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DOI10.1016/j.foreco.2019.117561
Minor increases in Phyllostachys edulis (Moso bamboo) biomass despite evident alterations of soil bacterial community structure after phosphorus fertilization alone: Based on field studies at different altitudes
Zhang M.; Zhang W.; Bai S.H.; Niu Y.; Hu D.; Ji H.; Xu Z.
发表日期2019
ISSN0378-1127
卷号451
英文摘要Understanding the relationships among bamboo growth, soil microbial community and phosphorus (P) fertilization may shed new light on the optimization of P application rate and ecological function of P nutrient in forest ecosystem. This study aimed to evaluate the impacts of P fertilizations (25 and 50 kg P ha−1) on Phyllostachys edulis (Moso bamboo) growths, soil nutrient contents and microbial properties at different altitudes (300 and 800 m) and to link Moso bamboo growths with abiotic and biotic factors. Compared with the blank control, P fertilizations alone generated negligible impacts on the increases of Moso bamboo biomass and soil available P contents. Bacterial and fungal community diversities kept relatively stable after P fertilizations. Contrastingly, relative to the control, 25 kg P ha−1 application significantly enhanced the relative abundance of Proteobacteria and changed bacterial community structure at low altitude. At low and high altitudes, 50 kg P ha−1 applications significantly increased the relative abundances of Ascomycota. The Moso bamboo growth might be stimulated by the increases of soil total nitrogen, available P, Proteobacteria and Ascomycota. Our results demonstrated that P fertilization alone significantly changed soil bacterial community structure but generated negligibly stimulating role in the increase of Moso bamboo biomass. © 2019 Elsevier B.V.
英文关键词Altitudes; Illumina HiSeq sequencing; Moso bamboo; P fertilization; Soil microorganism
语种英语
scopus关键词Altitude control; Bacteria; Bamboo; Biomass; Nutrients; Phosphorus; Soils; Altitudes; Bacterial community structure; Illumina; Moso bamboo; Phyllostachys edulis; Soil bacterial community; Soil micro-organisms; Soil microbial community; Ecosystems; bacterium; bamboo; fertilizer application; genetic analysis; microbial community; phosphorus; relative abundance; soil microorganism; soil nitrogen; Bacteria; Bamboo; Biomass; Ecosystems; Nutrients; Phosphorus; Ascomycota; Bacteria (microorganisms); Phyllostachys pubescens; Proteobacteria
来源期刊Forest Ecology and Management
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/155763
作者单位Anhui Province Key Laboratory of Wetland Ecosystem Protection and Restoration, School of Resources and Environmental Engineering, Anhui University, Hefei, 230601, China; Environmental Futures Research Institute, School of Environment and Science, Griffith University, Brisbane, Queensland 4111, Australia; College of Forestry, Jiangxi Agricultural University, Nanchang, 330045, China; GeneCology Research Centre, Faculty of Science, Health, Education and Engineering, University of the Sunshine Coast, Maroochydore DC, QLD 4558, Australia; School of Medical and Applied Sciences, Central Queensland University, Bundaberg, Queensland 4670, Australia
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Zhang M.,Zhang W.,Bai S.H.,et al. Minor increases in Phyllostachys edulis (Moso bamboo) biomass despite evident alterations of soil bacterial community structure after phosphorus fertilization alone: Based on field studies at different altitudes[J],2019,451.
APA Zhang M..,Zhang W..,Bai S.H..,Niu Y..,Hu D..,...&Xu Z..(2019).Minor increases in Phyllostachys edulis (Moso bamboo) biomass despite evident alterations of soil bacterial community structure after phosphorus fertilization alone: Based on field studies at different altitudes.Forest Ecology and Management,451.
MLA Zhang M.,et al."Minor increases in Phyllostachys edulis (Moso bamboo) biomass despite evident alterations of soil bacterial community structure after phosphorus fertilization alone: Based on field studies at different altitudes".Forest Ecology and Management 451(2019).
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