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Research progress on spatial point pattern of sand-fixing shrubs in sandy regions of Northern China

  • Jiale Li ,
  • Beibei Chen ,
  • Dinghai Zhang
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  • a.College of Science /, Gansu Agricultural University,Lanzhou 730070,China
    b.College of Management, Gansu Agricultural University,Lanzhou 730070,China

Received date: 2025-03-28

  Revised date: 2025-04-27

  Online published: 2025-06-30

Abstract

The spatial point pattern of sand-fixing shrubs not only reveals the biological characteristics of species, intraspecific and interspecific relationships, and the influence mechanisms of environmental factors on species distribution, but also predicts population development trends, providing a reference basis for vegetation restoration. Current research on desert ecosystems, particularly regarding the distribution characteristics and patterns of spatial point patterns of sand-fixing shrubs in northern China's sandy regions, lacks systematic analysis and comprehensive summarization, with relatively limited studies available. Focusing on sand-fixing shrubs in northern China's sandy regions, this study provides an overview of their species composition, biological characteristics, and ecological functions. It reviews key concepts in spatial point pattern analysis, including relevant statistical metrics and null models, and elaborates in detail on the distribution characteristics, patterns, spatial associations among shrubs, and influencing factors of different types of sand-fixing shrubs in these regions. By systematically summarizing the spatial point pattern distribution features and relationships of sand-fixing shrubs in northern China's sandy regions, this research contributes to a comprehensive understanding of intraspecific and interspecific relationships across different scales. Furthermore, it holds significant scientific value for proposing effective ecosystem management strategies tailored to the ecological conditions of northern China's sandy regions at the ecosystem level.

Cite this article

Jiale Li , Beibei Chen , Dinghai Zhang . Research progress on spatial point pattern of sand-fixing shrubs in sandy regions of Northern China[J]. Journal of Desert Research, 2025 , 45(3) : 102 -112 . DOI: 10.7522/j.issn.1000-694X.2025.00134

References

1 朱震达,刘恕.我国北方地区沙漠化过程及其治理区划[J].中国沙漠19811(1):1-16.
2 李新荣,张志山,黄磊,等. 我国沙区人工植被系统生态-水文过程和互馈机理研究评述[J].科学通报201358():397-410.
3 陈文阳.新中国甘肃省沙漠化治理研究[D].兰州:西北民族大学,2024.
4 刘拓.中国土地沙漠化及其防治策略研究[D].北京:北京林业大学,2005.
5 Grebner D L, Bettinger P, Siry J P,et al.Introduction to Forestry and Natural Resources[M].Pittsburgh,USA:Academic Press,2021:30-38.
6 Qiu B W, Chen G, Tang Z H,et al.Assessing the Three-North Shelter Forest Program in China by a novel framework for characterizing vegetation changes[J].ISPRS Journal of Photogrammetry and Remote Sensing2017133:75-88.
7 赵文智,李秋艳,常学向.我国北方沙漠化生态系统修复案例[J].中国水利2004(10):35-39.
8 王涛,赵哈林.中国沙漠科学的五十年[J].中国沙漠200525(2):3-23.
9 李新荣,张志山,刘玉冰,等.长期生态学研究引领中国沙区的生态重建与恢复[J].中国科学院院刊201732(7):790-797.
10 张举涛.中国北方典型沙区植被承载力研究[D] .北京:北京林业大学,2018.
11 高岩.1990-2015年中国北方四大沙地典型植被覆被格局变化及其影响因子[D].北京:北京林业大学,2019.
12 王甜甜,朱林,赵学琳,等.三种典型固沙灌木的降雨再分配特征[J].干旱区资源与环境202135(8):100-107.
13 许爱云,刘金龙,米世明,等.宁夏荒漠草原蒙古冰草(Agropyron mongolicum)种群小尺度空间分布及其关联性[J].生态学报201939(12):4551-4559.
14 李苏,张定海,张志山,等.科尔沁沙地盐蒿种群的空间分布格局及关联性[J].生物资源202244(1):63-72.
15 刘万龙.异质生境下荒漠草原蒙古冰草群落特征及种群分布格局[D].银川:宁夏大学,2022.
16 Bah I F,张定海,孙琰蕙,等.古尔班通古特沙漠东部三种沙丘上优势灌木的空间格局及种间关联性研究[J].干旱区资源与环境202236(7):154-165.
17 杨瑞红.古尔班通古特沙漠梭梭种群及群落动态特征和稳定性评价[D].乌鲁木齐:新疆农业大学,2017.
18 王志韬.不同降水条件下沙鞭种群空间格局及对流沙治理的启示[D].兰州:西北师范大学,2023.
19 焦树仁,李春龙,王宝泽,等.彰武沙地水利改良与利用研究[J].防护林科技2015(1):52-55.
20 孙姗姗,刘新平,何玉惠,等.我国固沙植物资源化利用研究进展[J].世界林业研究202033(6):74-79.
21 张定海,李新荣,张鹏.生态水文阈值在中国沙区人工植被生态系统管理中的意义[J].中国沙漠201737(4):678-688.
22 刘建康,冯湘,张克斌,等.荒漠草原优势种群油蒿空间分布格局对封育恢复的响应[J].应用生态学报202233(3):720-726.
23 初玉,杨慧玲,朱选伟,等.浑善达克沙地小叶锦鸡儿灌丛的空间异质性[J].生态学报200525(12):3294-3300.
24 吴改艳,张定海,张志山,等.古尔班通古特沙漠半固定沙丘上固沙灌木的空间结构特征研究[J].草地学报202432(7):2190-2204.
25 赵一之.小叶、中间和柠条三种锦鸡儿的分布式样及其生态适应[J].生态学报200525(12):3411-3414.
26 姜亚东,吕世杰,刘红梅,等.巴丹吉林沙漠东缘主要灌木数量特征及空间分布[J].中国沙漠202343(3):295-304.
27 马全林,郑庆中,贾举杰,等.乌兰布和沙漠沙蒿与油蒿群落的物种组成与数量特征[J].生态学报201232(11):3423-3431.
28 潮洛蒙,朴顺姬,智瑞年,等.不同类型沙地中差不嘎蒿种群分布格局的研究[J].中国沙漠199919():46-49.
29 何恒斌,张惠娟,贾桂霞.磴口县沙冬青种群结构和空间分布格局的研究[J].林业科学200642(10):13-18.
30 刘建泉.沙拐枣群落特征与生态学特性的研究[J].甘肃林业科技1995(2):18-22.
31 岳跃蒙,李晨华,徐柱,等.古尔班通古特沙漠降雨过程中梭梭与白梭梭冠层养分的变化特征[J].干旱区研究202037(5):1293-1300.
32 李中赫,刘彤.古尔班通古特沙漠西部退化梭梭群落多样性与土壤理化性质的关系[J].应用与环境生物学报201824(5):1165-1170.
33 苏培玺,周紫鹃,张海娜,等.荒漠植物沙拐枣群体光合作用及土壤呼吸研究[J].北京林业大学学报201335(3):56-64.
34 康佳鹏,韩路.塔河源荒漠河岸林灰胡杨与多枝柽柳种群空间格局与空间关联性[J].中南林业科技大学学报202141(2):123-132.
35 李政海.内蒙古草原与荒漠区几种锦鸡儿种群格局的研究[J].内蒙古大学学报(自然科学版)199526(1):67-74.
36 徐先英,孙保平,丁国栋,等.干旱荒漠区典型固沙灌木液流动态变化及其对环境因子的响应[J].生态学报200828(3):895-905.
37 蒋齐,李生宝,翟明普.我国的固沙型灌木林及其研究进展[J].干旱区资源与环境199812(2):88-96.
38 傅伯杰,刘焱序,王帅,等.科学改善荒漠化地区人与自然关系[J].中国科学院院刊202439(12):2027-2036.
39 马全林,卢琦,张德魁,等.沙蒿与油蒿灌丛的防风阻沙作用[J].生态学杂志201231(7):1639-1645.
40 李海泉.不同固沙灌木配置模式对宁夏沙地草本植被和土壤特征的影响[D].银川:宁夏大学,2021.
41 汪万福 王涛,李最雄,等.敦煌莫高窟崖顶灌木林带防风固沙效应[J].生态学报200424(11):2492-2500.
42 张雷.毛乌素沙地人工灌木林群落特征及其生态系统服务研究[D].呼和浩特:内蒙古大学,2021.
43 Tilman D, Kareiva P.Spatial Ecology:the Role of Space in Population Dynamics and Interspecific Interactions[M].Princeton University Press,1997:50-57.
44 Tuda M.Understanding mechanism of spatial ecological phenomena:a preface to the special feature on “spatial statistics”[J].Ecological Research200722:183-184.
45 Kikvidze Z, Pugnaire F, Brooker R W,et al.Linking patterns and processes in alpine plant communities:a global study[J].Ecology200586(6):1395-1400.
46 McIntire E J, Hik D S.Influences of chronic and current season grazing by collared pikas on above-ground biomass and species richness in subarctic alpine meadows[J].Oecologia2005145(2):287-296.
47 Turchin P.Quantitative Analysis of Movement:Measuring and Modeling Population Redistribution in Animals and Plants[M].Sunderland,USA:Sinauer Associates,1998:70-78.
48 Law R, Illian J, Burslem D F,et al.Ecological information from spatial patterns of plants:insights from point process theory[J].Journal of Ecology200997(4):616-628.
49 Dale M R, Fortin M J.Spatial Analysis:A Guide for Ecologists[M].Cambridge,UK:Cambridge University Press,2014:68-74.
50 McIntire E J, Schultz C B, Crone E E.Designing a network for butterfly habitat restoration:where individuals,populations and landscapes interact[J].Journal of Applied Ecology200744(4):725-736.
51 Broquet T, Ray N, Petit E,et al.Genetic isolation by distance and landscape connectivity in the American marten (Martes americana)[J].Landscape Ecology200621:877-889.
52 Fajardo A, McIntire E J.Distinguishing microsite and competition processes in tree growth dynamics:an a priori spatial modeling approach[J].The American Naturalist2007169(5):647-661.
53 Jolles A E, Sullivan P, Alker A P,et al.Disease transmission of aspergillosis in sea fans:inferring process from spatial pattern[J].Ecology200283(9):2373-2388.
54 Clark J S.Models for Ecological Data:an Introduction[M].Princeton,USA:Princeton University Press,2007:40-48.
55 McIntire E J, Fajardo A.Beyond description:the active and effective way to infer processes from spatial patterns[J].Ecology200990(1):46-56.
56 Perry G L, Miller B P, Enright N J.A comparison of methods for the statistical analysis of spatial point patterns in plant ecology[J].Plant Ecology2006187:59-82.
57 Velazquez E, Marcelino De l C, Gomez-Sal A.Changes in spatial point patterns of pioneer woody plants across a large tropical landslide[J].Acta Oecologica201461:9-18.
58 Ben-Said M.Spatial point-pattern analysis as a powerful tool in identifying pattern-process relationships in plant ecology:an updated review[J].Ecological Processes202110:1-23.
59 Wiegand T.Introduction to point pattern analysis with Ripley's L and the O-ring statistic using the Programita software[J].Department of Ecological Modelling,UFZ-Centre of Environmental Research,Leipzig,2004:25-36.
60 Moloney K A.Determining Process through Pattern:Reality or Fantasy?[M].Heidelberg,Germany:Springer.1993:61-69.
61 He F L, Duncan R P.Density-dependent effects on tree survival in an old‐growth Douglas fir forest[J].Journal of Ecology200088(4):676-688.
62 王雅婷,张定海,张志山.古尔班通古特沙漠固定沙丘上白梭梭和梭梭的空间分布及种间关联性[J].生物多样性202230(3):27-38.
63 Levin S A.The problem of pattern and scale in ecology:the Robert H.MacArthur award lecture[J].Ecology199273(6):1943-1967.
64 Zheng L, Zhen Q L.Fine-scale spatial pattern of Artemisia frigida population under different grazing intensities[J].Acta Ecologica Sinica200424(2):227-234.
65 张金屯.植物种群空间分布的点格局分析[J].植物生态学报199822(4):57-62.
66 Ripley B D.Modelling spatial patterns[J].Journal of the Royal Statistical Society:Series B (Methodological)197739(2):172-192.
67 Stoyan D, Stoyan H.Fractals,Random Shapes and Point Fields:Methods of Geometrical Statistics[M].New York,USA:John Wiley & Sons,1994.
68 Schiffers K, Schurr F M, Tielb?rger K,et al.Dealing with virtual aggregation:a new index for analysing heterogeneous point patterns[J].Ecography200831(5):545-555.
69 Illian J, Penttinen A, Stoyan H,et al.Statistical Analysis and Modelling of Spatial Point Patterns[M].New York,USA:John Wiley & Sons,2008:70-75.
70 Gotelli N J, Ellison A M.A Primer of Ecological Statistics[M].Sunderland,USA:Sinauer Associates,2004:8-15.
71 Velázquez E, Martínez I, Getzin S,et al.An evaluation of the state of spatial point pattern analysis in ecology[J].Ecography201639(11):1042-1055.
72 Lotwick H W, Silverman B W.Methods for analysing spatial processes of several types of points[J].Journal of the Royal Statistical Society Series B:Statistical Methodology198244(3):406-413.
73 Miller E T, Farine D R, Trisos C H.Phylogenetic community structure metrics and null models:a review with new methods and software[J].Ecography201740(4):461-477.
74 Gotelli N J.Null model analysis of species co‐occurrence patterns[J].Ecology200081(9):2606-2621.
75 Ladau J.Validation of null model tests using Neyman-Pearson hypothesis testing theory[J].Theoretical Ecology20081:241-248.
76 Ladau J, Schwager S J.Robust hypothesis tests for independence in community assembly[J].Journal of Mathematical Biology200857(4):537-555.
77 Connor E F, Simberloff D.Interspecific competition and species co-occurrence patterns on islands:null models and the evaluation of evidence[J].Oikos1983:455-465.
78 Zhang M J.The use and limitations of null-model-based hypothesis testing[J].Biology & Philosophy202035(2):31.
79 Molina C, Stone L.Difficulties in benchmarking ecological null models:an assessment of current methods[J].Ecology2020101(3):e02945.
80 沈志强,卢杰,华敏,等.2004-2013年我国空间格局分析的方法:点格局分析法研究文献分析[J].北方园艺2015(11):197-200.
81 李明辉 何风华,刘云,等.林分空间格局的研究方法[J].生态科学200322(1):77-81.
82 兰国玉,雷瑞德.植物种群空间分布格局研究方法概述[J].西北林学院学报200318(2):17-21.
83 孙艳霞,杨九艳,乔宜青,等.西鄂尔多斯狭叶锦鸡儿种群分布格局[J].中国草地学报201840(6):78-85.
84 曾勇,赵成义,李传金,等.塔里木河沿岸不同生境下胡杨(Populus euphratica)群落的空间分布格局及关联性[J].生态学杂志201938(11):3273-3282.
85 陈育,杨劼,张璞进,等.西鄂尔多斯半日花(Helianthemum soongoricum)种群结构和点格局分析[J].中国沙漠201434(1):75-82.
86 刘法,杨海龙,高甲荣,等.毛乌素沙地羊柴种群点格局分析[J].中国水土保持科学20119(4):98-103.
87 付贵全,徐先英,徐梦莎,等.民勤绿洲边缘两种生境红砂种群空间格局及关联性分析[J].干旱区地理201639(1):112-121.
88 李海东,沈渭寿,方颖,等.雅鲁藏布江中游河岸带几种主要沙生植物种群点格局分析[J].植物生态学报201135(8):834-843.
89 薛斌瑞,王承勋.石羊河下游荒漠-绿洲交错带沙拐枣种群数量动态及分布格局[J].温带林业研究20181(1):53-62.
90 石亚飞,张志山,黄磊,等.古尔班通古特沙漠半固定沙丘植物群落物种组成和种群结构[J].应用生态学报201627(4):1024-1030.
91 闫涵,孙芳芳,马松梅,等.梭梭和白梭梭的种群结构与空间分布格局[J].西南农业学报202134(8):1781-1787.
92 张裕年,张俊年,许明,等.基于民勤荒漠区人工梭梭种群结构与动态特征研究[J].林业科技情报202456(1):19-21.
93 张裕年,张俊年,许明,等.民勤绿洲荒漠过渡带梭梭种群的数量动态及分布格局研究[J].绿色科技202325(22):7-11.
94 赵文智,刘鹄.干旱、半干旱环境降水脉动对生态系统的影响[J].应用生态学报201122(1):243-249.
95 张剑挥,马全林,李得禄,等.乌兰布和沙漠天然梭梭种群动态及空间分布[J].西北植物学报202343(7):1198-1207.
96 张进虎,廖空太,李德禄,等.几种不同生境条件下天然沙冬青种群分布格局与特征[J].干旱区资源与环境201024(11):151-154.
97 赵新艳.沙冬青繁殖行为与种群自组织更新[D].呼和浩特:内蒙古农业大学,2009.
98 刘晓婷,王铁娟,苏日古嘎,等.东阿拉善不同发育阶段沙冬青种群的空间分布格局[J].草地学报202331(10):3157-3166.
99 申景昕,原伟杰,虞毅,等.内蒙古西鄂尔多斯沙冬青退化种群的空间格局及其与发育阶段的关联性[J].生态学杂志201938(1):19-26.
100 王有德,何全发,王兴东,等.天然沙冬青生长、更新状况调研及利用前景探讨[J].宁夏农林科技2004(3):28-31.
101 侯平,尹林克,严成.沙冬青生物量研究[J].干旱区研究199411(2):16-22.
102 刘虎俊,尉秋实,王继和,等.甘肃北砸山沙冬青种群的空间分布格局[J].干旱区研究200926(6):865-871.
103 刘旻霞,夏素娟,南笑宁,等.基于Ripley's Kr)函数的荒漠锦鸡儿种群分布格局[J].干旱区研究201936(3):606-613.
104 杜俊瑞,王铁娟,苏日格嘎.科尔沁沙地白沙蒿种群结构分析[J].内蒙古林业科技201642(2):20-22.
105 贾喆亭,杨九艳,孙艳霞,等.阿拉善高原珍珠猪毛菜(Salsola passerina)种群空间分布格局[J].中国沙漠202141(1):119-128.
106 刘家琼.超旱生植物:珍珠的形态解剖和水分生理特征[J].生态学报19833(1):15-20.
107 贾喆亭.内蒙古荒漠区珍珠猪毛菜群落多样性及种群空间格局研究[D].呼和浩特:内蒙古大学,2021.
108 刘俊霞.乌兰布和沙漠东北边缘花棒种群空间分布格局及群落特征的研究[D] .呼和浩特:内蒙古农业大学,2008.
109 郭树江,杨自辉,王多泽,等.民勤绿洲-荒漠过渡带植物物种多样性及其优势种群空间分布格局研究[J].水土保持研究201118(3):92-96.
110 姜莹,刘哲荣,刘冠志,等.内蒙古沙拐枣群落多样性及种群格局研究[J].内蒙古林业科技201642(3):10-15.
111 马瑞,赵锦梅,马彦军,等.巴丹吉林沙漠南缘近流沙区白刺灌丛沙堆形态特征与空间分布[J].水土保持学报202135(4):217-221.
112 张进虎,唐进年,李得禄,等.民勤荒漠绿洲过渡带灌丛沙堆形态特征及分布格局[J].中国沙漠201535(5):1141-1149.
113 郭向东,罗于洋,王树森,等.不同干扰程度对巴音温都尔沙漠球果白刺灌丛空间格局影响的研究[J].内蒙古林业调查设计201942(4):74-78.
114 左雪.资源植物群落在石漠化防治中的生态与经济效益分析[J].林业科技情报202355(3):55-57.
115 魏峥,王晓,宋维峰,等.坡位对浑善达克沙地小叶锦鸡儿空间分布影响[J].水土保持研究201623(6):102-107.
116 刘铁山,岳永杰,李钢铁,等.浑善达克沙地丘间低地3种典型群落空间点格局研究[J].内蒙古林业科技201945(2):16-21.
117 Garner W, Steinberger Y.A proposed mechanism for the formation of ‘fertile islands’ in the desert ecosystem[J].Journal of arid Environments198916(3):257-262.
118 Crawford C S, Gosz J R.Desert ecosystems:their resources in space and time[J].Environmental Conservation19829(3):181-195.
119 张德魁,王继和,马全林,等.腾格里沙漠南缘油蒿与沙蒿种群分布格局[J].甘肃科技2008(3):127-130.
120 Manly B F.Randomization,Bootstrap and Monte Carlo Methods in Biology[M].London,UK:Chapman and Hall/CRC,2018:20-26.
121 杨洪晓,张金屯,吴波,等.油蒿(Artemisia ordosica)对半干旱区沙地生境的适应及其生态作用[J].北京师范大学学报(自然科学版)200440(5):684-690.
122 杜峰,梁宗锁,胡莉娟.植物竞争研究综述[J].生态学杂志200423(4):157-163.
123 武志嘉,刘建康,余殿,等.宁夏荒漠草原不同坡位下油蒿群落多样性及种群点格局分析[J].温带林业研究20236(3):20-26.
124 黄富祥,高琼.毛乌素沙地不同防风材料降低风速效应的比较[J].水土保持学报200115(1):27-30.
125 张华,李锋瑞,伏乾科,等.沙质草地植被防风抗蚀生态效应的野外观测研究[J].环境科学200425(2):119-124.
126 Yang H, Lu Q, Wu B,et al.Vegetation diversity and its application in sandy desert revegetation on Tibetan Plateau[J].Journal of Arid Environments200665(4):619-631.
127 于云江,史培军,贺丽萍,等.风沙流对植物生长影响的研究[J].地球科学进展200217(2):262-267.
128 王继和,靳虎甲,马全林,等.干旱区油蒿种群结构和分布格局分析[J].中国沙漠201030(3):534-538.
129 曹晏宁,史利莎,韩烁,等.科尔沁沙地植被恢复中差不嘎蒿种群不同龄级个体的点格局分析[J].植物学通报200825(4):437-442.
130 杜俊瑞,苏日格嘎,王铁娟.科尔沁沙地三种蒿属固沙植物的种群空间分布格局分析[J].内蒙古师范大学学报(自然科学汉文版)201746(4):543-547.
131 杨洪晓,张金屯,吴波,等.毛乌素沙地油蒿种群点格局分析[J].植物生态学报200630(4):563-570.
132 魏巍,王晓,张克斌,等.毛乌素沙地不同立地条件对油蒿种群存活、开花分布格局的影响[J].干旱区研究201734(1):104-111.
133 马志波,肖文发,黄清麟,等.生态学中的点格局研究概况及其在国内的应用[J].生态学报201737(19):6624-6632.
134 牛程旭,张定海,张志山,等.毛乌素沙地盐池地区固定沙丘主要固沙灌木的空间分布格局与空间关联性研究[J].生态科学202443(1):1-9.
135 拓锋,刘贤德,刘润红,等.祁连山大野口流域青海云杉种群空间格局及其关联性[J].植物生态学报202044(11):1172-1183.
136 涂洪润,李娇凤,刘润红,等.桂林岩溶石山檵木种群空间格局及其关联性[J].应用生态学报201930(8):2621-2630.
137 张金屯,孟东平.芦芽山华北落叶松林不同龄级立木的点格局分析[J].生态学报200424(1):35-40.
138 张力,杨新国,王磊,等.基于点格局的柠条固沙群落物种空间关联分析[J/OL].草地学报:1-12..
139 屈志强,张莉,丁国栋,等.不同配置方式沙蒿灌丛对土壤风蚀影响的对比分析[J].水土保持学报200822(3):1-4.
140 张萍,康经理,袁瑱,等.两类植物型沙丘上植物群落的异同及其对沙丘形态的响应[J].生态学报201737(23):7920-7927.
141 孙涛,贾志清,刘虎俊,等.民勤荒漠绿洲过渡带不同发育阶段白刺灌丛沙堆点格局特征[J].林业科学202056(7):12-21.
142 黄小,朱江,姚兰,等.水杉原生种群结构及空间分布格局[J].生物多样性202028(4):463-473.
143 任毅华,周尧治,侯磊,等.色季拉山急尖长苞冷杉种群不同龄级立木的空间分布格局[J].生态学报202141(13):5417-5424.
144 Callaway R M, Brooker R W, Choler P,et al.Positive interactions among alpine plants increase with stress[J].Nature2002417(6891):844-848.
145 Callaway R M, Walker L R.Competition and facilitation:a synthetic approach to interactions in plant communities[J].Ecology199778(7):1958-1965.
146 张程,张明娟,徐驰,等.宁夏沙湖几种主要荒漠植物成丛性分析[J].植物生态学报200731(1):32-39.
147 Oksanen J.Plant neighbour diversity[J].Journal of Vegetation Science19978(2):255-258.
148 樊瑞霞,李学斌,陈林,等.荒漠草原油蒿(Artemisia ordosica)种群的空间分布格局特征[J].北方园艺2016(1):45-50.
149 张莹花,刘世增,刘虎俊,等.石羊河中游河岸沙蒿种群的空间格局和关联性分析[J].干旱区研究201330(2):256-263.
150 梁爽,许涵,林家怡,等.尖峰岭热带山地雨林优势树种白颜树空间分布格局[J].植物生态学报201438(12):1273-1282.
151 王茹.内蒙古草原化荒漠地区典型灌木植物空间分布格局研究[D].呼和浩特:内蒙古农业大学,2023.
152 彭舜磊,闫小婷,齐光,等.伏牛山栓皮栎群落优势种群种间关联动态分析[J].森林与环境学报201838(3):326-333.
153 李智叁,李凤日.乌兰布和沙漠天然白刺种群及主要伴生种种间关联性研究[J].植物研究200828(1):98-103.
154 梁继业,王彦阁,杨晓晖.鄂尔多斯高原雾冰藜在沙漠-河岸过渡带白刺沙堆上的空间分布特征[J].草业科学200825(5):42-47.
155 王磊,孙启武,郝朝运,等.皖南山区南方红豆杉种群不同龄级立木的点格局分析[J].应用生态学报201021(2):272-278.
156 Wright J S.Plant diversity in tropical forests:a review of mechanisms of species coexistence[J].Oecologia2002130:1-14.
157 薛文艳,杨斌,张文辉,等.桥山林区麻栎种群不同发育阶段空间格局及关联性[J].生态学报201737(10):3375-3384.
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