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Temperature increase - an uncertain stimulant of algal growth and primary production in fresh waters

机译:温度升高-不确定淡水中藻类生长和初级生产的刺激性

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Temperature profoundly influences the occurrence and organic production of algae in inland waters. Correlations deduced from seasonality of species are limited by numerous interactions. The kinetics of growth and photosynthesis are more unequivocal, although light and nutrient conditions affect rate-response to temperature, with reduced sensitivity at low irradiance. Specific growth rates, species-characteristic, have rarely been measured systematically with numerous common species and short intervals over an extended range of temperature.Different bases of quantitative analysis are cited; they include cardinal points, neo-Blackman behaviour, and the van't Hoff (Q_(10)), Arrhenius (degrees K) and Belehradek (with 'biological zero') formulations. Temperature-limits of specific growth rateare widely found, and variable with species, outside the 10-20 °C range. Low-temperature stenothermy is apparently uncommon, and high temperature (35+ °C) species and strains are known. Maximum rates fall below an upper limiting envelope. In nature, species are only rarely most abundant at their optima for specific growth rate. Differences of temperature have indirect effects on algal distribution in a stratified water-column. Geographical distributions partly relate to temperature, although experimental elucidation is rare; there is indirect influence through ice-cover and altitude. Some prediction of rate-limitation is possible, both with latitude and globally.
机译:温度深刻影响内陆水域藻类的发生和有机生产。由物种的季节性推断出的相关性受到众多相互作用的限制。生长和光合作用的动力学更加明确,尽管光照和营养条件会影响对温度的速率响应,但在低辐照度下灵敏度会降低。很少有特定的生长速率(物种特征)在广泛的温度范围内以众多常见物种和较短的间隔进行系统的测量。它们包括基本要点,新布莱克曼行为以及van't Hoff(Q_(10)),Arrhenius(K度)和Belehradek(“生物零”)公式。广泛发现了特定生长速率的温度极限,并且随物种的变化而变化,超出10-20°C的范围。低温狭窄显然不常见,并且已知高温(35+°C)种类和菌株。最大速率低于上限范围。在自然界中,物种很少会以其特定增长率的最佳状态最丰富。温度差异对分层水柱中的藻类分布有间接影响。地理分布部分与温度有关,尽管很少有实验说明。受到冰盖和海拔高度的间接影响。无论是在纬度还是全局范围,都可以对速率限制进行一些预测。

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