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Ecophysiological responses of the salt marsh grass Spartina maritima to salinity.

机译:盐沼草 Maritima 对盐分的生态生理响应。

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摘要

The effects of salinity on growth and productivity of Spartina maritima (Curtis) Fernald were investigated in glasshouse and field experiments in 2008. In the glasshouse study, plants were subjected to 2%, 10%, 20%, 40% and 80% sea water, with tidal simulation, for 10 months. Increase in salinity from 2% to 20% sea water increased biomass accumulation, CO2 exchange, quantum yield of Photosystem II (PSII), electron transport rate (ETR) through PSII, and intrinsic photochemical efficiency of PSII, while further increases in salinity to 80% resulted in significant decreases in these parameters. Concentrations of proline increased significantly with increase in salinity up to 80% sea water. In the field study, soil physicochemical conditions between streamside and inland sites were compared, and the constraints imposed by any differences on plant ecophysiological responses determined. At the inland site, soil water potential ( psi ), electrical conductivity of the soil, total cations, and the concentrations of Na+, Ca2+, Mg2+ and P, were significantly higher than those of the streamside site, while CO2 exchange, quantum yield of PSII, ETR through PSII, and intrinsic photochemical efficiency of PSII were significantly lower. The results suggest that S. maritima grows optimally at a salinity of about 20% sea water, and that higher salinity decreases growth and photosynthetic performance.
机译:在2008年的温室和田间试验中,研究了盐度对海鲈(Curtis)Fernald生长和生产力的影响。在温室研究中,植物分别受2%,10%,20%, 40%和80%的海水经过潮汐模拟,历时10个月。盐度从2%增加到20%海水增加了生物量积累,CO 2 交换,光系统II(PSII)的量子产率,通过PSII的电子传输速率(ETR)以及PSII的固有光化学效率,而盐度进一步提高到80%会导致这些参数显着降低。随着海水中盐分含量的增加,脯氨酸的浓度显着增加,最高可达80%。在田间研究中,比较了河岸和内陆地点之间的土壤理化条件,并确定了对植物生态生理反应的任何差异所施加的限制。在内陆地区,土壤水势(psi),土壤电导率,总阳离子以及Na + ,Ca 2 + ,Mg 的浓度2 + 和P,明显高于河床位,而CO 2 交换,PSII的量子产率,通过PSII的ETR和PSII的内在光化学效率均显着降低。结果表明 S。 maritima 在大约20%的海水盐度下生长最佳,而更高的盐度则会降低生长和光合作用。

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