Genetic diversity for aluminum tolerance in sorghum
Genetic variation for aluminum (Al) tolerance in plants has allowed the development of cultivars that are high yielding on acidic, Al toxic soils. However, knowledge of intraspecific variation for Al tolerance control is needed in order to assess the potential for further Al tolerance improvement. H...
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Published in | Theoretical and applied genetics Vol. 114; no. 5; pp. 863 - 876 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
Published |
Heidelberg
Springer
01.03.2007
Berlin Springer Nature B.V |
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Abstract | Genetic variation for aluminum (Al) tolerance in plants has allowed the development of cultivars that are high yielding on acidic, Al toxic soils. However, knowledge of intraspecific variation for Al tolerance control is needed in order to assess the potential for further Al tolerance improvement. Here we focused on the major sorghum Al tolerance gene, Alt ( SB ), from the highly Al tolerant standard SC283 to investigate the range of genetic diversity for Al tolerance control in sorghum accessions from diverse origins. Two tightly linked STS markers flanking Alt ( SB ) were used to study the role of this locus in the segregation for Al tolerance in mapping populations derived from different sources of Al tolerance crossed with a common Al sensitive tester, BR012, as well as to isolate the allelic effects of Alt ( SB ) in near-isogenic lines. The results indicated the existence not only of multiple alleles at the Alt ( SB ) locus, which conditioned a wide range of tolerance levels, but also of novel sorghum Al tolerance genes. Transgressive segregation was observed in a highly Al tolerant breeding line, indicating that potential exists to exploit the additive or codominant effects of distinct Al tolerance loci. A global, SSR-based, genetic diversity analysis using a broader sorghum set revealed the presence of both multiple Alt ( SB ) alleles and different Al tolerance genes within highly related accessions. This suggests that efforts toward broadening the genetic basis for Al tolerance in sorghum may benefit from a detailed analysis of Al tolerance gene diversity within subgroups across a target population. |
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AbstractList | Genetic variation for aluminum (Al) tolerance in plants has allowed the development of cultivars that are high yielding on acidic, Al toxic soils. However, knowledge of intraspecific variation for Al tolerance control is needed in order to assess the potential for further Al tolerance improvement. Here we focused on the major sorghum Al tolerance gene, Alt sub()SB from the highly Al tolerant standard SC283 to investigate the range of genetic diversity for Al tolerance control in sorghum accessions from diverse origins. Two tightly linked STS markers flanking Alt sub()SBwere used to study the role of this locus in the segregation for Al tolerance in mapping populations derived from different sources of Al tolerance crossed with a common Al sensitive tester, BR012, as well as to isolate the allelic effects of Alt sub()SBin near-isogenic lines. The results indicated the existence not only of multiple alleles at the Alt sub()SBlocus, which conditioned a wide range of tolerance levels, but also of novel sorghum Al tolerance genes. Transgressive segregation was observed in a highly Al tolerant breeding line, indicating that potential exists to exploit the additive or codominant effects of distinct Al tolerance loci. A global, SSR-based, genetic diversity analysis using a broader sorghum set revealed the presence of both multiple Alt sub()SBalleles and different Al tolerance genes within highly related accessions. This suggests that efforts toward broadening the genetic basis for Al tolerance in sorghum may benefit from a detailed analysis of Al tolerance gene diversity within subgroups across a target population. Genetic variation for aluminum (Al) tolerance in plants has allowed the development of cultivars that are high yielding on acidic, Al toxic soils. However, knowledge of intraspecific variation for Al tolerance control is needed in order to assess the potential for further Al tolerance improvement. Here we focused on the major sorghum Al tolerance gene, Alt ^sub SB^, from the highly Al tolerant standard SC283 to investigate the range of genetic diversity for Al tolerance control in sorghum accessions from diverse origins. Two tightly linked STS markers flanking Alt ^sub SB^ were used to study the role of this locus in the segregation for Al tolerance in mapping populations derived from different sources of Al tolerance crossed with a common Al sensitive tester, BR012, as well as to isolate the allelic effects of Alt ^sub SB^ in near-isogenic lines. The results indicated the existence not only of multiple alleles at the Alt ^sub SB^ locus, which conditioned a wide range of tolerance levels, but also of novel sorghum Al tolerance genes. Transgressive segregation was observed in a highly Al tolerant breeding line, indicating that potential exists to exploit the additive or codominant effects of distinct Al tolerance loci. A global, SSR-based, genetic diversity analysis using a broader sorghum set revealed the presence of both multiple Alt ^sub SB^ alleles and different Al tolerance genes within highly related accessions. This suggests that efforts toward broadening the genetic basis for Al tolerance in sorghum may benefit from a detailed analysis of Al tolerance gene diversity within subgroups across a target population.[PUBLICATION ABSTRACT] Genetic variation for aluminum (Al) tolerance in plants has allowed the development of cultivars that are high yielding on acidic, Al toxic soils. However, knowledge of intraspecific variation for Al tolerance control is needed in order to assess the potential for further Al tolerance improvement. Here we focused on the major sorghum Al tolerance gene, Alt ( SB ), from the highly Al tolerant standard SC283 to investigate the range of genetic diversity for Al tolerance control in sorghum accessions from diverse origins. Two tightly linked STS markers flanking Alt ( SB ) were used to study the role of this locus in the segregation for Al tolerance in mapping populations derived from different sources of Al tolerance crossed with a common Al sensitive tester, BR012, as well as to isolate the allelic effects of Alt ( SB ) in near-isogenic lines. The results indicated the existence not only of multiple alleles at the Alt ( SB ) locus, which conditioned a wide range of tolerance levels, but also of novel sorghum Al tolerance genes. Transgressive segregation was observed in a highly Al tolerant breeding line, indicating that potential exists to exploit the additive or codominant effects of distinct Al tolerance loci. A global, SSR-based, genetic diversity analysis using a broader sorghum set revealed the presence of both multiple Alt ( SB ) alleles and different Al tolerance genes within highly related accessions. This suggests that efforts toward broadening the genetic basis for Al tolerance in sorghum may benefit from a detailed analysis of Al tolerance gene diversity within subgroups across a target population. |
Author | GUIMARAES, C. T KOCHIAN, L. V ALVES, V. M. C BOREM, A CANIATO, F. F KLEIN, P. E MAGALHAES, J. V SCHAFFERT, R. E |
Author_xml | – sequence: 1 givenname: F. F surname: CANIATO fullname: CANIATO, F. F organization: Embrapa Maize and Sorghum, Rod. MG 424, Km 65, 35701-970 Sete Lagoas, MG, Brazil – sequence: 2 givenname: C. T surname: GUIMARAES fullname: GUIMARAES, C. T organization: Embrapa Maize and Sorghum, Rod. MG 424, Km 65, 35701-970 Sete Lagoas, MG, Brazil – sequence: 3 givenname: R. E surname: SCHAFFERT fullname: SCHAFFERT, R. E organization: Embrapa Maize and Sorghum, Rod. MG 424, Km 65, 35701-970 Sete Lagoas, MG, Brazil – sequence: 4 givenname: V. M. C surname: ALVES fullname: ALVES, V. M. C organization: Embrapa Maize and Sorghum, Rod. MG 424, Km 65, 35701-970 Sete Lagoas, MG, Brazil – sequence: 5 givenname: L. V surname: KOCHIAN fullname: KOCHIAN, L. V organization: U.S. Plant Soil and Nutrition Laboratory, USDA-ARS, Cornell University, Ithaca, NY 14853, United States – sequence: 6 givenname: A surname: BOREM fullname: BOREM, A organization: Federal University of Viçosa, Viçosa, MG 36570-000, Brazil – sequence: 7 givenname: P. E surname: KLEIN fullname: KLEIN, P. E organization: Institute for Plant Genomics and Biotechnology and Department of Horticulture, Texas A&M University, College Station, TX 77843, United States – sequence: 8 givenname: J. V surname: MAGALHAES fullname: MAGALHAES, J. V organization: Embrapa Maize and Sorghum, Rod. MG 424, Km 65, 35701-970 Sete Lagoas, MG, Brazil |
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Keywords | Monocotyledones Gramineae Angiospermae Genetics Sorghum Spermatophyta Agriculture Genetic diversity |
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Snippet | Genetic variation for aluminum (Al) tolerance in plants has allowed the development of cultivars that are high yielding on acidic, Al toxic soils. However,... |
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SubjectTerms | Aluminum - toxicity Base Sequence Biological and medical sciences Classical genetics, quantitative genetics, hybrids Crosses, Genetic DNA, Plant - genetics Fundamental and applied biological sciences. Psychology Genes, Plant Genetic diversity Genetic Markers Genetic Variation Genetics of eukaryotes. Biological and molecular evolution Minisatellite Repeats Plant Roots - drug effects Plant Roots - growth & development Pteridophyta, spermatophyta Segregation Sorghum Sorghum - classification Sorghum - drug effects Sorghum - genetics Sorghum - growth & development Species Specificity Vegetals |
Title | Genetic diversity for aluminum tolerance in sorghum |
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