Elevated precipitation modifies the relationship between plant diversity and soil bacterial diversity under nitrogen deposition in Stipa baicalensis steppe

被引:22
|
作者
Zhang, Haifang [1 ]
Liu, Hongmei [1 ]
Zhao, Jianning [1 ]
Wang, Lili [1 ]
Li, Gang [1 ]
Huangfu, Chaohe [1 ]
Wang, Hui [1 ]
Lai, Xin [1 ]
Li, Jie [1 ]
Yang, Dianlin [1 ]
机构
[1] Minist Agr, Agroenvironm Protect Inst, Room 211,31 Fukang Rd, Tianjin 300191, Peoples R China
基金
中国国家自然科学基金;
关键词
Nitrogen deposition; Precipitation; Plant diversity; Soil bacterial diversity; Stipa baicalensis steppe; High-throughput sequencing; MICROBIAL COMMUNITIES; DIFFERENTIAL RESPONSES; GLOBAL PRECIPITATION; FUNGAL COMMUNITIES; SPECIES-DIVERSITY; CARBON STORAGE; N DEPOSITION; GRASSLAND; FERTILIZATION; WATER;
D O I
10.1016/j.apsoil.2017.06.005
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Nitrogen (N) deposition and precipitation change are important phenomena in global climate change and they can strongly influence grassland ecology. Previous studies primarily focused on the impact of N deposition or precipitation on plant community and soil microorganisms separately. They did not account for the relationship between plant and soil microbial communities. To better understand how future climate change may affect the relationship between plant and soil microbial diversity, we simulated N deposition and precipitation change through artificial fertilization (0, 15, 30, 50, 100, 150, 200, 300 kg N. ha(-1).yr(-1)) and irrigation (no irrigation and irrigation equivalent to 100 mm extra summer rainfall) at a test area on the Stipa baicalensis steppe. We found that the plant primary productivity increased following N enrichment but the plant diversity declined. The composition, abundance and diversity of soil bacteria changed in the test scenarios. Under normal precipitation, the bacterial OTU richness increased at N100 (100 kg N. ha(-1) . yr(-1)) and the bacterial diversity increased at N100-N300 (100-300 kg N. ha(-1) . yr(-1)). When irrigation was applied, the bacterial OTU richness and diversity were improved at low N levels (15-50 kg N. ha(-1) . yr(-1)) but decreased at high N levels (N100-N300). This is probably due to water addition lead to the dissolution of more nitrates in soil and thus decreased the soil pH. A significant negative relationship was observed between plant diversity and bacterial diversity under normal precipitation. Under irrigation, the correlation was also negative at low N levels (N15-N50), but became significantly positive when the N level exceeded N100, which contributed to decrease in bacterial diversity resulting from significant decrease of soil pH. Our results clearly showed the elevated precipitation modified the relationship between plant and soil bacterial diversity under N deposition. We predict that as the global climate change further intensifies, the interaction between climate change factors may exercise complex impact on ecological properties and lead to unexpected consequences on the feedback in plant-microbe-soil system.
引用
收藏
页码:345 / 353
页数:9
相关论文
共 47 条
  • [1] Nitrogen deposition combined with elevated precipitation is conducive to maintaining the stability of the soil fungal diversity on the Stipa baicalensis steppe
    Zhang, Haifang
    Wang, Lili
    Liu, Hongmei
    Zhao, Jianning
    Li, Gang
    Wang, Hui
    Lai, Xin
    Li, Jie
    Xiu, Weiming
    Yang, Dianlin
    SOIL BIOLOGY & BIOCHEMISTRY, 2018, 117 : 135 - 138
  • [2] The Roles of Bacteria in Soil Organic Carbon Accumulation under Nitrogen Deposition in Stipa baicalensis Steppe
    Qin, Jie
    Liu, Hongmei
    Zhao, Jianning
    Wang, Hui
    Zhang, Haifang
    Yang, Dianlin
    Zhang, Naiqing
    MICROORGANISMS, 2020, 8 (03)
  • [3] Nitrogen Deposition Reduces the Diversity and Abundance of cbbL Gene-Containing CO2-Fixing Microorganisms in the Soil of the Stipa baicalensis Steppe
    Qin, Jie
    Li, Ming
    Zhang, Haifang
    Liu, Hongmei
    Zhao, Jianning
    Yang, Dianlin
    FRONTIERS IN MICROBIOLOGY, 2021, 12
  • [4] Responses of plant diversity and soil microorganism diversity to nitrogen addition in the desert steppe, China
    Ye, He
    Hong, Mei
    Xu, Xuehui
    Liang, Zhiwei
    Jiang, Na
    Tu, Nare
    Wu, Zhendan
    JOURNAL OF ARID LAND, 2024, 16 (3) : 447 - 459
  • [5] Response of bacterial communities and plant-mediated soil processes to nitrogen deposition and precipitation in a desert steppe
    Wang, Zhen
    Na, Risu
    Koziol, Liz
    Schellenberg, Michael P.
    Li, Xiliang
    Ta, Na
    Jin, Ke
    Wang, Hai
    PLANT AND SOIL, 2020, 448 (1-2) : 277 - 297
  • [6] Responses of plant diversity and soil microorganism diversity to nitrogen addition in the desert steppe, China
    He Ye
    Mei Hong
    Xuehui Xu
    Zhiwei Liang
    Na Jiang
    Nare Tu
    Zhendan Wu
    Journal of Arid Land, 2024, 16 : 447 - 459
  • [7] The Diversity of Soil Bacteria and Fungi Under Altered Nitrogen and Rainfall Patterns in a Temperate Steppe
    Yu, Yang
    Liu, Lu
    Zhao, Jianing
    Wang, Shuchen
    Zhou, Yijun
    Xiao, Chunwang
    FRONTIERS IN MICROBIOLOGY, 2022, 13
  • [8] Effects of nitrogen addition on vegetation and soil and its linkages to plant diversity and productivity in a semi-arid steppe
    He, Kejian
    Huang, Yongmei
    Qi, Yu
    Sheng, Zhilu
    Chen, Huiying
    SCIENCE OF THE TOTAL ENVIRONMENT, 2021, 778
  • [9] Effects of precipitation change and nitrogen addition on the composition, diversity, and molecular ecological network of soil bacterial communities in a desert steppe
    Jia, Meiqing
    Gao, Zhiwei
    Gu, Huijun
    Zhao, Chenyu
    Liu, Meiqi
    Liu, Fanhui
    Xie, Lina
    Wang, Lichun
    Zhang, Guogang
    Liu, Yuhua
    Han, Guodong
    PLOS ONE, 2021, 16 (03):
  • [10] Different responses of soil bacterial species diversity and phylogenetic diversity to short-term nitrogen input in an alpine steppe at the source of Brahmaputra
    Huang, Shaolin
    Yu, Chengqun
    Fu, Gang
    Sun, Wei
    Li, Shaowei
    Xiao, Jianyu
    FRONTIERS IN ECOLOGY AND EVOLUTION, 2022, 10