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Biochar enhancement of facilitation effects in agroforestry: early growth and physiological responses in a maize-leucaena model system

机译:生物炭加强农林素促进效果:玉米leucaena模型系统的早期生长和生理反应

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Biochar, or pyrolyzed organic matter intended for use as a soil amendment, has a variety of properties of interest from the perspective of agroforestry, in particular its potential to increase soil C sequestration and enhance yields by increased retention of soil mineral nutrients. Nitrogen-fixing legumes commonly show large growth responses to biochar, and we hypothesized that combinations of legumes and non-legumes would show increased enhancement of yields in mixture due to enhanced facilitation related to increased nutrient retention. This hypothesis was tested in a glasshouse pot trial involving the leguminous tree leucaena (Leucaena leucocephala), and maize (Zea mays) grown for 120 days in mixture and monoculture in both an unamended soil and soil amended with a slow-pyrolysis coconut husk biochar at 10 t/ha. Responses were quantified in terms of biomass production and partitioning, leaf-level gas-exchange, leaf chlorophyll content, and (for leucaena) root nodule formation. Consistent with predictions, leucaena showed more pronounced growth and physiological responses to biochar than did maize. The system also showed increased total biomass yields relative to monocultures in the two-species mixtures with biochar (relative yield in mixture [RYM] = 1.69; 95% CI 1.41-1.81), but not in the control treatment (RYM = 1.25; 95% CI 0.93-1.76), and positive effects of biochar on yield were generally greater for both species when grown in mixture. Growth responses to biochar were most pronounced for stem and root biomass, and growth responses were consistent with changes in leaf-level photosynthesis and chlorophyll content. In addition, biochar had large effects on biomass partitioning, enhancing stem allocation in both species. Our results suggest that biochar additions may augment facilitative interactions in agroforestry and intercropped systems on acidic, nutrient-deficient soils by enhancing system nutrient retention.
机译:BioChar或热解的有机物作为土壤修正案,具有来自农林遗传学的角度的各种感兴趣的性质,特别是其潜力增加土壤C螯合的潜力,并通过增加土壤矿物质营养素的保留增加产量。氮气固定的豆类通常对生物炭展示大的生长反应,我们假设豆类和非豆类的组合将显示因与增加的营养保留相关的促进而增加了混合物的产量增加。该假设在涉及豆科盆栽罐试验中进行了测试,涉及豆科植物leucaena(Leucaena Leucocephala),玉米(Zea mays)在混合物中生长120天,并在止血椰子壳生物炭修正的未灭亡的土壤和土壤中的单一栽培10 t / ha。根据生物质生产和分区,叶级气体交换,叶叶叶含量和(对于Leucaena)根结节形成而定量反应。与预测一致,Leucaena向生物炭表达了比玉米更明显的生长和生理反应。该系统还表明,相对于双种与生物炭混合物中的单一种植体的单一种植体的总生物质产量增加(混合物中的相对产量[RYM] = 1.69; 95%CI 1.41-1.81),但不在对照处理中(RYM = 1.25; 95 %CI 0.93-1.76),并且在混合物中生长时,Biochar对两种物种的产生通常更大。对生物炭的生长响应最为明显茎和根生物量,并且生长反应与叶级光合作用和叶绿素含量的变化一致。此外,Biochar对生物质分配的影响大,两种物种中的茎分配都具有很大的影响。我们的研究结果表明,通过提高系统营养保留,Biochar添加可能在酸性,营养缺乏的土壤中增加促进的农业素和间作系统。

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