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广泛分布的蓝藻念珠藻对极端温度变化(-269 至 105°C)、pH 值和盐胁迫的耐受性。

Tolerance of the widespread cyanobacterium Nostoc commune to extreme temperature variations (-269 to 105°C), pH and salt stress.

机构信息

Freshwater Biological Laboratory, Biological Institute, University of Copenhagen, Hillerød, Denmark.

出版信息

Oecologia. 2012 Jun;169(2):331-9. doi: 10.1007/s00442-011-2200-0. Epub 2011 Nov 26.

DOI:10.1007/s00442-011-2200-0
PMID:22120705
Abstract

Nostoc commune is a widespread colonial cyanobacterium living on bare soils that alternate between frost and thaw, drought and inundation and very low and high temperatures. We collected N. commune from alternating wet and dry limestone pavements in Sweden and tested its photosynthesis and respiration at 20°C after exposure to variations in temperature (-269 to 105°C), pH (2-10) and NaCl (0.02-50 g NaCl kg(-1)). We found that dry field samples and rewetted specimens tolerated exposure beyond that experienced in natural environmental conditions: -269 to 70°C, pH 3-10 and 0-20 g NaCl kg(-1), with only a modest reduction of respiration, photosynthesis and active carbon uptake at 20°C. (14)CO(2) uptake from air declined markedly below zero and above 55°C, but remained positive. Specimens maintained a high metabolism with daily exposure to 6 h of rehydration and 18 h of desiccation at -18 and 20°C, but died at 40°C. The field temperature never exceeded the critical 40°C threshold during the wet periods, but it frequently exceeded this temperature during dry periods when N. commune is already dry and unaffected. We conclude that N. commune has an excellent tolerance to low temperatures, long-term desiccation and recurring cycles of desiccation and rewetting. These traits explain why it is the pioneer species in extremely harsh, nutrient-poor and alternating wet and dry environments.

摘要

普通念珠藻是一种广泛分布的陆生蓝藻,生活在干湿交替、冻融交替、温度极低和极高的裸露土壤上。我们从瑞典干湿交替的石灰岩铺层中采集了普通念珠藻,并在 20°C 下测试了其光合作用和呼吸作用,然后让其分别经历了从-269°C 到 105°C 的温度变化、pH 值(2-10)和 NaCl(0.02-50 g NaCl kg(-1))的变化。我们发现,干燥的野外样本和重新润湿的标本能够耐受超出自然环境条件的暴露:-269°C 到 70°C、pH 值 3-10 和 0-20 g NaCl kg(-1),在 20°C 时,呼吸作用、光合作用和活性碳吸收仅有适度减少。(14)CO(2)从空气中的摄取量在低于零和高于 55°C 时显著下降,但仍为正值。标本在-18°C 和 20°C 下每天经历 6 小时的复水和 18 小时的干燥,保持着较高的新陈代谢,但在 40°C 时死亡。野外温度在湿润期从未超过关键的 40°C 阈值,但在干燥期经常超过这一温度,此时普通念珠藻已经干燥且不受影响。我们得出的结论是,普通念珠藻对低温、长期干旱以及干湿交替的循环有极好的耐受性。这些特征解释了为什么它是在极其恶劣、贫营养且干湿交替的环境中的先锋物种。

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3
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