Suppr超能文献

气候变化影响温带地区一种入侵性蓝藻细菌种群的时间和规模。

Climate change affects timing and size of populations of an invasive cyanobacterium in temperate regions.

作者信息

Wiedner Claudia, Rücker Jacqueline, Brüggemann Rainer, Nixdorf Brigitte

机构信息

Department of Limnology of Stratified Lakes, Leibniz-Institute of Freshwater Ecology and Inland Fisheries, Alte Fischerhütte 2, 16775 Stechlin-Neuglobsow, Germany.

出版信息

Oecologia. 2007 Jun;152(3):473-84. doi: 10.1007/s00442-007-0683-5. Epub 2007 Mar 21.

Abstract

Cylindrospermopsis raciborskii, an invasive freshwater cyanobacterium, originated from the tropics but has spread to temperate zones over the last few decades. Its northernmost populations in Europe occur in North German lakes. How such dramatic changes in its biogeography are possible and how its population dynamics in the newly invaded habitats are regulated are still unexplained. We therefore conducted a long-term (1993-2005) study of two German lakes to elucidate the mechanisms behind C. raciborskii population dynamics and to identify the abiotic constraints on its development. Our data revealed that pelagic populations of C. raciborskii thrived for three months during the summer, contributing up to 23% of the total cyanobacteria biovolume. Population sizes varied greatly between years without exhibiting any distinct long-term trends. In the annual lifecycle, C. raciborskii filaments emerged in the pelagic habitat when the temperature rose above 15-17 degrees C. At that time, mean photosynthetically active radiation in the mixed water column (I (mix)) overstepped its maximum. Rates of population net increase were highest at the beginning of the season (0.15-0.28 day(-1)), declined continuously over time, and were significantly positively correlated with I (mix). This indicates that the onset of the pelagic population is temperature-mediated and that I (mix) controls its growth. Since I (mix) peaks before the population onset, the time of germination is of crucial importance for successful development. To test this hypothesis, we designed a model to simulate pelagic population size, starting at different dates in the annual cycle. Moving the population onset forward by 30 days resulted in a doubling of the population size. We therefore conclude that an earlier rise in water temperature associated with climate change has promoted the spread of C. raciborskii to the temperate zone. Earlier warming permits earlier germination, thereby shifting the pelagic populations to a phase with higher I (mix), which advances growth and the population establishment.

摘要

柱孢鱼腥藻是一种入侵性淡水蓝藻,原产于热带地区,但在过去几十年里已扩散到温带地区。其在欧洲最北的种群出现在德国北部的湖泊中。其生物地理学发生如此巨大变化的原因以及新入侵栖息地中其种群动态是如何受到调节的,目前仍未得到解释。因此,我们对德国的两个湖泊进行了一项长期(1993 - 2005年)研究,以阐明柱孢鱼腥藻种群动态背后的机制,并确定其生长发育的非生物限制因素。我们的数据显示,柱孢鱼腥藻的浮游种群在夏季的三个月中大量繁殖,其生物量占蓝藻总生物量的比例高达23%。种群数量在不同年份间变化很大,没有呈现出任何明显的长期趋势。在其年度生命周期中,当水温升至15 - 17摄氏度以上时,柱孢鱼腥藻丝状体出现在浮游生境中。此时,混合水柱中的平均光合有效辐射(I(mix))超过了其最大值。种群净增长率在季节开始时最高(0.15 - 0.28天⁻¹),随后随时间持续下降,且与I(mix)显著正相关。这表明浮游种群的出现是由温度介导的,而I(mix)控制着其生长。由于I(mix)在种群出现之前达到峰值,萌发时间对于成功发育至关重要。为了验证这一假设,我们设计了一个模型来模拟浮游种群数量,从年度周期中的不同日期开始。将种群出现时间提前30天会使种群数量翻倍。因此,我们得出结论,与气候变化相关的水温提前升高促进了柱孢鱼腥藻向温带地区的扩散。更早的升温允许更早的萌发,从而使浮游种群进入I(mix)更高的阶段,这促进了生长和种群的建立。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验