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Accumulation of proline and glycinebetaine in Spartina alterniflora Loisel. in response to NaCl and nitrogen in the marsh

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Summary

The possible interaction of high soil salinity and low soil nitrogen content in affecting the growth of Spartina alterniflora Loisel in the high and low marshes of the Eastern U.S. was explored. Throughout the whole growing season, the short plants growing in the high marsh, where there was a higher soil salinity and lower available soil nitrogen, contained more proline and glycinebetaine and showed a lower leaf water potential than the tall plants growing in the low marsh. In both short and tall plants, the growing season, with the highest content occurring in spring and fall. In contrast, the glycinebetaine content in both short and tall plants remained fairly constant throughout the growing season, and was consistently at least 10 fold higher than the proline content. It is estimated that 19–30% of the total leaf nitrogen was in the form of proline and glycinebetaine in the short plants, and 14–27% in the tall plants. Ammonium nitrate fertilization in the field resulted in increased growth, higher proline and glycinebetaine contents, and lower water potentials in the short plants, but had little effect on these parameters in the tall plants. We suggest that in the low marsh, the plants can obtain sufficient nitrogen for osmoregulation and other metabolism. In the high marsh with higher soil salinity and lower nitrogen content, the plants have to allocate a even greater proportion of the already limited nitrogen supply for osmoregulation. Thus, nitrogen available for osmoregulation and other nitrogen-requiring metabolism is insufficient, resulting in reduced growth.

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References

  • Cavalieri AJ, Huang AHC (1979) Evaluation of proline accumulation in the adaptation of diverse species of marsh halophytes to the saline environment. Am J Bot 66:307–312

    Google Scholar 

  • Chalmers G (1979) The effects of fertilizer on nitrogen distribution in a Spartina alterniflora salt marsh. Estuarine and Coastal Mar Sci 8:327–337

    Google Scholar 

  • Flowers TJ, Troke BJ, Yeo AR (1977) The mechanism of salt tolerance in halophytes. Ann Rev Plant Physiol. 28:89–121

    Google Scholar 

  • Gallagher JL (1975) Effect of an ammonium nitrate pulse on the growth and elemental composition of natural stands of Spartina alterniflora and Juncus roemerianus. Am J Bot 62:644–648

    Google Scholar 

  • Gardner LR (1975) Runoff from an intertidal marsh during tidal exposure-recession curves and chemical characteristics. Limnol Oceanogr 20:81–89

    Google Scholar 

  • Giurgevich JR, Dunn EL (1979) Seasonal patterns of CO2 and water vapor exchange of the tall and short height forms of Spartina alterniflora Loisel in a Georgia salt marsh. Oecologia (Berl) 43:139–156

    Google Scholar 

  • Haines BL, Dunn EL (1976) Growth and resource allocation response of Spartina alterniflora Loisel. to three levels of NH4−N, Fe and NaCl in solution culture. Bot Gaz 137:224–230

    Google Scholar 

  • Jefferies RL, Davy AJ, Rudmik T (1979) The growth strategies of coastal halophytes. In: Jefferies RL and Davy AJ (eds), Ecological Processes in Coastal Environments. Blackwell Scientific Publications London 243–268

    Google Scholar 

  • Keefe CW (1972) Marsh Production: A summary of the literature. Contributions in Mar Sci 16:163–181

    Google Scholar 

  • Kerwin JA, Pedigo RA (1971) Synecology of a Virgina salt marsh. Chesapeake Sci 12:125–130

    Google Scholar 

  • Longstreth DJ, Strain BR (1977) Effects of salinity and illumination on photosynthesis and water balance of Spartina alterniflora Loisel. Oecologia (Berl) 31:191–199

    Google Scholar 

  • Mendelssohn IA (1979) Nitrogen metabolism in the height forms of Spartina alterniflora in North Carolina. Ecology 60:574–584

    Google Scholar 

  • Mendelssohn IA, Marcellus KL (1976) Angiosperm production of three Virginia marshes in various salinity and soil nutrient regimes. Chesapeake Sci 17:15–23

    Google Scholar 

  • Miller WR, Egler FE (1950) Vegetation of the Wequetequock-Pawcatuck tidal-marshes, Connecticut. Ecol Monogr 20:143–172

    Google Scholar 

  • Mooring MT, Cooper AW, Seneca ED (1971) Seed germination and evidence for height ecophenes of Spartina alterniflora from North Carolina. Am J Bot 58:48–55

    Google Scholar 

  • Nestler J (1977) Interstitial salinity as a cause of ecophenic variation in Spartina alterniflora. Estuarine Coastal Mar Sci 5:707–714

    Google Scholar 

  • Nixon SW, Oviatt CA (1973). Analysis of local variation in the standing crop of Spartina alterniflora. Bot Marina 16:103–109

    Google Scholar 

  • Parrondo RT, Gosselink JG, Hopkinson CS (1978) Effects of salinity and drainage on the growth of three salt marsh grasses. Bot Gaz 139:102–107

    Google Scholar 

  • Pan SM, Moreau RA, Yu C, Huang AHC (1981) Betaine accumulation and betaine aldehyde dehydrogenase in spinach leaves. Plant Physiol in press

  • Pearce RB, Strange RN, Smith H (1976) Glycinebetaine and choline in wheat: Distribution in relation to infection by Fusarium graminearum. Phytochem 15:953–954

    Google Scholar 

  • Shea ML, Warren RS, Niering WA (1975) Biochemical and transplantation studies of the growth forms of Spartina alterniflora on Connecticut salt marshes. Ecology 56:461–466

    Google Scholar 

  • Singh TN, Paleg LG, Aspinall D (1973) Stress metabolism. 1. Nitrogen metabolism and growth in the barley plant during water stress. Aust J Biol Sci 26:45–56

    Google Scholar 

  • Squires ER, Good RE (1974) Seasonal changes in the productivity, caloric content, and chemical composition of a population of salt-marsh cordgrass (Spartian alterniflora). Chesapeake Sci 15:63–71

    Google Scholar 

  • Stewart GR, Larher F, Ahmad I, Lee JA (1979) Nitrogen metabolism and salt-tolerance in higher plant halophytes. In: Jefferies RJ, Davy AJ (eds) Coastal Environments. Blackwell Scientific Publications, London 211–227

    Google Scholar 

  • Stewart GR, Lee JA (1974) The role of proline accumulation in halophytes. Planta 120:279–289

    Google Scholar 

  • Storey R, Ahmad N, Wyn Jones RG (1977) Taxonomic and ecological aspects of the distribution of glycinebetaine and related compounds in plants. Oecologia (Berl) 27:319–332

    Google Scholar 

  • Storey R, Wyn Jones RG (1979) Response of Atriplex spongiosa and Suaeda monica to salinity. Plant Physiol 63:156–162

    Google Scholar 

  • Sullivan MJ, Daiber FC (1974) Response in production of cord-grass, Spartina alterniflora, to inorganic nitrogen and phosphorus fertilizer. Chesapeake Sci 15:121–123

    Google Scholar 

  • Taschdjian E (1954) A note on Spartina protein. Econ Bot 8:164–165

    Google Scholar 

  • Turner RE (1976) A note on Spartina protein. Econ Bot 8:164–165

    Google Scholar 

  • Turner RE (1976) Geographic variations in salt marsh macrophyte production: A review. Contr in Mar Sci 20:47–68

    Google Scholar 

  • Valiela I, Teal JM, Deuser WF (1978) The nature of growth forms in the salt marsh grass Spartina alterniflora. Am Natl 112:461–470

    Google Scholar 

  • Van Raalte CD, Valiela I, Carpenter EJ, Teal JM (1974) Inhibition of nitrogen fixation in salt marshes measured by acetylene reduction. Estuarine Coastal Mar Sci 2:301–305

    Google Scholar 

  • Woodhouse WW Jr, Seneca ED, Broome SW (1976) Propagation and use of Spartina alterniflora for shoreline erosion abatement. Tech Report 76-2. US Army Corp of Engr

  • Wyn Jones RG, Storey R, Leigh RA, Ahmad N, Pollard A (1977) A hypothesis on cytoplasmic osmoregulation. In: Marre R and Cifferi O (eds), Regulation of Cell Membrane Activities in Plants. North Holland Amsterdam 122–136

    Google Scholar 

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Cavalieri, A.J., Huang, A.H.C. Accumulation of proline and glycinebetaine in Spartina alterniflora Loisel. in response to NaCl and nitrogen in the marsh. Oecologia 49, 224–228 (1981). https://doi.org/10.1007/BF00349192

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  • DOI: https://doi.org/10.1007/BF00349192

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