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土壤中与温度相关的变化对烧焦骨头的影响:从磷释放到微生物群落

Effects of temperature-related changes on charred bone in soil: From P release to microbial community.

作者信息

Meng Lingzi, Chen Yunhui, Tang Lingyi, Sun Xiaoqin, Huo Hongxun, He Yuxin, Huang Yinan, Shao Qi, Pan Shang, Li Zhen

机构信息

College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing, Jiangsu 210095, China.

State Key Laboratory of Lake Science and Environment, Nanjing 210008, China.

出版信息

Curr Res Microb Sci. 2024 Jan 10;6:100221. doi: 10.1016/j.crmicr.2024.100221. eCollection 2024.

Abstract

Phosphorus (P) is one of the most common limited nutrients in terrestrial ecosystems. Animal bones, with abundant bioapatite, are considerable P sources in terrestrial ecosystems. Heating significantly promotes P release from bone bioapatite, which may alleviate P limitation in soil. This study aimed to explore P release from charred bone (CB) under heating at various temperatures (based on common natural heating). It showed that heating at ∼300 °C significantly increased the P release (up to ∼30 mg/kg) from CB compared with other heating temperatures. Then, the subsequent changes of available P and pH induced evident alternation of soil microbial community composition. For instance, CB heated at ∼300 °C caused elevation of phosphate-solubilizing fungi (PSF) abundance. This further stimulated P mobility in the soil. Meanwhile, the fungal community assembly process was shifted from stochastic to deterministic, whereas the bacterial community was relatively stable. This indicated that the bacterial community showed fewer sensitive responses to the CB addition. This study hence elucidated the significant contribution of heated bone materials on P supply. Moreover, functional fungi might assist CB treated by natural heating (e.g., fire) to construct P "Hot Spots".

摘要

磷(P)是陆地生态系统中最常见的有限养分之一。动物骨骼富含生物磷灰石,是陆地生态系统中相当可观的磷源。加热能显著促进骨骼生物磷灰石中磷的释放,这可能缓解土壤中的磷限制。本研究旨在探讨在不同温度下(基于常见自然加热)烧焦骨(CB)的磷释放情况。结果表明,与其他加热温度相比,在约300°C加热显著增加了CB的磷释放量(高达约30毫克/千克)。随后,有效磷和pH值的变化导致土壤微生物群落组成明显改变。例如,在约300°C加热的CB导致解磷真菌(PSF)丰度升高。这进一步促进了土壤中磷的移动性。同时,真菌群落组装过程从随机转向确定性,而细菌群落相对稳定。这表明细菌群落对添加CB的敏感反应较少。因此,本研究阐明了加热骨材料对磷供应的重要贡献。此外,功能性真菌可能有助于自然加热(如火灾)处理的CB构建磷“热点”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54d8/10825478/61c9fed679ed/ga1.jpg

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