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本文引用的文献

1
Interaction among non-toxic phytoplankton, toxic phytoplankton and zooplankton: inferences from field observations.无毒浮游植物、有毒浮游植物和浮游动物之间的相互作用:基于实地观测的推断
J Biol Phys. 2007 Feb;33(1):1-17. doi: 10.1007/s10867-007-9038-z. Epub 2007 Jun 21.
2
Promotion of harmful algal blooms by zooplankton predatory activity.浮游动物捕食活动对有害藻华的促进作用。
Biol Lett. 2006 Jun 22;2(2):194-7. doi: 10.1098/rsbl.2006.0447.
3
Competing effects of toxin-producing phytoplankton on overall plankton populations in the bay of Bengal.产毒素浮游植物对孟加拉湾浮游生物总体数量的竞争效应。
Bull Math Biol. 2006 Nov;68(8):2303-20. doi: 10.1007/s11538-006-9109-5. Epub 2006 Jun 28.
4
Reduced mixing generates oscillations and chaos in the oceanic deep chlorophyll maximum.混合减少会在海洋深层叶绿素最大值区域产生振荡和混沌现象。
Nature. 2006 Jan 19;439(7074):322-5. doi: 10.1038/nature04245.
5
A delay differential equation model on harmful algal blooms in the presence of toxic substances.一种存在有毒物质时有害藻华的延迟微分方程模型。
IMA J Math Appl Med Biol. 2002 Jun;19(2):137-61.
6
Toxin-producing plankton may act as a biological control for planktonic blooms--field study and mathematical modelling.产毒素浮游生物可作为浮游生物大量繁殖的一种生物控制手段——实地研究与数学建模
J Theor Biol. 2002 Apr 7;215(3):333-44. doi: 10.1006/jtbi.2001.2510.
7
Wave of chaos: new mechanism of pattern formation in spatio-temporal population dynamics.混沌波:时空种群动态中模式形成的新机制
Theor Popul Biol. 2001 Mar;59(2):157-74. doi: 10.1006/tpbi.2000.1509.
8
Effects of toxicants on populations: a qualitative approach II. First order kinetics.毒物对种群的影响:定性方法II. 一级动力学
J Math Biol. 1983;18(1):25-37. doi: 10.1007/BF00275908.
9
Contemporaneous disequilibrium, a new hypothesis to explain the "paradox of the plankton".同期失衡,一种解释“浮游生物悖论”的新假说。
Proc Natl Acad Sci U S A. 1970 Dec;67(4):1710-4. doi: 10.1073/pnas.67.4.1710.

无毒浮游植物、有毒浮游植物和浮游动物之间的空间相互作用:时空上的显现

Spatial interaction among nontoxic phytoplankton, toxic phytoplankton, and zooplankton: emergence in space and time.

作者信息

Roy Shovonlal

机构信息

School of Mathematics, The University of Manchester, Alan Turing Building, Manchester, M13 9PL, UK,

出版信息

J Biol Phys. 2008 Oct;34(5):459-74. doi: 10.1007/s10867-008-9100-5. Epub 2008 Aug 7.

DOI:10.1007/s10867-008-9100-5
PMID:19669506
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2652546/
Abstract

In homogeneous environments, by overturning the possibility of competitive exclusion among phytoplankton species, and by regulating the dynamics of overall plankton population, toxin-producing phytoplankton (TPP) potentially help in maintaining plankton diversity-a result shown recently. Here, I explore the competitive effects of TPP on phytoplankton and zooplankton species undergoing spatial movements in the subsurface water. The spatial interactions among the species are represented in the form of reaction-diffusion equations. Suitable parametric conditions under which Turing patterns may or may not evolve are investigated. Spatiotemporal distributions of species biomass are simulated using the diffusivity assumptions realistic for natural planktonic systems. The study demonstrates that spatial movements of planktonic systems in the presence of TPP generate and maintain inhomogeneous biomass distribution of competing phytoplankton, as well as grazer zooplankton, thereby ensuring the persistence of multiple species in space and time. The overall results may potentially explain the sustainability of biodiversity and the spatiotemporal emergence of phytoplankton and zooplankton species under the influence of TPP combined with their physical movement in the subsurface water.

摘要

在均质环境中,通过颠覆浮游植物物种间竞争排斥的可能性,并通过调节整个浮游生物种群的动态,产毒素浮游植物(TPP)可能有助于维持浮游生物多样性——这是最近显示的结果。在此,我探讨了TPP对在次表层水中进行空间移动的浮游植物和浮游动物物种的竞争影响。物种间的空间相互作用以反应扩散方程的形式表示。研究了图灵模式可能演化或不演化的合适参数条件。利用对自然浮游系统现实的扩散率假设,模拟了物种生物量的时空分布。该研究表明,在TPP存在的情况下,浮游系统的空间移动产生并维持了竞争浮游植物以及食草浮游动物的不均匀生物量分布,从而确保了多个物种在空间和时间上的持续存在。总体结果可能潜在地解释了在TPP影响下,结合它们在次表层水中的物理移动,生物多样性的可持续性以及浮游植物和浮游动物物种的时空出现。