Plant and Plant Resources

Effects of Soil Types and Precipitation Variation on Dynamic Status of Artemisia scoparia Population

  • SU Ying ,
  • LI Yue-fei ,
  • CHEN Lin ,
  • ZHU Zhong-you ,
  • YUAN Chuang ,
  • MENG Wen-ting ,
  • ZHU Lin
Expand
  • 1. Key Laboratory for Restoration and Reconstruction of Degenerated Ecosystem in Northwest China under Ministry of Education, Ningxia University,Yinchuan 750021,Ningxia,China;
    2. Breeding Base for State Key Laboratory of Land Degradation and Ecological Restoration in Northwest China,Ningxia University, Yinchuan 750021,Ningxia,China;
    3. College of Agriculture,Ningxia University,Yinchuan 750021,Ningxia,China

Received date: 2018-11-01

  Revised date: 2019-01-28

  Online published: 2025-10-14

Abstract

Artemisia scoparia,a herbaceous plant species in the desert steppe in Yanchi County,Ningxia,was taken as the research object.Three soil types including sandy soil,weathered bedrock residual soil and sierozem soil were selected,a field device was used to change the rainfall pattern,and the samples were collected from the delimited sample plots to analyze the effects of these factors on the dynamic status of A.scoparia population.The results showed that the bulk moisture content of weathered bedrock residual soil was higher than that of sandy soil and sierozem soil.In the rainfall-increased zone,the bulk moisture contents of sandy soil,weathered bedrock residual soil and sierozem soil were increased by 10.6%,6.6% and 20.2% respectively,but they were decreased by 44.1%,9.2% and 20.1% respectively in the rainfall-decreased area.The survival curve of A.scoparia was concave,and the plant species was a typical r-strategist.Comparatively,the canopy of A.scoparia growing on sandy soil was larger,but the density of the plants growing on sierozem soil was larger.At the middle growth stage of A.scoparia,the plant height and canopy on sandy soil in the rainfall-increased zone were higher,but the plant density in the rainfall-reduced area was higher.On weathered bedrock residual soil,the plant density in the rainfall-decreased was high,but the plant height and canopy were higher.On sierozem soil,the plant density in the rainfall-decreased zone was the lowest,but the plant height and canopy were higher.At the early growth stage,the soil type,soil moisture,plant height and canopy were negatively correlated.At the middle growth stage,there were the significant negative correlations between soil moisture and plant density,between soil type and plant height,and between soil type and canopy.At the later growth stage,the soil moisture content was extremely negatively correlated with plant density,and the soil type was extremely negatively correlated with canopy.The biomass of A.scoparia was positively correlated with total carbon content and total nitrogen content (P<0.05),and negatively correlated with total phosphorus content (P<0.05).

Cite this article

SU Ying , LI Yue-fei , CHEN Lin , ZHU Zhong-you , YUAN Chuang , MENG Wen-ting , ZHU Lin . Effects of Soil Types and Precipitation Variation on Dynamic Status of Artemisia scoparia Population[J]. Arid Zone Research, 2019 , 36(5) : 1175 -1185 . DOI: 10.13866/j.azr.2019.05.15

References

[1] 杜华栋,焦菊英,寇萌,等.黄土高原先锋种猪毛蒿叶片形态解剖与生理特征对立地的适应性[J].生态学报,2016,36(10):2914-2925.
[Du Huadong,Jiao Juying,Kou Meng,et al.Adaptability of foliar morphological,anatomical,and physiological characteristics of the pioneer species Artemisia scoparia growing in a hilly-gully Loess region at different slope sites[J].Acta Ecology Sinica,2016,36(10):2914-2925.]
[2] 陈林,宋乃平,王磊,等.基于文献计量分析的蒿属植物研究进展[J].草业学报,2017,26(12):223-235.
[Chen Lin,Song Naiping,Wang Lei,et al.A bibliometric appraisal of research on Artemisia from 1986-2016[J].Acta Prataculturae Sinica,2017,26(12):223-235.]
[3] 彭文栋,朱建宁,王川,等.以猪毛蒿为优势种荒漠化草场补播改良技术研究[J].宁夏农林科技,2013,54(1):16-18.
[Peng Wendong,Zhu Jianning,Wang Chuan,et al.Improved-pasture of Artemisia scoparia as dominant species in desert grassland[J].Ningxia Journal of Agriculture and Forestry Science and Technology,2013,54(1):16-18.]
[4] Masaki T,Ota T,Sugita H,et al.Structure and dynamics of tree populations within unsuccessful conifer plantations near the Shirakami Mountains,a snowy region of Japan[J].Forest Ecology and Management,2004,194(1):389-401.
[5] Cai Fei,Song Yongchang.A study on the structure and dynamics of Schima superba population on Wuyi Mountain[J].Acta Phytoecologica Sinica,1997,21(2):138-148.
[6] Nanami S,Kawaguchi H,Tateno R,et al.Sprouting traits and population structure of co-occurring Castanopsis species in an evergreen broad-leaved forest in Southern China[J].Ecological Research,2004,19(3):341-348.
[7] 许冬梅,王堃.毛乌素沙地南缘生态过渡带土壤微生物特征[J].中国沙漠,2007,27(5):805-808.
[Xu Dongmei,Wang Kun.Characteristics of soil microbe in Southern ecotone of Mu Us sandy land[J].Journal of Desert Research,2007,27(5):805-808.]
[8] 刘世增,李昌龙,纪永福,等.甘肃省民勤连古城自然保护区沙木蓼种群的结构与动态[J].生态学报,2017,37(8):2763-2769.
[Liu Shizeng,Li Changlong,Ji Yongfu,et al.Structure and dynamics of Atraphaxis bracteata populations in Minqin Liangucheng Nature Reserve,Gansu[J].Acta Ecology Sinica,2017,37(8):2763-2769.]
[9] 王文琪,王进军,赵志模.紫茎泽兰种子种群动态及萌发特性[J].应用生态学报,2006,17(6):982-986.
[Wang Wenqi,Wang Jinjun,Zhao Zhimo.Seed population dynamics and germination characteristics of Eupatorium adenophorum[J].Chinese Journal of Applied Ecology,2006,17(6):982-986.]
[10] 张景光,李新荣,王新平,等.沙坡头地区固定沙丘一年生植物小画眉草种群动态研究[J].中国沙漠,2001,21(3):232-235.
[Zhang Jingguang,Li Xinrong,Wang Xinping,et al.Population dynamic of annual plant Eragrostis poaeoides in fixed sand dune in Shapotou area[J].Journal of Desert Research,2001,21(3):232-235.]
[11] 杨新国,古君龙,王兴,等.荒漠草原中间锦鸡儿 (Caragana intermedia) 冠层穿透雨的发生与分布特征[J].干旱区研究,2019,36(1):131-138.
[Yang Xinguo,Gu Junlong,Wang Xing,et al.Occurrence and distribution of throughfall under Caragana intermedia canopy in desert steppe[J].Arid Zone Research,2019,36(1):131-138.]
[12] Cheng Xiaoli,An Shuqing,Li Bo,et al.Summer rain pulse size and rainwater uptake by three dominant desert plants in a desertified grassland ecosystem in Northwestern China[J].Plant Ecology,2006,184(1):1-12.
[13] 陈林,杨新国,翟德苹,等.柠条秸秆和地膜覆盖对土壤水分和玉米产量的影响[J].农业工程学报,2015,31(2):108-116.
[Chen Lin,Yang Xinguo,Zhai Deping,et al.Effects of mulching with Caragana powder and plastic film on soil water and maize yield[J].Transactions of the Chinese Society of Agricultural Engineering,2015,31(2):108-116.]
[14] Vile D,Pervent M,Belluau M,et al.Arabidopsis growth under prolonged high temperature and water deficit:Independent or interactive effects[J].Plant Cell and Environment,2012,35(4):702.
[15] Walck J L,Hidayati S N,Dixon K W,et al.Climate change and plant regeneration from seed[J].Global Change Biology,2011,17(6):2145-2161.
[16] 李克让,陈育峰,黄玫,等.气候变化对土地覆被变化的影响及其反馈模型[J].地理学报,2000,55(增刊1):57-63.
[Li Kerang,Chen Yufeng,Huang Mei,et al.Model studies of the impacts of climate change on land cover and its feedback[J].Acta Geographica Sinica,2000,55(Suppl.1):57-63.]
[17] 焦德志,么璐,黄曌月,等.东北草地异质生境芦苇芽种群动态[J].应用生态学报,2015,26(2):404-410.
[Jiao Dezhi,Yao Lu,Huang Zhaoyue,et al.Bud population dynamics of Phragmites australis in heterogeneous habitats of northeast grass-land,China[J].Chinese Journal of Applied Ecology,2015,26(2):404-410.]
[18] 李海燕,杨允菲.松嫩平原杂类草草甸和榆树疏林草原大油芒种群的年龄结构[J].应用生态学报,2011,22(8):1982-1986.
[Li Haiyan,Yang Yunfei.Age structures of Spodiopogon sibiricus populations on weedy meadow and elm woodland in Songnen Plain,Northeast China[J].Chinese Journal of Applied Ecology,2011,22(8):1982-1986.]
[19] 陈林,杨新国,宋乃平,等.种植年限对荒漠草原区苜蓿地表层土壤特性的影响[J].浙江大学学报(农业与生命科学版),2014,40(5):541-550.
[Chen Lin,Yang Xinguo,Song Naiping,et al.Effects of planting Alfalfa on soil quality in desert steppe of Ningxia[J].Journal of Zhejiang University (Agriculture and Life Sciences Edition),2014,40(5):541-550.]
[20] 阎欣,安慧.宁夏荒漠草原沙漠化过程中土壤粒径分形特征[J].应用生态学报,2017,28(10):3243-3250.
[Yan Xin,An Hui.Fractal features of soil particle size distribution in the process of desertification in desert grassland of Ningxia,China[J].Chinese Journal of Applied Ecology,2017,28(10):3243-3250.]
[21] 李孝泽,董光荣,靳鹤龄,等.鄂尔多斯白垩系沙丘岩的发现[J].科学通报,1999,44(8):874.
[Li Xiaoze,Dong Guangrong,Jin Heling,et al.The discovery of the Cretaceous dunes in Ordos[J].Chinese Science Bulletin,1999,44(8):874.]
[22] 陈林,宋乃平,杨新国,等.具有野外增减雨和活动围栏作用的组合试验装置
[P].中国:ZL201720618832.9.2017-12-19.
[Chen Lin,Song Naiping,Yang Xinguo,et al.Combined Experimental Device with Field Increasing and Decreasing Rain and Movable Fence
[P].China:ZL201720618832.9.2017-12-19.]
[23] 马全林,鱼泳,陈芳,等.干旱区沙漠化逆转过程土壤水分的空间异质性特征[J].干旱区地理,2010,33(5):716-724.
[Ma Quanlin,Yu Yong,Chen Fang,et al.Spatial heterogeneity of soil water content in the reversion process of desertification in arid area[J].Arid Land Geography,2010,33(5):716-724.]
[24] 李新荣,马凤云,龙立群,等.沙坡头地区固沙植被土壤水分动态研究[J].中国沙漠,2001,21(3):217-222.
[Li Xinrong,Ma Fengyun,Long Liqun,et al.Soil water dynamics under sand-fixing vegetation in Shapotou area[J].Journal of Desret Research,2001,21(3):217-222.]
[25] 倪盼盼,朱元骏,巩铁雄.黄土塬区降水变化对麦田土壤水分及水分利用效率的影响[J].干旱地区农业研究,2017,35(4):80-87.
[Ni Panpan,Zhu Yuanjun,Gong Tiexiong.Effects of rainfall fluctuation on water consumption and water use efficiency of winter wheat in the Loess Tableland[J].Agricultural Research in the Arid Areas,2017,35(4):80-87.]
[26] 马晓东,李卫红,朱成刚,等.塔里木河下游土壤水分与植被时空变化特征[J].生态学报,2010,30(15):4035-4045.
[Ma Xiaodong,Li Weihong,Zhu Chenggang,et al.Spatio-temporal variation in soil moisture and vegetation along the lower reaches of Tarim River,China[J].Acta Ecology Sinica,2010,30(15):4035-4045.]
[27] 张景光,王新平,李新荣,等.荒漠植物生活史对策研究进展与展望[J].中国沙漠,2005,25(3):306-314.
[Zhang Jingguang,Wang Xinping,Li Xinrong,et al.Advances and prospect of researches on desert plant life history strategies[J].Journal of Desret Research,2005,25(3):306-314.]
[28] Westoby M,Leishman M,Lord J,et al.Comparative ecology of seed size and dispersal[J].Philosophical Transactions of the Royal Society B Biological Sciences,1996,351(1345):1309-1318.
[29] 徐彩琳,李自珍.荒漠一年生植物小画眉草的种群动态调节与模拟[J].西北植物学报,2002,22(6):1415-1420.
[Xu Cailin,Li Zizhen.Population regulation and dynamical simulation of annual plant Eragrostis poaeoides in desert region[J].Acta Botanica Boreali-Occidentalia Sinica,2002,22(6):1415-1420.]
[30] 洪震,刘术新,练发良,等.4个小叶蚊母树无性系幼苗在不同土壤类型上的生长差异[J].浙江农林大学学报,2018,35(2):380-386.
[Hong Zhen,Liu Shuxin,Lian Faliang,et al.Growth difference of four Distylium buxifolium clone seedlings in different soil types[J].Journal of Zhejiang A & F University,2018,35(2):380-386.]
[31] 焦德志.扎龙湿地保护区芦苇种群构件动态及其对土壤驱动因子响应[D].吉林:东北师范大学,2017.
[Jiao Dezhi.Dynamic of Modules and Response to Soil Driving Factors of Phragmites australis Population in Zhalong Wetland National Reserve[D].Jilin:Northeast Normal University,2017.]
[32] 曹建新,姜远标,张劲峰,等.不同土壤条件下滇青冈和元江栲幼苗生长特征的比较[J].南京林业大学学报(自然科学版),2009,33(1):79-82.
[Cao Jianxin,Jiang Yuanbiao,Zhang Jinfeng,et al.Comparison of growth characteristics on seedlings of Cyclobalanopsis glaucoides and Castanopsis orthacantha in different soil conditions[J].Journal of Nanjing Forestry University Natural Sciences Edition,2009,33(1):79-82.]
[33] 吴春红,赵帅鹏,朱建峰,等.不同土壤类型对白榆家系生长指标影响的初探[J].山东林业科技,2018,48(3):11-15.
[Wu Chunhong,Zhao Shuaipeng,Zhu Jianfeng,et al.The effects od different soil types on the growth index of Ulmus pumila families[J].Journal of Shandong Forestry Science and Technology,2018,48(3):11-15.]
[34] Raiesi F.Soil properties and C dynamics in abandoned and cultivated farmlands in a semi-arid ecosystem[J].Plant and Soil,2012,351(1-2):161-175.
[35] 熊炳桥,赵丽娅,张劲,等.草地沙漠化过程中土壤与地上植被的变化及其相互关系[J].生态环境学报,2017,26(3):400-407.
[Xiong Bingqiao,Zhao Liya,Zhang Jin,et al.Relationship between the soil and standing vegetation changes during grassland desertification process[J].Ecology and Environmental Sciences,2017,26(3):400-407.]
[36] 范连连,李耀明,Nataliia Terekhina,等.冷荒漠草本植物数量特征对不同水分输入和气象因子的响应[J].干旱区研究,2019,36(1):139-146.
[Fan Lianlian,Li Yaoming,Nataliia Terekhina,et al.Response of herbaceous plant quantity to different water input and meteorological factors in a cold desert[J].Arid Zone Research,2019,36(1):139-146.]
[37] 张腊梅,刘新平,赵学勇,等.科尔沁固定沙地植被特征对降雨变化的响应[J].生态学报,2014,34(10):2737-2745.
[Zhang Lamei,Liu Xinping,Zhao Xueyong,et al.Response of sandy vegetation characteristics to precipitation change in Horqin Sandy Land[J].Acta Ecology Sinica,2014,34(10):2737-2745.]
[38] 闫建成,梁存柱,付晓玥,等.草原与荒漠一年生植物性状对降水变化的响应[J].草业学报,2013,22(1):68-76.
[Yan Jiancheng,Liang Cunzhu,Fu Xiaoyue,et al.The responses of annual plant traits to rainfall variation in steppe and desert regions[J].Acta Prataculturae Sinica,2013,22(1):68-76.]
[39] 谢开云,赵云,李向林,等.豆-禾混播草地种间关系研究进展[J].草业学报,2013,22(3):284-296.
[Xie Kaiyun,Zhao Yun,Li Xianglin,et al.Relationships between grasses and legumes in mixed grassland:A review[J].Acta Prataculturae Sinica,2013,22(3):284-296.]
[40] 樊星,蔡捡,刘金平,等.葎草种群自疏过程中幼苗构件性状及生物量分配变化[J].生态学杂志,2016,35(11):2926-2934.
[Fan Xing,Cai Jian,Liu Jinping,et al.Module traits and biomass allocation of Humulus scandens seedlings during population selfthinning[J].Chinese Journal of Ecology,2016,35(11):2926-2934.]
[41] 邹俊亮,邵明安,龚时慧.不同植被和土壤类型下土壤水分剖面的分异[J].水土保持研究,2011,18(6):12-17.
[Zou Junliang,Shao Mingan,Gong Shihui.Effects of different vegetation and soil types on profile variability of soil moisture[J].Research of Soil and Water Conservation,2011,18(6):12-17.]
Outlines

/