Spatial segregation of congeneric invaders in central Pennsylvania, USA

被引:35
作者
Allen, MR
Shea, K [1 ]
机构
[1] Penn State Univ, Dept Biol, Mueller Lab 208, University Pk, PA 16802 USA
[2] Univ Illinois, Program Ecol & Evolutionary Biol, Urbana, IL 61801 USA
关键词
autologistic model; biological monitoring; Carduus; spatial distribution; spatial scale;
D O I
10.1007/s10530-005-6407-z
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Carduus acanthoides and Carduus nutans (plumeless and musk thistles) are among the most noxious weeds in the United States of America, presenting a serious challenge in cropping and pasture systems. Unfortunately, a lack of detailed spatial distribution information hampers both our ability to understand the factors affecting their invasive success, and the effectiveness of monitoring and management efforts. To examine patterns of distribution and co-occurrence at a local level, we sampled a 5000 km(2) area of central Pennsylvania that cut a transect across known areas of C. acanthoides and C. nutans infestation. A number of potential environmental explanatory variables were recorded and analyzed to examine whether they correlated with observed species distribution patterns. Patterns of forest density and spatial aggregation of the thistles were the primary covariates that significantly impacted both species' distributions. The survey established that the frequency of sightings for each species diminished as the ranges converged, with only brief overlap: the two species are strongly negatively correlated in space. Understanding environmental correlates of infestation and the pattern of spatial dissociation of these two invasive species is an important step towards an improved understanding of the mechanisms underlying their invasive potential, and hence towards effective weed control.
引用
收藏
页码:509 / 521
页数:13
相关论文
共 42 条
[1]   Use of logistic regression for validation of maps of the spatial distribution of vegetation species derived from high spatial resolution hyperspectral remotely sensed data [J].
Aspinall, RJ .
ECOLOGICAL MODELLING, 2002, 157 (2-3) :301-312
[2]   An autologistic model for the spatial distribution of wildlife [J].
Augustin, NH ;
Mugglestone, MA ;
Buckland, ST .
JOURNAL OF APPLIED ECOLOGY, 1996, 33 (02) :339-347
[3]  
Batra S. W. T., 1978, Biological control of thistles in the genus Carduus in the United States. A progress report., P18
[4]  
BJORNSTAD ON, 2002, NCF PACKAGE
[5]   ECOLOGY OF PARAPATRIC DISTRIBUTIONS [J].
BULL, CM .
ANNUAL REVIEW OF ECOLOGY AND SYSTEMATICS, 1991, 22 :19-36
[6]   A MODEL TO EXPLAIN ECOLOGICAL PARAPATRY [J].
BULL, CM ;
POSSINGHAM, HP .
AMERICAN NATURALIST, 1995, 145 (06) :935-947
[7]  
Bullock JM, 2000, ECOGRAPHY, V23, P257, DOI 10.1111/j.1600-0587.2000.tb00281.x
[8]  
Clapham AR., 1962, Flora of the British Isles, V2
[9]   Predicting the spatial distribution of non-indigenous riparian weeds: issues of spatial scale and extent [J].
Collingham, YC ;
Wadsworth, RA ;
Huntley, B ;
Hulme, PE .
JOURNAL OF APPLIED ECOLOGY, 2000, 37 :13-27
[10]   Habitat-based statistical models for predicting the spatial distribution of butterflies and day-flying moths in a fragmented landscape [J].
Cowley, MJR ;
Wilson, RJ ;
León-Cortés, JL ;
Gutiérrez, D ;
Bulman, CR ;
Thomas, CD .
JOURNAL OF APPLIED ECOLOGY, 2000, 37 :60-72