Arid Zone Research ›› 2020, Vol. 37 ›› Issue (2): 462-469.doi: 10.13866/j.azr.2020.02.19
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LI Xiangyun1,2,YUE Ping1,CHENG Huan1,3,GUO Xinxin1,2,ZHAO Shenglong1,2,ZHANG Senxi1,2,WANG Shaokun1,2,ZUO Xiaoan1
Received:
2019-05-22
Revised:
2019-06-04
Online:
2020-03-26
Published:
2020-04-21
LI Xiangyun, YUE Ping, CHENG Huan, GUO Xinxin, ZHAO Shenglong, ZHANG Senxi, WANG Shaokun, ZUO Xiaoan. Biomass prediction model for Reaumuria soongorica in the Urat desert steppe in Inner Mongolia[J].Arid Zone Research, 2020, 37(2): 462-469.
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[1]郑绍伟,唐敏,邹俊辉,等.灌木群落及生物量研究综述[J].成都大学学报(自然科学版),2007,26(3):189-192.[Zheng Shaowei,Tang Min,Zou Junhui,et al.Summary of research on shrub biomass in China[J].Journal of Chengdu University(Natural Science Edition),2007,26(3):189-192.] [2]李文华.森林生物生产量的概念及其研究的基本途径[J].自然资源,1980(1):71-92.[Li Wenhua.The concept and basic approach of forest biological production[J].Natural Resources,1980(1):71-92.] [3]王军,何秉宇.阿尔泰山林下灌木生物量生长模型研究[J].安徽农业科学,2017,45(36):157-160.[Wang Jun,He Bingyu.Study on biomass estimation model of dominant woody shrubs in Altay Mountain[J].Journal of Anhui Agricultural Sciences,2017,45(36):157-160.] [4]吴永胜,马万里,李浩,等.内蒙古退化荒漠草原土壤有机碳和微生物生物量碳含量的季节变化[J].应用生态学报,2010,21(2):312 -316.[Wu Yongsheng,Ma Wanli,Li Hao,et al.Seasonal variations of soil organic carbon and microbial biomass carbon in degraded desert steppes of Inner Mongolia[J].Chinese Journal of Applied Ecology,2010,21(2):312-316.] [5]黄琛,张宇,王静,等.不同放牧强度下短花针茅荒漠草原植被的空间异质性[J].植物生态学报,2014,38(11):1184-1193.[Huang Chen,Zhang Yu,Wang Jing,et al.Spatial heterogeneity of vegetation under different grazing intensities in a Stipa breviflora desert steppe[J].Chinese Journal of Plant Ecology,2014,38(11):1184-1193.] [6]Cai T J,Ju C Y,Yang X H.Comparison of ridge regression and partial least squares regression for estimating aboveground biomass with landsat images and terrain data in Mu Us sandy land,China[J].Arid Land Research and Management,2009,23(3):248-261. [7]涂宏涛,孙玉军,许昊,等.基于R非线性加权回归的灌木相容性生物量模型[J].东北林业大学学报,2015,43(3):66-69.[Tu Hongtao,Sun Yujun,Xu Hao,et al.Compatible biomass models for shrub based on R nonlinear weighted regression[J].Journal of Northeast Forestry University,2015,43(3):66-69.] [8]闫文德,田大伦,何功秀.湖南会同第二代杉木人工林乔木层生物量的分布格局[J].林业资源管理,2003(2):5-7,12.[Yan Wende,Tian Dalun,He Gongxiu.Biomass distribution and dynamics of Chinese fir plantation in Huitong[J].Forest Resources Management,2003(2):5-7,12.] [9][JP2]Houghton R A,Hall F,Goetz S J.Importance of biomass in the global carbon cycle[J].Journal of Geophysical Research:Biogeosciences,2009,114(G2). [10]刘存琦.灌木植物量测定技术的研究[J].草业学报,1994,3(4):61-65.[Liu Cunqi.The study on techniques in determining shrub phytomass[J].Acta Prataculturae Sinica,1994,3(4):61-65.] [11]张峰,上官铁梁,李素珍.关于灌木生物量建模方法的改进[J].生态学杂志,1993,12(6):67-69.[Zhang Feng,Shangguan Tieliang,Li Suzhen.Improvement on the modeling method of biomass of brush[J].Chinese Journal of Ecology,1993,12(6):67-69.] [12]卢振龙,龚孝生.灌木生物量测定的研究进展[J].林业调查规划,2009,34(4):37-40.[Lu Zhenlong,Gong Xiaosheng.Progress on the research of shrub biomass estimation[J].Forest Inventory and Planning,2009,34(4):37-40.] [13]张倩媚,温达志.南亚热带常绿阔叶林林下层植物的生物量及其测定方法的探讨[J].生态科学,2000,19(4):62-66.[Zhang Qianmei,Wen Dazhi.Biomass estimation of the undergrowth plants in the lower subtropical evergreen broadleaved forest[J].Ecological Science,2000,19(4):62-66.] [14]万里强,李向林.长江三峡地区灌木生物量及产量估测模型[J].草业科学,2001,18(5):5-10,15.[Wan Liqiang,Li Xianglin.Studies on sowing forages and its utilization in pear orchard in autumn and winter[J].Pratacultural Science,2001,18(5):5-10,15.] [15]于应文,胡自治.金露梅灌丛净第一性生产力[J].草业学报,2000,9(4):33-39.[Yu Yingwen,Hu Zizhi.The net primary productivity of Potentilla fruticosa shrub[J].Acta Prataculturae Sinica,2000,9(4):33-39.] [16]王蕾,张宏,哈斯,等.基于冠幅直径和植株高度的灌木地上生物量估测方法研究[J].北京师范大学学报(自然科学版),2004,40(5):700-703.[Wang Lei,Zhang Hong,Ha Si,et al.A study on the estimating method of shrub upper biomass based on the crown diameter and plant height[J].Journal of Beijing Normal University(Natural Science Edition),2004,40(5):700-703.] [17]刘玉冰,张腾国,李新荣,等.红砂(Reaumuria soongorica)忍耐极度干旱的保护机制:叶片脱落和茎中蔗糖累积[J].中国科学(C辑:生命科学),2006,36(4):328-333.[Liu Yubing,Zhang Tengguo,Li Xinrong,et al.Protective mechanism of Reaumuria soongorica(Reaumuria soongorica) enduring extreme drought:leaf shedding and sucrose accumulation in stem[J].Scientia Sinica(Vitae),2006,36(4):328-333.] [18]曾慧卿,刘琪璟,冯宗炜,等.红壤丘陵区林下灌木生物量估算模型的建立及其应用[J].应用生态学报,2007,18(10):2185-2190.[Zeng Huiqing,Liu Qijing,Feng Zongwei,et al.Estimation models of undergrowth shrub biomass and their application in red soil hilly region[J].Chinese Journal of Applied Ecology,2007,18(10):2185-2190.] [19]Paton D,Nunez J,Bao D,et al.Forage biomass of 22 shrub species from Monfrague Natural Park(SW Spain) assessed by loglog regression models[J].Journal of Arid Environments,2002,52(2):223-231. [20]王维枫,雷渊才,王雪峰,等.森林生物量模型综述[J].西北林学院学报,2008,23(2):58-63.[Wang Weifeng,Lei Yuancai,Wang Xuefeng,et al.A review of forest biomass models[J].Journal of Northwest Forestry University,2008,23(2):58-63.] [21]曾伟生.国内外灌木生物量模型研究综述[J].世界林业研究,2015,28(1):31-36.[Zeng Weisheng.A review of studies of shrub biomass modeling[J].World Forestry Research,2015,28(1):31-36.] [22]陶冶,张元明.荒漠灌木生物量多尺度估测—以梭梭为例[J].草业学报,2013,22(6):1-10.[Tao Ye,Zhang Yuanming.Multiscale biomass estimation of desert shrubs:a case study of Haloxylon ammodendron in the Gurbantunggut Desert,China[J].Acta Prataculturae Sinica,2013,22(6):1-10.] [23]Enquist B J,West G B,Charnov E L,et al.Allometric scaling of production and lifehistory variation in vascular plants[J].Nature,1999,401(6756):907. [24]Niklas K J.Modelling belowand aboveground biomass for nonwoody and woody plants[J].Annals of Botany,2004,95(2):315-321. [25]王俊峰,欧光龙,唐军荣,等.临沧膏桐种植区灌木群落生物量估测模型研究[J].西部林业科学,2012,41(6):53-58.[Wang Junfeng,Ou Guanglong,Tang Junrong,et al.Biomass estimation model of shrub community at Jatropha curcas growing area in Lincang of Yunnan[J].Journal of West China Forestry Science,2012,41(6):53-58.] [26]黄劲松,邸雪颖.帽儿山地区6种灌木地上生物量估算模型[J].东北林业大学学报,2011,39(5):54-57.[Huang Jinsong,Di Xueying.Estimation model for biomass of typical shrubs in Maoershan Area,Heilongjiang[J].Journal of Northeast Forestry University,2011,39(5):54-57.] [27]王少昆,赵学勇,贾昆峰,等.乌拉特荒漠草原小针茅(Stipa klemenzii)群落土壤细菌多样性及垂直分布特征[J].中国沙漠,2016,36(6):1564-1570.[Wang Shaokun,Zhao Xueyong,Jia Kunfeng,et al.Soil bacterial diversity and its vertical distribution in [WTBX]Stipa klemenzii[WTBZ] community of Urad Desert Steppe[J].Journal of Desert Research,2016,36(6):1564-1570.] [28]赵学勇,刘良旭,王玮,等.降水波动对荒漠草原生产力的影响[J].中国沙漠,2014,34(6):1486-1495.[Zhao Xueyong,Liu Liangxu,Wang Wei,et al.Impacts of precipitation change on desertgrassland vegetation productivity[J].Journal of Desert Research,2014,34(6):1486-1495.] [29]吴旭东,谢应忠,徐坤,等.贺兰山东麓不同植株年限酿酒葡萄林生物量分配及估算模型[J].中国生态农业学报,2012,20(10):1322 -1328.[Wu Xudong,Xie Yingzhong,Xu Kun,et al.Biomass allocation and estimation model at different planting ages of wine grape forest in east Helan Mountain[J].Chinese Journal of EcoAgriculture,2012,20(10):1322-1328.] [30]李刚,赵祥,刘碧荣.晋北4种灌木地上生物量模型的构建[J].林业资源管理,2014(1):71-76.[Li Gang,Zhao Xiang,Liu Birong.The construction of predicting model of aboveground biomass of four types of shrubs in Northern Shanxi Province[J].Forest Resources Management,2014(1):71-76.] [31]陈遐林,马钦彦,康峰峰,等.山西太岳山典型灌木林生物量及生产力研究[J].林业科学研究,2002,15(3):304-309.[Chen Xialin,Ma Qinyan,Kang Fengfeng,et al.Studies on the biomass and productivity of typical shrubs in Taiyue Mountain,Shanxi Province[J].Forest Research,2002,15(3):304-309.] [32]王文栋,白志强,阿里木·买买提,等.天山林区6种优势灌木林生物量比较及估测模型[J].生态学报,2016,36(9):1-10.[Wang Wendong,Bai Zhiqiang,Alimu Maimaiti,et al.Biomass comparison and estimation models for six dominant species of woody shrubs in the forest zones of the Tianshan Mountains[J].Acta Ecologica Sinica,2016,36(9):1-10.] [33]刘陟,黄奇,周延林,等.毛乌素沙地油蒿生物量估测模型研究[J].中国草地学报,2014,36(4):24-30.[Liu Zhi,Huang Qi,Zhou Yanlin,et al.Study on the models for estimating the biomass of Artemisia ordosica in Mu Us Sandland[J].Chinese Journal of Grassland,2014,36(4):24-30.] [34]林伟,李俊生,郑博福,等.井冈山自然保护区12种常见灌木生物量的估测模型[J].武汉植物学研究,2006,28(6):725-729.[Lin Wei,Li Junsheng,Zhen Bofu,et al.Models for estimating biomass of twelve shrub species in Jinggang Mountain Nature Reserve[J].Journal of Wuhan Botanical Research,2006,28(6):725-729.] [35]王庆锁.油蒿、中间锦鸡儿生物量估测模式[J].中国草地,1994,16(1):49-51.[Wang Qingsuo.Quantitative models of estimating biomass of Artemisia ordosica and Caragana intermedia[J].Grassland of China,1994,16(1):49-51.] [36]唐守正,张会儒,胥辉.相容性生物量模型的建立及其估计方法研究[J].林业科学,2000,36(增刊):19-27.[Tang Shouzheng,Zhang Huiru,Xu Hui.Study on establish and estimate method of compatible biomass model[J].Scientia Silvae Sinicae,2000,36(Suppl.):19-27.] [37]杨昊天,李新荣,王增如,等.腾格里沙漠东南缘4种灌木的生物量预测模型[J].中国沙漠,2013,33(6):1699-1704.[Yang Haotian,Li Xinrong,Wang Zengjia,et al.Biomass estimation models of four shrub species at southeastern edge of the Tegger Deser[J].Journal of Desert Research,2013,33(6):1699-1704.] [38]党晓宏,高永,蒙仲举,等.西鄂尔多斯地区5种荒漠优势灌丛生物量分配格局及预测模型[J].中国沙漠,2017,37(1):100-108.[Dang Xiaohong,Gao Yong,Meng Zhongju,et al.Biomass allocation patterns and estimation model of five desert shrub species in West Ordos region[J].Journal of Desert Research,2017,37(1):100-108.] [39]种培芳,刘晟彤,姬江丽,等.模拟 CO2 浓度升高和降雨量变化对红砂生物量分配及碳氮特征的影响[J].生态学报,2018,38(6):2065-2073.[Zhong Peifang,Liu Shengtong,Ji Jiangli,et al.Influence of elevated CO2 and precipitation regimes on biomass allocation and carbon and nitrogen content characteristics of Reaumuria soongorica[J].Acta Ecologica Sinica,2018,38(6):2065-2073.] [40]周华,孟盛旺,刘琪璟.九连山39种灌木与幼树地上生物量模型研究[J].南京林业大学学报(自然科学版),2017,41(2):1-12.[Zhou Hua,Meng Shengwang,Liu Qijing.Allometric equations for estimating aboveground biomass of saplings and shrubs in subtropical China[J].Journal of Nanjing Forestry University(Natural Sciences Edition),2017,41(2):1-12.] [41]Mandal G,Joshi S P.Estimation of aboveground biomass and carbon stock of an invasive woody shrub in the subtropical deciduous forests of Doon Valley,Western Himalaya,India[J].Journal of Forestry Research,2015,26(2):291-305. [42]刘家琼,邱明新,蒲锦春,等.我国荒漠典型超旱生植物——红砂[J].植物学报,1982,24(5):485-488.[Liu Jiaqiong,Qiu Mingxin,Pu Jinchun,et al.The typical extreme xerophyte:Reaumuria soongorica in the desert of China[J].Bulletin of Botany,1982,24(5):485-488.] [43]单立山,李毅,石万里,等.土壤水分胁迫对红砂幼苗生长和渗透调节物质的影响[J].水土保持通报,2015,35(6):106-109.[Shan Lishan,Li Yi,Shi Wanli,et al.Effects of dehydration stress on growth of Reaumuria Soongorica seedlings and regulation of osmotic substances[J].Bulletin of Soil and Water Conservation,2015,35(6):106-109.] |
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