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康斯坦茨湖贫营养化的头十年:I. 浮游植物生物量和细胞大小的响应

The first decade of oligotrophication in Lake Constance : I. The response of phytoplankton biomass and cell size.

作者信息

Gaedke Ursula, Schweizer Anette

机构信息

Limnologisches Institut, Universität Konstanz, Postfach 5560, D-7750, Konstanz, Germany.

出版信息

Oecologia. 1993 Mar;93(2):268-275. doi: 10.1007/BF00317681.

Abstract

Phytoplankton biomass and species composition were measured with a relatively high temporal resolution (once or twice a week during the growing season) from 1979 to 1989 in Lake Constance/Überlingersee. Over this period soluble reactive phosphorus (SRP) concentrations during winter mixing were reduced by ca. 50% from 104 to 47 μg 1, which caused a prolongation and amplification of the epilimnetic P depletion during the growth period. Seasonal dynamics of phytoplankton reacted to the decrease of SRP in the following ways: (1) Algal biomass decreased at least proportionally to the winter SRP concentrations in summer, but not in spring and autumn when biomass fluctuated irregularly. (2) The peak of biomass concentration changed from summer to spring. (3) The earlier onset of epilimnetic P depletion during the season in recent years promoted a stronger growth of some pennate diatoms in spring. It caused an amplification of the silicon depletion in summer, which may cause still greater reduction of diatoms and total algal biomass in summer. (4) Reduction of algal biomass during the clear-water phase proper became shorter and less pronounced. (5) The temporal variability of algal biomass decreased in summer and autumn but not in spring. (6) Average cell sizes remained unchanged in summer and autumn but increased in spring during the beginning of oligotrophication. These results are largely in agreement with other studies on lake restoration and expectations derived from the PEG (Plankton Ecology Group) model (Sommer et al. 1986). They show that a 50% reduction of SRP concentrations during homothermy may have pronounced effects on seasonal dynamics of algal biomass in a large and deep lake. The algal response to the external change of SRP concentrations can be described by the Le Chatelier principle, implying that the internal structure of the system (e.g. species composition) changes in order to minimize the effect of the external pressure (e.g. reduction of total biomass). Suggestions are made as to how this system behaviour may emerge from local interactions.

摘要

1979年至1989年期间,康斯坦茨湖/于伯林根湖的浮游植物生物量和物种组成以相对较高的时间分辨率(生长季节每周一次或两次)进行了测量。在此期间,冬季混合期间的可溶性活性磷(SRP)浓度从104μg/L降至47μg/L,约降低了50%,这导致了生长期间表层水磷耗尽的延长和加剧。浮游植物的季节动态对SRP的减少有以下反应:(1)藻类生物量在夏季至少与冬季SRP浓度成比例下降,但在生物量不规则波动的春季和秋季则不然。(2)生物量浓度峰值从夏季转移到春季。(3)近年来该季节表层水磷耗尽的提前开始促进了一些羽纹硅藻在春季更强的生长。这导致了夏季硅耗尽的加剧,这可能会导致夏季硅藻和总藻类生物量的进一步减少。(4)清水期藻类生物量的减少变得更短且不那么明显。(5)藻类生物量的时间变异性在夏季和秋季降低,但在春季没有降低。(6)夏季和秋季平均细胞大小保持不变,但在贫营养化开始时的春季有所增加。这些结果在很大程度上与其他关于湖泊恢复的研究以及从PEG(浮游生物生态组)模型得出的预期一致(Sommer等人,1986年)。它们表明,在同温期SRP浓度降低50%可能对大型深水湖泊中藻类生物量的季节动态产生显著影响。藻类对SRP浓度外部变化的反应可以用勒夏特列原理来描述,这意味着系统的内部结构(如物种组成)会发生变化,以尽量减少外部压力(如总生物量减少)的影响。针对这种系统行为如何从局部相互作用中出现提出了建议。

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