[1] BAI Y,WU J,PAN Q,et al. Positive linear relationship between productivity and diversity:evidence from the eurasian steppe[J]. The Journal of Applied Ecology,2007,44(5):1023-1034 [2] 白永飞,潘庆民,邢旗. 草地生产与生态功能合理配置的理论基础与关键技术[J]. 科学通报,2016,61(2):201-212 [3] 张睿洋. 放牧对短花针茅荒漠草原生物多样性和生态系统功能的影响[D]. 呼和浩特:内蒙古农业大学,2018:16-26 [4] 靳茗茗,徐增让,成升魁. 藏北高寒草地植被和土壤对不同放牧强度的响应[J]. 生态学报,2020,40(23):8753-8762 [5] ZHANG X,JOHNSTON E R,BARBERáN A,et al. Decreased plant productivity resulting from plant group removal experiment constrains soil microbial functional diversity[J]. Global Change Biology,2017,23(10):4318-4332 [6] DENG L,SWEENEY S,SHANGGUAN Z. Grassland responses to grazing disturbance:plant diversity changes with grazing intensity in a desert steppe[J]. Grass and Forage Science,2014,69(3):524-533 [7] ZHOU Y C,DING Y,LI H B,et al. The effects of short-term grazing on plant and soil carbon and nitrogen isotope composition in a temperate grassland[J]. Journal of Arid Environments,2020,(179):104198 [8] HAN J,ZHANG Y J,WANG C J,et al. Rangeland Degradation and restoration management in China[J]. Rangeland Journal,2008,30(2):233-239 [9] HARRIS R B. Rangeland degradation on the qinghai-Tibetan plateau:a review of the evidence of its magnitude and causes[J]. Journal of Arid Environments,2010,74(1):1-12 [10] SHANG C,WU T,HUANG G,et al. Weak sustainability is not sustainable:Socioeconomic and environmental assessment of Inner Mongolia for the past three decades[J]. Resources,Conservation and Recycling,2019,(141):243-252 [11] 白一杰. 不同管理方式下希拉穆仁荒漠草原草地微斑块空间分布特征研究[D]. 呼和浩特:内蒙古农业大学,2021:1-7 [12] 张博华. 放牧对荒漠草原不同植被微斑块土壤微生物及养分特征的影响[D]. 银川:宁夏大学,2023:1-6 [13] IBá?EZ I,KATZ D S W,PELTIER D,et al. Assessing the integrated effects of landscape fragmentation on plants and plant communities:the challenge of multiprocess-multiresponse dynamics[J]. Journal of Ecology,2014,102(4):882-895 [14] 邬建国. 生态学范式变迁综论[J]. 生态学报,1996,16(5):453-460 [15] SUN H R,CHE Z B,CHEN Y S,et al. Ecological adaptability of biological traits and population distribution patterns for the ephemeral plant Leontice incerta in desert habitats[J]. Acta Prataculturae Sinica,2019,28(7):198-207 [16] WANG C W,CHEN Q,FAN H S,et al. Evaluating satellite hyperspectral (Orbita) and multispectral (Landsat 8 and Sentinel-2) imagery for identifying cotton acreage[J]. International Journal of Remote Sensing,2021,42(11):4042-4063 [17] 杨坤,赵艳玲,张建勇,等. 利用无人机高分辨率影像进行树木高度提取[J]. 北京林业大学学报,2017,39(8):17-23 [18] 花蕊,周睿,王婷,等. 基于无人机遥感的高寒草原沙化模型及等级划分[J]. 中国沙漠,2019,39(1):26-33 [19] 杨红艳,杜健民,王圆,等. 基于无人机遥感与卷积神经网络的草原物种分类方法[J]. 农业机械学报,2019,50(4):188-195 [20] 高永刚,林悦欢,温小乐,等. 基于无人机影像的可见光波段植被信息识别[J]. 农业工程学报,2020,36(3):178-189 [21] 康拥朝,毕玉革,杜建民,等. 基于高光谱 MNF-SVM 法荒漠化草原地表微斑块识别研究[J]. 内蒙古农业大学学报(自然科学版),2021,42(6):76-81 [22] 张峰,孙嘉伟,孙宇,等. 不同尺度下荒漠草原建群种短花针茅的空间分布对载畜率的响应[J]. 应用生态学报,2021,32(5):1735-1743 [23] 陈万杰,薛文杰,古琛,等. 草地利用方式对典型草原大针茅种群空间异质性的影响[J]. 生态学杂志,2016,35(10):2569-2574 [24] 吕世杰,聂雨芊,桑雪颖,等. 不同放牧制度对荒漠草原优势种无芒隐子草空间异质性的影响[J]. 内蒙古农业大学学报(自然科学版),2014,35(6):171-176 [25] 张峰,陈大岭,赵萌莉,等. 放牧强度对荒漠草原建群种短花针茅空间异质性的影响[J]. 应用生态学报,2019,30(9):3049-3056 [26] 白永飞,李德新,许志信,等. 牧压梯度对克氏针茅生长和繁殖的影响[J]. 生态学报,1999,19(4):479-484 [27] 古琛,赵天启,王亚婷,等. 短花针茅生长和繁殖策略对载畜率的响应[J]. 生态环境学报,2017,26(1):36-42 [28] 刘红梅,卫智军,杨静,等. 不同放牧制度对荒漠草原短花针茅空间异质性的影响[J]. 干旱区资源与环境,2011,25(8):138-143 [29] 张峰,杨阳,乔荠瑢,等. 利用方式对大针茅草原优势种糙隐子草空间异质性的影响[J]. 生态学杂志,2019,38(4):953-960 [30] 张峰,郑佳华,赵萌莉,等. 刈割留茬高度对大针茅草原群落结构及稳定性的影响[J]. 应用生态学报,2020,31(5):1551-1559 [31] 张峰,高峰,孙嘉伟,等. 不同载畜率对荒漠草原建群种短花针茅种群时空变异性的影响[J]. 草地学报,2021,29(6):1369-1374 [32] 殷国梅,吕世杰,丁海君,等. 不同载畜率对短花针茅荒漠草原建群种空间异质性的影响[J]. 草地学报,2017,25(3):486-491 [33] 程积民,邹厚远. 封育刈割放牧对草地植被的影响[J]. 水土保持研究,1998,5(1):36-54 |