Yueming Liu
Nanjing Tech University
5 Papers
Yueming Liu is an academic researcher from Nanjing Tech University. The author has contributed to research in topics: Biology & Ecosystem. The author has an hindex of 1, co-authored 1 publications.
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Papers
Plant functional trait diversity and structural diversity co-underpin ecosystem multifunctionality in subtropical forests
Shuai Ouyang,Mengmeng Gou,Pifeng Lei,Yueming Liu,Liang Chen,Xiangwen Deng,Zhonghui Zhao,Yelin Zeng,Yan Yan Hu,Changhui Peng,Wenhua Xiang +10 more
TL;DR: In this paper , the effects of tree diversity in structurally complex subtropical forests relative to other regulators (e.g., soil microbial diversity, stand structure, and environmental conditions) remains uncertain.
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Theoretical investigation and experimental verification of a mathematical model for counter-flow spray separation tower
TL;DR: In this paper, the concept of supersaturated state of the moist air was introduced, and a new sectional one-dimensional model was developed with a detailed derivation with a prototypic apparatus was set up and the reliability of the model was validated by the experimental study.
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Distribution of Genes and Microbial Taxa Related to Soil Phosphorus Cycling across Soil Depths in Subtropical Forests
Hao Lv,Jie Yang,Siwen Su,Yueming Liu,Jie Feng,Yuxiang Sheng,Ting Wang,Jin Hua Pan,Li Tang,Liang Chen,Ouyang Shuai,Guangjun Wang +11 more
TL;DR: This study examines the distribution of genes and microbial taxa related to phosphorus cycling across soil depths in subtropical forests, revealing distinct patterns between organic and mineral soils, influenced by soil carbon, nitrogen, and phosphorus concentrations.
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Bombyx mori Flap endonuclease 1 correlates with the repair of ultraviolet-induced DNA damage.
Qingxia Tang,Yueming Liu,Yutong Liu,Feifei Zhu,Qian Yu,Huiqing Chen,Liang Chen,Shangshang Ma,Huixin Xu,Guohui Li +9 more
TL;DR: Wang et al. as mentioned in this paper characterized the properties and functions of FEN1 in invertebrates such as Bombyx mori and found that BmFEN1 favored the faster repair of UV-damaged DNA.
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