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探究不同施用量生物炭对烤烟养分积累和生长的影响()。 (注:原文括号部分内容缺失,所以译文括号处也只能原样保留)

Exploring the effect of different application rates of biochar on the accumulation of nutrients and growth of flue-cured tobacco ().

作者信息

Yang Yingfen, Ahmed Waqar, Ye Chenghu, Yang Linyuan, Wu Lianzhang, Dai Zhenlin, Khan Khalid Ali, Hu Xiaodong, Zhu Xiaohong, Zhao Zhengxiong

机构信息

Yunnan Agricultural University, Kunming, Yunnan, China.

Yunnan Revert Medical and Biotechnology Co., Ltd., Kunming, Yunnan, China.

出版信息

Front Plant Sci. 2024 Feb 23;15:1225031. doi: 10.3389/fpls.2024.1225031. eCollection 2024.

Abstract

BACKGROUND

Biochar application has become one of the most potential tools to improve soil fertility and plant growth for sustainable and eco-friendly agriculture. However, both positive and negative effects of biochar application have been recorded on plant growth and soil fertility.

METHODS

This study investigated the impact of different application rates (0, 600, 900, 1200, and 1800 kg/ha) of biochar on the soil nutrient contents, accumulation of nutrients and dry matter in different plant parts, and growth of flue-cured tobacco plants under field conditions.

RESULTS

Results demonstrated that soil organic carbon pool and carbon/nitrogen ratio were increased proportionally with the increasing dosage of biochar, 25.54 g/kg and 14.07 g/kg compared with control 17 g/kg and 10.13 g/kg, respectively. The contents of soil total nitrogen were also significantly increased after biochar application in the middle (1.77 g/kg) and late-growth (1.54 g/kg) stages of flue-cured tobacco than in control (1.60 g/kg and 1.41 g/kg, respectively). The contents of soil nitrate nitrogen were also higher under low (600 and 900 kg/ha) application rates of biochar and reduced when higher (1200 and 1800 kg/ha) dosages of biochar were applied. However, it was observed that varying application rates of biochar had no impact on soil ammonium nitrogen content during the growth period of flue-cured tobacco plants. The nutrient accumulation (N, P, K) in different parts of flue-cured tobacco plants was significantly increased under a low application rate of biochar, which enhanced the soil and plant analyzer development values, effective leaves number, growth, dry matter accumulation, and leaf yield of flue-cured tobacco. In contrast, the high biochar application rate (1200 and 1800 kg/ha) negatively impacted nutrient accumulation and growth of flue-cured tobacco.

CONCLUSION

Conclusively, the optimum application of biochar (600 and 900 kg/ha) is beneficial for plant growth, soil fertility, accumulation of nutrients, and dry matter in different plant parts. However, excessive biochar application (> 900 kg/ha) could inhibit flue-cured tobacco plant growth. This study provides a theoretical foundation for biochar application in tobacco and other crop production to obtain agricultural sustainability and economic stability.

摘要

背景

生物炭的应用已成为提高土壤肥力和促进植物生长以实现可持续和生态友好型农业的最具潜力的工具之一。然而,生物炭应用对植物生长和土壤肥力既有积极影响也有消极影响。

方法

本研究调查了不同施用量(0、600、900、1200和1800千克/公顷)的生物炭对田间条件下土壤养分含量、不同植物部位养分和干物质积累以及烤烟植株生长的影响。

结果

结果表明,土壤有机碳库和碳氮比随着生物炭施用量的增加而成比例增加,与对照相比,分别为25.54克/千克和14.07克/千克,对照分别为17克/千克和10.13克/千克。在烤烟生长中期(1.77克/千克)和后期(1.54克/千克),施用生物炭后土壤全氮含量也显著高于对照(分别为1.60克/千克和1.41克/千克)。在低生物炭施用量(600和900千克/公顷)下,土壤硝态氮含量也较高,而在高生物炭施用量(1200和1800千克/公顷)下则降低。然而,观察到不同施用量的生物炭在烤烟植株生长期间对土壤铵态氮含量没有影响。在低生物炭施用量下,烤烟植株不同部位的养分积累(氮、磷、钾)显著增加,这提高了土壤和植物分析仪发育值、有效叶片数、生长、干物质积累以及烤烟的叶片产量。相比之下,高生物炭施用量(1200和1800千克/公顷)对烤烟的养分积累和生长有负面影响。

结论

总之,生物炭的最佳施用量(600和900千克/公顷)有利于植物生长、土壤肥力、不同植物部位的养分积累和干物质积累。然而,过量施用生物炭(>900千克/公顷)会抑制烤烟植株生长。本研究为生物炭在烟草和其他作物生产中的应用提供了理论基础,以实现农业可持续性和经济稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f0f/10920355/b1d019c8923b/fpls-15-1225031-g001.jpg

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