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Effects of biochar amendment and reduced irrigation on growth, physiology, water-use efficiency and nutrients uptake of tobacco (Nicotiana tabacum L.) on two different soil types

机译:生物炭修正案的影响及降低灌溉对两种不同土壤类型的生长,生理学,水性利用效率和营养增生烟草(Nicotiana Tabacum L.)

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摘要

Biochar has shown beneficial effects in agricultural production, yet the combined effects of biochar and reduced irrigation on crop growth and water-use efficiency (WUE) in diverse soil types have not been fully explored. A split-root pot experiment was conducted to investigate the effects of addition of 2% softwood (SWB) and wheat straw biochar (WSB) on growth, physiology, WUE and nutrients uptake of tobacco (Nicotiana tabacum L.) plants grown in a Ferrosol and an Anthrosol, respectively, under three irrigation treatments. The plants were either irrigated daily to 90% of water-holding capacity (FI), or irrigated with 70% volume of water used for FI to the whole root-zone (DI) or alternately to half root-zone (PRD). The results showed that plants grown in Anthrosol possessed greater leaf gas exchange rates, dry biomass and WUE while lower nutrients content compared to those grown in Ferrosol. Despite a negative effect on plant N content and WUE, WSB addition increased water-holding capacity, consequently improved leaf gas exchange, water uptake, biomass and K content resulting in an improved in the leaf quality of tobacco as exemplified by an increased leaf K content and a more appropriate N to K stoichiometric ratio. However, these effects were not evident upon SWB addition. Moreover, these responses to biochar addition were stronger in Ferrosol than in Anthrosol might be associated with its lower pH. Compared to FI, PRD slightly reduced photosynthetic rate but significantly decreased stomatal conductance, transpiration rate and leaf area, leading to a significant increase in intrinsic, instantaneous and plant WUE. Additionally, PRD was superior over DI in improving yield, WUE, N uptake under a same irrigation volume. It was concluded that WSB combined with PRD could be a promising practice to synergistically improve tobacco yield, quality and WUE by improving soil hydro-physical properties and nutrients bioavailability.
机译:BioChar在农业生产中表现出有益的效果,但尚未完全探索生物炭的综合影响和对农作物生长和水利用效率(WUE)的灌溉减少的影响。进行了分裂的盆栽试验,以研究加入2%软木(SWB)和小麦秸秆生物炭(WSB)对烟草(Nicotiana Tabacum L.)植物的生长,生理学,电力秸秆和营养素的影响的影响分别在三次灌溉处理下分别为蒽醇。将植物每天灌溉至90%的水保持能力(FI),或用70%的水,用于全根区(DI)或交替的半根区(PRD)灌溉。结果表明,蒽醇种植的植物具有更大的叶片气体交换率,干生物量和武力,而与在铁溶胶中生长的人相比降低营养含量。尽管对植物N含量和WUE产生负面影响,但是,WSB增加了水持量,因此改善了叶片气体交换,水吸收,生物质和K含量,导致烟草的叶状物质的改善,如增加的叶k含量并且更合适的n至k化学计量比率。然而,这些效果在SWB添加时并不明显。此外,对生物炭加入的这些反应在铁溶液中较强,而不是在蒽醇中可能与其较低的pH相关。与FI,PRD略微降低光合速率,但气孔导率显着降低,蒸腾率和叶面积显着降低,导致内在,瞬时和植物电力有显着增加。另外,PRD在提高产率,WUE,N在相同的灌溉体积下的屈服优异。得出结论,WSB与PRD相结合可能是通过改善土壤水力 - 物理性质和营养生物利用度来协同改善烟草产量,质量和水平的有希望的做法。

著录项

  • 来源
    《Science of the total environment》 |2021年第20期|144769.1-144769.11|共11页
  • 作者单位

    College of Water Resources and Architectural Engineering Northwest A&F University Weihui Road 23 712100 Yangling Shaanxi China Key Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas Ministry of Education Northwest A&f University Yangling Shaanxi 712 WO China Department of Agroecology Aarhus University Blichers Alle 20 Postboks 50 DK-8830 Tjele Denmark;

    College of Water Resources and Architectural Engineering Northwest A&F University Weihui Road 23 712100 Yangling Shaanxi China Key Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas Ministry of Education Northwest A&f University Yangling Shaanxi 712 WO China;

    College of Water Resources and Architectural Engineering Northwest A&F University Weihui Road 23 712100 Yangling Shaanxi China Key Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas Ministry of Education Northwest A&f University Yangling Shaanxi 712 WO China;

    College of Water Resources and Architectural Engineering Northwest A&F University Weihui Road 23 712100 Yangling Shaanxi China Key Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas Ministry of Education Northwest A&f University Yangling Shaanxi 712 WO China;

    Department of Plant and Environmental Science Faculty of Science University of Copenhagen Hojbakkegaard Alle 13 DK-2630 Taastrup Denmark Key Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas Ministry of Education Northwest A&f University Yangling Shaanxi 712 WO China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biochar; Alternate partial root-zone drying irrigation; Leaf gas exchange; Water-use efficiency; Nitrogen; Potassium;

    机译:生物炭;交替的部分根系干燥灌溉;叶煤气交换;用水效率;氮;钾;

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