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Molecular and whole-plant responses to selection for enzyme activity in alfalfa root nodules: evidence for molecular compensation of aspartate aminotransferase expression

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Summary

The enzyme aspartate aminotransferase (AAT) plays a key role in the assimilation of fixed-N in alfalfa (Medicago sativa L.) root nodules. AAT activity in alfalfa nodules is due to the activity of two dimeric isozymes, AAT-1 and AAT-2, that are products of two distinct genes. Three forms of AAT-2 (AAT-2a, -2b, and-2c) have been identified. It was hypothesized that two alleles occur at the AAT-2 locus, giving rise to the three AAT-2 enzymes. In a prior study bidirectional selection for root nodule AAT and asparagine synthetase (AS) activities on a nodule fresh weight basis in two diverse alfalfa germ plasms resulted in high nodule enzyme activity subpopulations with about 20% more nodule AAT activity than low enzyme activity subpopulations. The objectives of the study presented here were to determine the inheritance of nodule AAT-2 production and to evaluate the effect of bidirectional selection for AAT and AS on AAT-2 allelic frequencies, the relative contributions of AAT-1 and AAT-2 to total nodule activity, nodule enzyme concentration, and correlated traits. Two alleles at the AAT-2 locus were verified by evaluating segregation of isozyme phenotypes among F1 and S1 progeny of crosses or selfs. Characterization of subpopulations for responses associated with selection was conducted using immunoprecipitation of in vitro nodule AAT activity, quantification of AAT enzyme protein by ELISA, and AAT activity staining of native isozymes on PAGE. Results indicate that selection for total AAT activity specifically altered the expression of the nodule AAT-2 isozyme. AAT-2 activity was significantly greater in high compared to low activity subpopulations, and high AAT subpopulations from both germ plasms had about 18% more AAT-2 enzyme (on a nodule fresh weight basis). No significant or consistent changes in AAT-2 genotypic frequencies in subpopulations were caused by selection for AAT activity. Since changes in AAT activity were not associated with changes in AAT-2 genotype, selection must have affected a change(s) at another locus (or loci), which indirectly effects the expression of nodule AAT.

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References

  • Degenhart NR, Barnes DK, Vance CP (1992) Divergent selection for nodule aspartate aminotransferase and asparagine synthetase activities in alfalfa. Crop Sci 32:313–317

    Google Scholar 

  • Farnham MW, Griffith SM, Miller SS, Vance CP (1990a) Aspartate aminotransferase in alfalfa root nodules. III. Genotypic and tissue expression of aspartate aminotransferase in alfalfa and other species. Plant Physiol 94:1634–1640

    Google Scholar 

  • Farnham MW, Miller SS, Griffith SM, Vance CP (1990b) Aspartate aminotransferase in alfalfa root nodules. II. Immunological distinction between two forms of the enzyme. Plant Physiol 93:603–610

    Google Scholar 

  • Gantt JS, Larson RJ, Farnham MW, Pathirana SM, Miller SS, Vance CP (1992) Aspartate aminotransferase (AAT) in effective and ineffective alfalfa nodules: Cloning and sequencing of a cDNA and determination of enzyme activity, protein, and mRNA levels. Plant Physiol 97:868–878

    Google Scholar 

  • Griffith SM, Vance CP (1989) Aspartate aminotransferase in alfalfa root nodules I. Purification and partial characterization. Plant Physiol 90:1622–1629

    Google Scholar 

  • Groat RG, Vance CP (1984) Host plant nodule enzymes associated with selection for increased N2 fixation in alfalfa. Crop Sci 24:895–898

    Google Scholar 

  • Jessen DL, Barnes DK, Vance CP, Heichel GH (1987) Variation for activity of nodule nitrogen and carbon assimilating enzymes in alfalfa. Crop Sci 27:627–631

    Google Scholar 

  • Jessen DL, Barnes DK, Vance CP (1988) Bidirectional selection in alfalfa for activity of nitrogen and carbon-assimilating enzymes. Crop Sci 28:18–22

    Google Scholar 

  • Krebs SL, Hancock JF (1989) Tetrasomic inheritance of isoenzyme markers in the highbush blueberry, Vaccinium corymbosum L. Heredity 63:11–18

    Google Scholar 

  • Lowry OH, Rosenbrough NJ, Farr AL, Fandall RJ (1951) Protein measurement with the Folin phenol reagent. J Biol Chem 193:265–275

    Google Scholar 

  • Martinez-Zapater JM, Oliver JL (1984) Genetic analysis of isozyme loci in tetraploid potatoes (Solanum tuberosum L.). Genetics 108:669–679

    Google Scholar 

  • Maxwell CA, Vance CP, Heichel GH, Stade S (1984) CO2 fixation in alfalfa and birdsfoot trefoil root nodules and partitioning of 14C to the plant. Crop Sci 24:257–264

    Google Scholar 

  • Ornstein L (1964) Disc electrophoresis. II. Method and application to human serum protein. Ann NY Acad Sci 121:404–427

    Google Scholar 

  • Quiros CF (1982) Tetrasomic segregation for multiple alleles in alfalfa. Genetics 101:117–127

    Google Scholar 

  • Shaw Cr, Prasad R (1970) Starch gel electrophoresis of enzymes — a compilation of recipes. Biochem Genet 4:297–330

    Google Scholar 

  • Ta TC, Faris MA, MacDowall FDH (1986) Pathways of nitrogen metabolism in nodules of alfalfa (Medicago sativa L.) Plant Physiol 80:1002–1005

    Google Scholar 

  • Vance CP, Heichel GH (1991) Carbon in N2-fixation: Limitation or exquisite adaptation. Annu Rev Plant Physiol Mol Biol 42:373–392

    Google Scholar 

  • Viands DR, Sun P, Barnes DK (1988) Pollination control: mechanical and sterility. In: Hanson AA, Barnes DK, Hill RR (eds) Alfalfa and alfalfa improvement. Am Soc Agron, Madison, Wis., pp 931–960

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Communicated by G. Wenzel

Mention of a trademark, proprietary product, or vendor does not constitute a guarantee or warranty of the product by the U.S. Department of Agriculture, and does not imply its approval to the exclusion of other products or vendors that might also be suitable

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Farnham, M.W., Degenhart, N.R., Vance, C.P. et al. Molecular and whole-plant responses to selection for enzyme activity in alfalfa root nodules: evidence for molecular compensation of aspartate aminotransferase expression. Theoret. Appl. Genetics 84, 355–361 (1992). https://doi.org/10.1007/BF00229494

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  • DOI: https://doi.org/10.1007/BF00229494

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