[1] |
WORD M L, HALL S J, ROBINSON B E, et al.. Soil-targeted interventions could alleviate locust and grasshopper pest pressure in West Africa [J]. Sci. Total Environ., 2019, 663: 632-643.
|
[2] |
GALL M L, WORD M L, THOMPSON N, et al.. Linking land use and the nutritional ecology of herbivores: a case study with the Senegalese locust [J]. Funct. Ecol., 2020, 34(1): 167-181.
|
[3] |
贾慧聪,王静爱,杨洋,等.关于西北地区的自然灾害链[J].灾害学, 2016, 31(1): 72-77.
|
|
JIA H C, WANG J G, YANG Y, et al.. Analysis of natural disaster chain in Northwest China [J]. J. Catastrophol., 2016, 31(1): 72-77.
|
[4] |
魏文娟,任炳忠.我国蝗虫的生物防治技术及研究进展[J].北华大学学报(自然科学版),2002(6): 481-484, 490.
|
[5] |
李金星, 管廷贤, 布仁代, 等. 基于DCA和CCA分析博州草原优势蝗虫与生态因子的关系[J]. 草业科学, 2023, 40(5): 1378-1386.
|
|
LI J X, GUAN T X, BU R D, et al.. Associations between grasshoppers and environmental factors analyzed using detrended correspondence analysis and canonical correspondence analysis in Bortala Mongol Autonomous Prefecture, Xinjiang [J]. Pratac. Sci., 2023, 40(5): 1378-1386.
|
[6] |
巨喜锋,林峻,吴建国,等.新疆典型蝗虫适生区分布预测[J].生态学报, 2022, 42(21): 8605-8617.
|
|
JU X F, LIN J, WU J G, et al.. Prediction of potential living area of typical locusts in Xinjiang based on species distribution model [J]. Acta Ecol. Sin., 2022, 42(21): 8605-8617.
|
[7] |
LV Y Y, YU H Y, CHEN W, et al.. Predicting inhabitable areas for locust based on field observation and multi-environmental factors in alpine grassland—a case study in the Qilian Mountain national park, China [J/OL]. Front. Ecol. Evol., 2023, 11:1149952 [2024-04-10]. .
|
[8] |
SÁNCHEZ‐ZAPATA J A, DONÁZAR J A, DELGADO A, et al.. Desert locust outbreaks in the sahel: Resource competition, predation and ecological effects of pest control [J]. J. Appl. Ecol., 2007, 44(2):323-329.
|
[9] |
DÍAZ S, CABIDO M. Plant functional types and ecosystem function in relation to global change [J]. J. Veg. Sci., 1997, 8(4): 463-474.
|
[10] |
姜炎彬,张扬建.西藏天然草地植物功能群分布的初步研究[J].植物科学学报,2016,34(2):220-229.
|
|
JIANG Y B, ZHANG Y J. Distribution of plant functional groups in the natural grasslands of Xizang, China [J]. J. Plant Sci., 2016, 34(2): 220-229.
|
[11] |
CHAOUCH A, DOUMANDJI-MITICHE B, ALLAL-BENFEKIH L. Food diet of Dociostaurus maroccanus Thumberg, 1815 (Orthoptera, Acrididae) in its gregarious state: a study in Sidi Belabbes region, Algeria (2010) [J]. Int. J. Zool. Res., 2014, 4: 61-70.
|
[12] |
吴惠惠,徐云虎,曹广春,等.内蒙古典型草原草地类型对蝗虫群落优势种群的生态效应[J].中国农业科学,2012,45(20):4178-4186.
|
|
WU H H, XU Y H, CAO G C, et al.. Ecological effects of typical grassland types in Inner Mongolia on grasshopper community [J]. Sci. Agric. Sin., 2012, 45(20): 4178-4186.
|
[13] |
刘晓丽, 刘艺杉, 孟迪, 等. 祁连山植被类型对蝗虫群落组成及多样性的影响[J]. 生态学报, 2024, 44(18): 8304-8313.
|
|
LIU X L, LIU Y S, MENG D, et al.. Influence of vegetation type on grasshopper community composition and diversity in the Qilian Mountains [J]. Acta Ecol. Sin., 2024, 44(18): 8304-8313.
|
[14] |
马志宁,俞鸿千,王颖,等.宁夏草原蝗虫多样性及其对环境因子的响应[J].中国生物防治学报, 2022, 38(6): 1459-1472.
|
|
MA Z N, YU H Q, WANG Y, et al.. Diversity of grassland grasshoppers and responses to environmental factors in Ningxia [J]. Chin. J. Biol. Control., 2022, 38(6): 1459-1472.
|
[15] |
陈启慧,纪璐,李琼芳,等.伊犁河三角洲水资源条件变化对景观格局演变的影响[J].水资源保护,2024,40(2): 90-99.
|
|
CHEN Q H, JI L, LI Q F, et al.. Influence of water resources condition changes on landscape pattern evolution in the Ili river delta [J]. Water Resour. Prot., 2024, 40(2): 90-99.
|
[16] |
宁昂,陈万基,赵阳.地形驱动下伊犁河谷草原生物灾害的分布效应[J].自然保护地,2024, 4(1): 99-109.
|
|
NING A, CHEN W J, ZHAO Y. Study on the distribution effects of biohazard in the grassland of Yili River Valley driven by terrain [J]. Nat. Prot. Areas., 2024, 4(1): 99-109.
|
[17] |
SANGUANSAT P. Principal Component Analysis-Multidisciplinary Applications [M/OL]. InTech; 2012: 127-142 [2024-04-10]. .
|
[18] |
PENG W, MA N L, ZHANG D, et al.. A review of historical and recent locust outbreaks: Links to global warming, food security and mitigation strategies [J/OL]. Environ. Res., 2020, 191: 11004610 [2024-04-10]. .
|
[19] |
PEVELING R. Environmental conservation and locust control—possible conflicts and solutions [J]. J. Orthopt. Res., 2001, 10(2): 171-187.
|
[20] |
ZHAO L, LI H, HUANG W, et al.. Outbreak mechanism of locust plagues under dynamic drought and flood environments based on time series remote sensing data: implication for identifying potential high-risk locust areas [J/OL]. Remote Sens-Basel., 2023, 15(21): 5206 [2024-04-10]. .
|
[21] |
胡靖,钱秀娟,刘长仲.高山草地蝗虫群落生物多样性和空间聚集强度对植物群落的响应[J].植物保护学报,2021,48(1):202-211.
|
|
HU J, QIAN X J, LIU C Z. Responses of the grasshopper community biodiversity and pattern intensity to the plant community [J]. J. Plant Prot. 2021, 48(1): 202-211.
|
[22] |
白鸿岩,孙嵬,类成平,等.科尔沁丘陵草甸草原蝗虫群落特征与植被的关系[J].草业科学,2014,31(12):2342-2347.
|
|
BAI H Y, SUN W, LEI P C, et al.. Relationship between grasshopper community and vegetation in hilly meadow steppe of Horqin [J]. Pratac. Sci., 2014, 8(12): 2342-2347.
|
[23] |
CISSE S, GHAOUT S, MAZIH A, et al.. Estimation of density threshold of gregarization of desert locust hoppers from field sampling in Mauritania [J]. Entomol Exp. Appl., 2015, 156(2):136-148.
|
[24] |
LE GALL M, OVERSON R, CEASE A. A global review on locusts (Orthoptera: Acrididae) and their interactions with livestock grazing practices [J/OL]. Front. Ecol Evol., 2019, 7:263 [2024-04-10]. .
|
[25] |
HUSS C P, HOLMES K D, BLUBAUGH C K. Benefits and risks of intercropping for crop resilience and pest management [J]. J. Econ. Entomol., 2022, 115(5):1350-1362.
|
[26] |
ZHANG H, CAO Z, WANG Y, et al.. Beta diversity of grasshoppers and predatory beetles across steppes is closely associated with altitude and average annual precipitation in Ningxia, northwest China [J/OL]. Glob. Ecol. Conserv., 2024, 51: e02941 [2024-04-10]. .
|
[27] |
颜忠诚, 陈永林.草原蝗虫的栖境选择:栖境选择与水平结构的关系[J].武夷科学,1998,14(12): 251-257.
|
[28] |
刘泰宇,马明月.塞罕坝国家级自然保护区菊科植物资源调查与分析[J].河北林业科技,2021(4): 27-31.
|
|
LIU T Y, MA M Y. Investigation and analysis of Compositae resources in Saihanba National Nature Reserve [J]. J. Hebei Forest. Sci. Technol., 2021(4): 27-31.
|
[29] |
DKHILI J, BERGER U, HASSANI L M I, et al.. Self-organized spatial structures of locust groups emerging from local interaction [J]. Ecol Model., 2017, 361:26-40.
|
[30] |
KLEIN I, OPPELT N, KUENZER C. Application of remote sensing data for locust research and management—a review [J/OL]. Insects, 2021, 12(3): 233 [2024-04-10]. .
|
[31] |
WANG B, DEVESON E D, WATERS C, et al.. Future climate change likely to reduce the Australian plague locust (Chortoicetes terminifera) seasonal outbreaks [J]. Sci. Total. Environ., 2019, 668: 947-957.
|
[32] |
PIOU C, LEBOURGEOIS V, BENAHI A S, et al.. Coupling historical prospection data and a remotely-sensed vegetation index for the preventative control of desert locusts [J]. Basic. Appl. Ecol., 2013, 14(7): 593-604.
|
[33] |
杨娜,崔学皓,马战林.基于SMOS卫星的蝗灾监测研究[J].地理与地理信息科学, 2018, 34(2): 40-46.
|
|
YANG N, CUI X H, MA Z L. Study on locust disaster monitoring based on SMOS satellite [J]. Geogr. Geo-Inform. Sci., 2018, 34(2):40-46.
|
[34] |
陈素华,乌兰巴特尔,曹艳芳.气候变化对内蒙古草原蝗虫消长的影响[J].草业科学,2006(8):78-82.
|
|
CHEN S H, Wulanbater, CAO Y F. Effects of climate change on grassland locust in Inner Mongolia [J]. Pratac. Sci., 2006(8): 78-82.
|
[35] |
ZHAO L, HUANG W, CHEN J, et al.. Land use/cover changes in the Oriental migratory locust area of China: implications for ecological control and monitoring of locust area [J/OL]. Agric. Ecosyst. Environ., 2020, 303(1):107110 [2024-04-10]. .
|
[36] |
INGRISCH S, RENTZ D C F. Orthoptera: Grasshoppers, Locusts, Katydids, Crickets [M]. New York: Encyclopedia of insects Academic Press, 2009: 732-743.
|
[37] |
赵成章,李丽丽,王大为,等.黑河上游天然草地蝗虫空间异质性与分布格局[J].生态学报,2012,32(13): 4166-4172.
|
|
ZhAO C Z, LI L L, WANG D W, et al.. Analysis on grasshopper spatial heterogeneity and pattern of natural grass in upper reaches of Heihe [J]. Acta Ecol. Sin., 2012, 32(13): 4166-4172.
|
[38] |
LIU X, ZHANG D, HE X. Unveiling the role of climate in spatially synchronized locust outbreak risks [J/OL]. Sci. Adv., 2024, 10(7): eadj1164 [2024-04-10]. .
|
[39] |
HERBILLON F, PIOU C, MEYNARD C N. An increase in management actions has compensated for past climate change effects on desert locust gregarization in western Africa [J/OL]. Heliyon., 2024, 10(8): e29231 [2024-04-10]. .
|