolerance in Arias 66 is more likely multigenic.
出处 《Agricultural Sciences in China》 CAS CSCD 2007年第5期522-528,共7页 中国农业科学(英文版)
基金 supported by grants of National Natural Science Foundation of China(30640045) Program of Science and Technology of Guangzhou Province(2007J1-C0111) Education Bureau of Guangzhou Municipality(62002) United States Department of America(USDA),and a GTZ project(No.2002.7860.6-001.00 and Contract No.81060503)sponsored by German Federal Ministry of Economic Cooperation and Development(BMZ).
关键词 aluminum (Al) tolerance Triticum aestivum L. molecular marker aluminum (Al) tolerance, Triticum aestivum L., molecular marker
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  • 1H.-X. Ma,G.-H. Bai,B. F. Carver,L.-L. Zhou.Molecular mapping of a quantitative trait locus for aluminum tolerance in wheat cultivar Atlas 66[J].Theoretical and Applied Genetics.2005(1) 被引量:1
  • 2Daryl J. Somers,Peter Isaac,Keith Edwards.A high-density microsatellite consensus map for bread wheat (Triticum aestivum L.)[J].Theoretical and Applied Genetics.2004(6) 被引量:1
  • 3Lisa A. Papernik,Ananda S. Bethea,Theresa E. Singleton,Jurandir V. Magalhaes,David F. Garvin,Leon V. Kochian.Physiological basis of reduced Al tolerance in ditelosomic lines of Chinese Spring wheat[J].Planta (-).2001(5-6) 被引量:1
  • 4F. J. Gallego,C. Benito.Genetic control of aluminium tolerance in rye (Secale cereale L.)[J].TAG Theoretical and Applied Genetics.1997(3) 被引量:1
  • 5Ming-Cheng Luo,Jan Dvo?ák.Molecular mapping of an aluminum tolerance locus on chromosome 4D of Chinese Spring wheat[J].Euphytica.1996(1) 被引量:1
  • 6Andrzej Aniol.Genetics of tolerance to aluminium in wheat (Triticum aestivum L. Thell)[J].Plant and Soil.1990(2) 被引量:1

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