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The Nutrient Status of Plant Roots Reveals Competition Intensities in Rubber Agroforestry Systems

机译:植物根部的营养状况揭示了橡胶制剂系统中的竞争强度

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Controversial competition theories may confuse the current understanding of belowground plant competition and thus result in incorrect diagnoses and mitigation strategies for nutrient competition. As such, the management of nutrient competition is a major challenge in the application and development of rubber agroforestry systems (AFSs). To explore the effects of plant competition on the nutrient status of rubber AFSs, this study measured the carbon, nitrogen, and phosphorus concentrations of the litter and soil and in plant leaves, stems, and roots from five rubber plantations (i.e., rubber monocultures and rubber mixed with cocoa, coffee, tea, and Flemingia macrophylla (Willd.) Merr., 1910)). The relative competition intensity indexes were calculated to evaluate the competition intensity of each mixed-species system, and Bayesian networks were established to investigate the linkage effects of interspecific competition for nutrients. This study demonstrated that rubber trees had weak competition with cocoa trees, moderate competition with F. macrophylla and tea trees, and intense competition with coffee trees. With the increase in competition intensity, the negative effects of interspecific competition on soil gradually offset the improvement in soil nutrients achieved with intercropping. Nitrogen and phosphorous translocation from the stems to the roots was enhanced by competition. However, enhanced nutrient allocation to roots may have led to insufficient nitrogen and phosphorous supplies in plant leaves. The quality of the litter therefore decreased because the nutrient status of fallen leaves determines the initial litter conditions. Such consequences may reduce the release of nutrients from the litter to the soil and thus increase soil nutrient depletion. This study revealed that competition effects were most obvious for the root nutrient status, followed by the stem and leaf nutrient statuses. Moreover, this study further demonstrated that the nutrient concentration of plant roots can better indicate the intensity of nutrient competition than the nutrient concentration of other plant organs.
机译:有争议的竞争理论可能会使目前对低于地区植物竞争的理解混淆,从而导致营养竞争的诊断和缓解策略不正确。因此,营养竞争的管理是橡胶制剂系统(AFSS)的应用和开发中的主要挑战。为了探讨植物竞争对橡胶AFS营养状况的影响,该研究测量了垃圾和土壤和植物叶,茎和植物叶,茎和根系的碳,氮和磷浓度(即橡胶单栽培橡胶混合与可可,咖啡,茶和弗莱明亚Macrophylla(Willd。)Merr。,1910))。计算了相对竞争强度指标,以评估每个混合物种系统的竞争强度,并建立贝叶斯网络以研究营养成分种间竞争的联系效应。本研究表明,橡胶树与可可树的竞争较弱,与F. Macrophylla和茶树的中等竞争,以及与咖啡树的激烈竞争。随着竞争强度的增加,逐渐竞争对土壤的竞争竞争的负面影响逐渐抵消了间作达到了土壤营养素的改善。竞争增强了从茎到根部的氮素和磷易位。然而,增强营养分配对根部可能导致植物叶中的氮气和磷供应不足。因此,垃圾的质量降低,因为下降叶的营养状况决定了初始垃圾条件。这种后果可以减少从垃圾中的营养素释放到土壤中,从而增加土壤养分耗尽。本研究表明,竞争效应对于根系养分状况最为明显,其次是茎和叶营养状态。此外,该研究进一步证明了植物根部的营养浓度可以更好地表明营养竞争的强度而不是其他植物器官的营养浓度。

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