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Enhanced biological N2 fixation and yield of faba bean (Vicia faba L.) in an acid soil following biochar addition: dissection of causal mechanisms

机译:添加生物炭后在酸性土壤中增强的蚕豆生物固氮和产量(蚕豆(Vicia faba L.)):原因机理剖析

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摘要

Background and aims Acid soils constrain legume growth and biochars have been shown to address these constraints and enhance biological N2 fixation in glasshouse studies. A dissection of causal mechanisms from multiple crop field studies is lacking. Methods In a sub-tropical field study, faba bean (Vicia faba L.) was cultivated in rotation with corn (Zea mays) following amendment of two contrasting biochars, compost and lime in a rhodic ferralsol. Key soil parameters and plant nutrient uptake were investigated alongside stable 15N isotope methodologies to elucidate the causal mechanisms for enhanced biological N2 fixation and crop productivity. Results Biological N2 fixation was associated with plant Mo uptake, which was driven by reductions in soil acidity following lime and papermill (PM) biochar amendment. In contrast, crop yield was associated with plant P and B uptake, and amelioration of soil pH constraints. These were most effectively ameliorated by PM biochar as it addressed both pH constraints and low soil nutrient status. Conclusions While liming resulted in the highest biological N2 fixation, biochars provided greater benefits to faba bean yield by addressing P nutrition and ameliorating Al toxicity.
机译:背景和目的在温室研究中,酸性土壤限制了豆类的生长,生物炭已被证明可以解决这些限制并增强生物固氮作用。缺乏对多种作物田间研究的因果机制的剖析。方法在亚热带田间研究中,在红壤性铁硅溶胶中改良了两种对比生物炭,堆肥和石灰后,将蚕豆(Vicia faba L.)与玉米(Zea mays)轮作种植。与稳定的15N同位素方法一起研究了关键的土壤参数和植物养分吸收,以阐明增强生物固氮和作物生产力的原因机制。结果生物固氮与植物吸收钼有关,这是由于石灰和造纸厂(PM)生物炭改良后土壤酸度降低而引起的。相反,农作物的产量与植物对P和B的吸收以及土壤pH限制的改善有关。 PM生物炭可有效解决这些问题,因为它既解决了pH值限制又降低了土壤养分状况。结论石灰限制了最高的生物固氮能力,而生物炭通过解决磷素营养和减轻铝的毒性,为蚕豆的产量提供了更大的益处。

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