Wolbachia spreading dynamics in mosquitoes with imperfect maternal transmission

被引:63
作者
Zheng, Bo [1 ,2 ]
Tang, Moxun [2 ]
Yu, Jianshe [1 ]
Qiu, Junxiong [1 ]
机构
[1] Guangzhou Univ, Coll Math & Informat Sci, Guangzhou 510006, Guangdong, Peoples R China
[2] Michigan State Univ, Dept Math, E Lansing, MI 48824 USA
基金
中国国家自然科学基金;
关键词
Population dynamics; Wolbachia; Imperfect maternal transmission; Cytoplasmic incompatibility; Monomorphism; polymorphism; bistability; CYTOPLASMIC INCOMPATIBILITY; DROSOPHILA-SIMULANS; POPULATIONS; INFECTION; ESTABLISHMENT; EVOLUTION; INVASION; MODELS; DENGUE;
D O I
10.1007/s00285-017-1142-5
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Mosquitoes are primary vectors of life-threatening diseases such as dengue, malaria, and Zika. A new control method involves releasing mosquitoes carrying bacterium Wolbachia into the natural areas to infect wild mosquitoes and block disease transmission. In this work, we use differential equations to describe Wolbachia spreading dynamics, focusing on the poorly understood effect of imperfect maternal transmission. We establish two useful identities and employ them to prove that the system exhibits monomorphic, bistable, and polymorphic dynamics, and give sufficient and necessary conditions for each case. The results suggest that the largest maternal transmission leakage rate supporting Wolbachia spreading does not necessarily increase with the fitness of infected mosquitoes. The bistable dynamics is defined by the existence of two stable equilibria, whose basins of attraction are divided by the separatrix of a saddle point. By exploring the analytical property of the separatrix with some sharp estimates, we find that Wolbachia in a completely infected population could be wiped out ultimately if the initial population size is small. Surprisingly, when the infection shortens the lifespan of infected females that would impede Wolbachia spreading, such a reversion phenomenon does not occur.
引用
收藏
页码:235 / 263
页数:29
相关论文
共 29 条
[1]   Wolbachia Invades Anopheles stephensi Populations and Induces Refractoriness to Plasmodium Infection [J].
Bian, Guowu ;
Joshi, Deepak ;
Dong, Yuemei ;
Lu, Peng ;
Zhou, Guoli ;
Pan, Xiaoling ;
Xu, Yao ;
Dimopoulos, George ;
Xi, Zhiyong .
SCIENCE, 2013, 340 (6133) :748-751
[2]   The Endosymbiotic Bacterium Wolbachia Induces Resistance to Dengue Virus in Aedes aegypti [J].
Bian, Guowu ;
Xu, Yao ;
Lu, Peng ;
Xie, Yan ;
Xi, Zhiyong .
PLOS PATHOGENS, 2010, 6 (04) :1-10
[3]   Wolbachia Blocks Currently Circulating Zika Virus Isolates in Brazilian Aedes aegypti Mosquitoes [J].
Carneiro Dutra, Heverton Leandro ;
Neves Rocha, Marcele ;
Stehling Dias, Fernando Braga ;
Mansur, Simone Brutman ;
Caragata, Eric Pearce ;
Moreira, Luciano Andrade .
CELL HOST & MICROBE, 2016, 19 (06) :771-774
[4]   ON THE EVOLUTIONARY IMPORTANCE OF CYTOPLASMIC STERILITY IN MOSQUITOS [J].
CASPARI, E ;
WATSON, GS .
EVOLUTION, 1959, 13 (04) :568-570
[5]   The effect of Wolbachia-induced cytoplasmic incompatibility on host population size in natural and manipulated systems [J].
Dobson, SL ;
Fox, CW ;
Jiggins, FM .
PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2002, 269 (1490) :437-445
[6]   Structured and Unstructured Continuous Models for Wolbachia Infections [J].
Farkas, Jozsef Z. ;
Hinow, Peter .
BULLETIN OF MATHEMATICAL BIOLOGY, 2010, 72 (08) :2067-2088
[7]   Wolbachia do not live by reproductive manipulation alone: infection polymorphism in Drosophila suzukii and D. subpulchrella [J].
Hamm, Christopher A. ;
Begun, David J. ;
Vo, Alexandre ;
Smith, Chris C. R. ;
Saelao, Perot ;
Shaver, Amanda O. ;
Jaenike, John ;
Turelli, Michael .
MOLECULAR ECOLOGY, 2014, 23 (19) :4871-4885
[8]   EVOLUTION OF INCOMPATIBILITY-INDUCING MICROBES IN SUBDIVIDED HOST POPULATIONS [J].
Haygood, Ralph ;
Turelli, Michael .
EVOLUTION, 2009, 63 (02) :432-447
[9]  
Hirsch M.W., 2003, Differential Equations, Dynamical Systems An Introduction to Chaos
[10]   Successful establishment of Wolbachia in Aedes populations to suppress dengue transmission [J].
Hoffmann, A. A. ;
Montgomery, B. L. ;
Popovici, J. ;
Iturbe-Ormaetxe, I. ;
Johnson, P. H. ;
Muzzi, F. ;
Greenfield, M. ;
Durkan, M. ;
Leong, Y. S. ;
Dong, Y. ;
Cook, H. ;
Axford, J. ;
Callahan, A. G. ;
Kenny, N. ;
Omodei, C. ;
McGraw, E. A. ;
Ryan, P. A. ;
Ritchie, S. A. ;
Turelli, M. ;
O'Neill, S. L. .
NATURE, 2011, 476 (7361) :454-U107