Mowing strategies for controlling Cirsium arvense in a permanent pasture in New Zealand compared using a matrix model

被引:9
作者
Bourdot, Graeme W. [1 ]
Basse, Britta [1 ]
Cripps, Michael G. [1 ]
机构
[1] AgResearch Ltd, Private Bag 4749, Christchurch 8140, New Zealand
关键词
Californian thistle; Canada thistle; creeping thistle; management; mathematical model; mowing; perennial thistle; CANADA THISTLE; PUCCINIA-PUNCTIFORMIS; SENSITIVITY-ANALYSIS; CALIFORNIAN THISTLE; ROOT; MANAGEMENT; HERBICIDES; DYNAMICS; IMPACT;
D O I
10.1002/ece3.2090
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Defoliation has frequently been proposed as a means of controlling Cirsium arvense (L.) Scop. (Californian thistle, Canada thistle, creeping thistle, perennial thistle), an economically damaging pastoral weed in temperate regions of the world, but its optimization has remained obscure. We developed a matrix model for the population dynamics of C. arvense in sheep-grazed pasture in New Zealand that accounts for the effects of aerial shoot defoliation on a population's photosynthetic opportunity and consequential overwintered root biomass, enabling mowing regimes varying in the seasonal timing and frequency of defoliation to be compared. The model showed that the long-term population dynamics of the weed is influenced by both the timing and frequency of mowing; a single-yearly mowing, regardless of time of year, resulted in stasis or population growth, while in contrast, 14 of 21 possible twice-yearly monthly mowing regimes, mainly those with mowing in late spring, summer, and early autumn, resulted in population decline. Population decline was greatest (with population density halving each year) with twice-yearly mowing either in late spring and late summer, early summer and late summer, or early summer and early autumn. Our results indicate that mowing can be effective in reducing populations of C. arvense in pasture in the long term if conducted twice each year when the initial mowing is conducted in mid spring followed by a subsequent mowing from mid summer to early autumn. These mowing regimes reduce the photosynthetic opportunity of the C. arvense population and hence its ability to form the overwintering creeping roots upon which population growth depends.
引用
收藏
页码:2968 / 2977
页数:10
相关论文
共 45 条
[11]  
Bourdot G. W., 1998, Proceedings of the Fifty First New Zealand Plant Protection Conference, Quality Hotel, Hamilton, New Zealand, 11-13 August, 1998, P28
[12]   Impacts of applied Sclerotinia sclerotiorum on the dynamics of a Cirsium arvense population [J].
Bourdôt, GW ;
Hurrell, GA ;
Saville, DJ ;
Leathwick, DM .
WEED RESEARCH, 2006, 46 (01) :61-72
[13]   SENSITIVITY ANALYSIS OF PERIODIC MATRIX MODELS [J].
CASWELL, H ;
TREVISAN, MC .
ECOLOGY, 1994, 75 (05) :1299-1303
[14]  
Caswell Hal, 2001, pi
[15]   Management strategies for an invasive weed: a dynamic programming approach for Californian thistle in New Zealand [J].
Chalak-Haghighi, M. ;
Van Ierland, E. C. ;
Bourdot, G. W. ;
Leathwick, D. .
NEW ZEALAND JOURNAL OF AGRICULTURAL RESEARCH, 2008, 51 (04) :409-424
[16]  
Cripps M., 2014, Proceedings of the XIV International Symposium on Biological Control of Weeds, Kruger National Park, South Africa, 2-7 March 2014, P83
[17]  
Cripps Michael G., 2013, Weta, V45, P5
[18]   Influence of insects and fungal pathogens on individual and population parameters of Cirsium arvense in its native and introduced ranges [J].
Cripps, Michael G. ;
Bourdot, Graeme W. ;
Saville, David J. ;
Hinz, Hariet L. ;
Fowler, Simon V. ;
Edwards, Grant R. .
BIOLOGICAL INVASIONS, 2011, 13 (12) :2739-2754
[19]   Enemy release does not increase performance of Cirsium arvense in New Zealand [J].
Cripps, Michael G. ;
Edwards, Grant R. ;
Bourdot, Graeme W. ;
Saville, David J. ;
Hinz, Hariet L. ;
Fowler, Simon V. .
PLANT ECOLOGY, 2010, 209 (01) :123-134
[20]   Does transmission of the rust pathogen, Puccinia punctiformis, require stem mining vectors? [J].
Cripps, Michael G. ;
Edwards, Grant R. ;
Waipara, Nicholas W. ;
Bourdot, Graeme W. ;
Saville, David J. ;
Fowler, Simon V. .
BIOCONTROL SCIENCE AND TECHNOLOGY, 2009, 19 (04) :447-454