Search Results - "Niu, Guoxiang"

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  1. 1

    Availability of soil base cations and micronutrients along soil profile after 13-year nitrogen and water addition in a semi-arid grassland by Niu, Guoxiang, Wang, Ruzhen, Hasi, Muqier, Wang, Yinliu, Geng, Qianqian, Wang, Changhui, Jiang, Yong, Huang, Jianhui

    Published in Biogeochemistry (01-02-2021)
    “…Alteration in the availability of soil base cations and micronutrients is critical to maintain stable ecosystem functioning under the predicted global change…”
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    Journal Article
  2. 2

    Changes in plant resource inputs lead to rapid alterations in soil dissolved organic matter composition in an old-growth tropical forest by Niu, Guoxiang, Yin, Gege, Wang, Junjian, Zhang, Peng, Xuan, Yingxue, Mao, Qinggong, Chen, Weibin, Lu, Xiankai

    Published in Geoderma (01-10-2024)
    “…•Molecular characteristics of soil DOM were altered after short DIRT in a tropical forest.•FT-ICR-MS index-based results were largely consistent with…”
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  3. 3

    Do long-term high nitrogen inputs change the composition of soil dissolved organic matter in a primary tropical forest? by Niu, Guoxiang, Yin, Gege, Mo, Xiaohan, Mao, Qinggong, Mo, Jiangming, Wang, Junjian, Lu, Xiankai

    Published in Environmental research letters (01-09-2022)
    “…Abstract Dissolved organic matter (DOM) plays a key role in forest carbon biogeochemistry by linking soil organic carbon (SOC) sequestration and water fluxes,…”
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  4. 4

    Effects of decadal nitrogen addition on carbon and nitrogen stocks in different organic matter fractions of typical steppe soils by Niu, Guoxiang, Liu, Li, Wang, Yinliu, Guan, Huiling, Ning, Qiushi, Liu, Tao, Rousk, Kathrin, Zhong, Buqing, Yang, Junjie, Lu, Xiankai, Han, Xingguo, Huang, Jianhui

    Published in Ecological indicators (01-11-2022)
    “…•More nitrogen and carbon are stored as MAOM in steppe soils regardless of nitrogen addition.•Subsoil has high share of MAOM nitrogen and carbon than…”
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    Journal Article
  5. 5

    Subtropical forest macro-decomposers rapidly transfer litter carbon and nitrogen into soil mineral-associated organic matter by Niu, Guoxiang, Liu, Tao, Zhao, Zhen, Zhang, Xuebing, Guan, Huiling, He, Xiaoxiang, Lu, Xiankai

    Published in Forest ecosystems (2024)
    “…Forest soils in tropical and subtropical areas store a significant amount of carbon. Recent frameworks to assess soil organic matter (SOM) dynamics under…”
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  6. 6

    Effects of 12-Year Nitrogen Addition and Mowing on Plant-Soil Micronutrients in a Typical Steppe by Niu, Guoxiang, Wang, Yinliu, Dai, Guangyi, Xie, Siwei, Jin, Yiqian, Yang, Junjie, Huang, Jianhui

    Published in Plants (Basel) (01-11-2022)
    “…Changes in soil micronutrient availability may have adverse consequences on grassland productivity, yet it’s still largely unclear how concurrent human…”
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  7. 7

    Mowing increased plant diversity but not soil microbial biomass under N-enriched environment in a temperate grassland by Ning, Qiushi, Jiang, Liangchao, Niu, Guoxiang, Yu, Qiang, Liu, Jushan, Wang, Ruzhen, Liao, Sha, Huang, Jianhui, Han, Xingguo, Yang, Junjie

    Published in Plant and soil (01-10-2023)
    “…Aims The anthropogenic nitrogen (N) input has considerable consequences on soil microbial biomass, which is critical for biogeochemical cycling. As prevalent…”
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  8. 8

    Nitrogen addition and mowing had only weak interactive effects on macronutrients in plant-soil systems of a typical steppe in Inner Mongolia by Niu, Guoxiang, Wang, Ruzhen, Zhou, Hao, Yang, Junjie, Lu, Xiankai, Han, Xingguo, Huang, Jianhui

    Published in Journal of environmental management (01-12-2023)
    “…Effective management of macronutrients is pivotal in the optimization and provisioning of ecosystem services in grassland areas, particularly in degraded…”
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  9. 9

    Soil moisture, temperature and nitrogen availability interactively regulate carbon exchange in a meadow steppe ecosystem by Hasi, Muqier, Zhang, Xueyao, Niu, Guoxiang, Wang, Yinliu, Geng, Qianqian, Quan, Quan, Chen, Shiping, Han, Xingguo, Huang, Jianhui

    Published in Agricultural and forest meteorology (15-07-2021)
    “…•N addition enhanced GEP and NEP only when volumetric soil moisture exceeded 15%.•GEP and NEP showed saturating responses to N addition only at high soil…”
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  10. 10

    Soil microbial community responses to long-term nitrogen addition at different soil depths in a typical steppe by Niu, Guoxiang, Hasi, Muqier, Wang, Ruzhen, Wang, Yinliu, Geng, Qianqian, Hu, Shuya, Xu, Xiaohui, Yang, Junjie, Wang, Changhui, Han, Xingguo, Huang, Jianhui

    “…Global nitrogen (N) deposition has been influencing the structure of soil microbial communities, which play fundamental roles in modifying most biogeochemical…”
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  11. 11

    CircSLC16A12 Absence Inhibits High Glucose-Induced Dysfunction in Retinal Microvascular Endothelial Cells through Mediating miR-140-3p/FGF2 Axis in Diabetic Retinopathy by Wang, Shanshan, Yu, Qing, Wang, Yujue, Xu, Chunyue, Niu, Guoxiang, Liu, Rui

    Published in Current eye research (04-05-2022)
    “…Diabetic retinopathy (DR) is a common microvascular complication of diabetes mellitus which can cause irreversible visual impairment and blindness. We intended…”
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  12. 12

    Plants and microorganisms both contribute to soil organic matter formation through mineral interactions: Evidence from a subtropical forest succession by Zhu, Yiren, Hu, Minghui, Hui, Dafeng, Niu, Guoxiang, Li, Jianling, Yao, Xianyu, Hu, Yuanliu, Huang, Xiaolin, Li, Yonghui, Zhang, Deqiang, Deng, Qi

    Published in Geoderma (01-12-2024)
    “…•SOC accumulation with succession was accompanied by increasing contributions of MAOC.•Microbial necromass increased from early to middle stage but not at the…”
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  13. 13

    Enhanced foliar 15N enrichment with increasing nitrogen addition rates: Role of plant species and nitrogen compounds by Wang, Yinliu, Niu, Guoxiang, Wang, Ruzhen, Rousk, Kathrin, Li, Ang, Hasi, Muqier, Wang, Changhui, Xue, Jianguo, Yang, Guojiao, Lü, Xiaotao, Jiang, Yong, Han, Xingguo, Huang, Jianhui

    Published in Global change biology (01-03-2023)
    “…Determining the abundance of N isotope (δ15N) in natural environments is a simple but powerful method for providing integrated information on the N cycling…”
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  14. 14

    Enhanced foliar 15 N enrichment with increasing nitrogen addition rates: Role of plant species and nitrogen compounds by Wang, Yinliu, Niu, Guoxiang, Wang, Ruzhen, Rousk, Kathrin, Li, Ang, Hasi, Muqier, Wang, Changhui, Xue, Jianguo, Yang, Guojiao, Lü, Xiaotao, Jiang, Yong, Han, Xingguo, Huang, Jianhui

    Published in Global change biology (01-03-2023)
    “…Determining the abundance of N isotope (δ N) in natural environments is a simple but powerful method for providing integrated information on the N cycling…”
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  15. 15
  16. 16

    Effects of nitrogen and water addition on soil carbon, nitrogen, phosphorus, sulfur, and their stoichiometry along soil profile in a semi-arid steppe by Niu, Guoxiang, Zhong, Buqing, Wang, Ruzhen, Jin, Yiqian, Wang, Yinliu, Lü, Xiaotao, Jiang, Yong, Huang, Jianhui

    Published in Journal of soils and sediments (01-09-2023)
    “…Purpose Although past studies have found well-constrained soil carbon (C)/nutrient ratios, the effects of increased nitrogen (N) and water inputs on these…”
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  17. 17

    Intensity and Duration of Nitrogen Addition Jointly Alter Soil Nutrient Availability in a Temperate Grassland by Niu, Guoxiang, Wang, Yinliu, Wang, Ruzhen, Ning, Qiushi, Guan, Huiling, Yang, Junjie, Lu, Xiankai, Han, Xingguo, Huang, Jianhui

    “…Increasing N input can alter soil nutrient availability and influence plant growth. Previous studies focused on N addition effects on N and P availability,…”
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  18. 18

    Nitrogen addition results in Medicago sativa switching nitrogen sources by Wang, Yinliu, Hasi, Muqier, Bu, Dongdong, Li, Ang, Xue, Jianguo, Wang, Changhui, Tian, Qiuying, Niu, Guoxiang, Geng, Qianqian, Wang, Lixin, Huang, Jianhui

    Published in Plant ecology & diversity (04-07-2021)
    “…Nitrogen (N) addition may have strong impacts on legume growth and their biological N fixation (BNF), but how legume N acquisition sources respond to N inputs…”
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