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Soybean genotypic differences in sensitivity of symbiotic nitrogen fixation to soil dehydration

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Abstract

Nitrogen fixation activity by soybean (Glycine max (L.) Merr.) nodules has been shown to be especially sensitive to soil dehydration. Specifically, nitrogen fixation rates have been found to decrease in response to soil dehydration preceding alterations in plant gas exchange rates. The objective of this research was to investigate possible genetic variation in the sensitivity of soybean cultivars for nitrogen fixation rates in response to soil drying. Field tests showed substantial variation among cultivars with Jackson and CNS showing the least sensitivity in nitrogen accumulation to soil drying. Glasshouse experiments confirmed a large divergence among cultivars in the nitrogen fixation response to drought. Nitrogen fixation in Jackson was again found to be tolerant of soil drying, but the other five cultivars tested, including CNS, were found to be intolerant. Experiments with CNS which induced localized soil drying around the nodules did not result in decreases in nitrogen fixation rates, but rather nitrogen fixation responded to drying of the entire rooting volume. The osmotic potential of nodules was found to decrease markedly upon soil drying. However, the decrease in nodule osmotic potential occurred after significant decreases in nitrogen fixation rates had already been observed. Overall, the results of this study indicate that important genetic variations for sensitivity of nitrogen fixation to soil drying exist in soybean, and that the variation may be useful in physiology and breeding studies.

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References

  • AlbrechtS L, BennettJ M and BooteK J 1984 Relationship of nitrogenase activity to plant water stress in field-grown soybeans. Field Crops Res. 8, 61–71.

    Google Scholar 

  • DenisonR F, SinclairT R, ZobelR W, JohnsonM N and DrakeG M 1983 A non-destructive field assay for soybean nitrogen fixation by acetylene reduction. Plant and Soil 70, 173–182.

    Google Scholar 

  • DurandJ-L, SheehyJ E and MinchinF R 1987 Nitrogenase activity, photosynthesis and nodule water potential in soya-bean plants experiencing water deprivation. J. Exp. Bot. 38, 311–321.

    Google Scholar 

  • HuntP G, WollumIIA G and MathenyT A 1981 Effects of soil water on Rhizobium japonicum infection, nitrogen accumulation, and yield in Bragg soybeans. Agron. J. 73, 501–505.

    Google Scholar 

  • Khanna-ChopraR, KoundalK R and SinhaS K 1984 A simple technique of studying water deficit effects on nitrogen fixation in nodules without influencing the whole plant. Plant Physiol. 76, 254–256.

    Google Scholar 

  • KuoT and BoersmaL 1971 Soil water suction and root temperature effects on nitrogen fixation in soybeans. Agron. J. 63, 901–904.

    Google Scholar 

  • MinchinF R and WittyJ F 1989 Limitations and errors in gas exchange measurements with legume nodules. In Applications of Continuous and Steady-State Methods to Root Biology. Eds. J GTorrey and L JWinship. pp 79–95. Kluwer Academic Publishers, Dordrecht, The Netherlands.

    Google Scholar 

  • Ray J D 1987 Genotypic differences in soybean responses to water stress. Ms Thesis, Univ. of Florida. FL. 146 p.

  • SinclairT R 1986 Water and nitrogen limitations in soybean grain production. I. Model development. Field Crops Res. 15, 125–141.

    Google Scholar 

  • SinclairT R and deWitC T 1976 Analysis of the carbon and nitrogen limitations to soybean yield. Agron. J. 68, 319–324.

    Google Scholar 

  • SinclairT R, MuchowR C, BennettJ M and HammondL C 1987 Relative sensitivity of nitrogen and biomass accumulation to drought in field-grown soybean. Agron. J. 79, 986–991.

    Google Scholar 

  • WeiszP R, DenisonR F and SinclairT R 1985 Response to drought stress of nitrogen fixation (acetylene reduction) rates by field-grown soybeans. Plant Physiol. 78, 525–530.

    Google Scholar 

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Sall, K., Sinclair, T.R. Soybean genotypic differences in sensitivity of symbiotic nitrogen fixation to soil dehydration. Plant Soil 133, 31–37 (1991). https://doi.org/10.1007/BF00011896

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  • DOI: https://doi.org/10.1007/BF00011896

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