柑桔绿色病影响柑桔园土壤健康参数的测定及其对作物产量的控制

Sean C. Stokes , Pankaj Trivedi , Kristen Otto , James A. Ippolito , Thomas Borch
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引用次数: 3

摘要

土壤健康是维持充足作物生产的一个重要方面,但需要健康土壤的具体条件因地区和作物而异。在高度管理的农业系统中,不健康的土壤可以被集约化管理方法掩盖,但在各种特征(如土壤有机质(SOM)浓度)中必须存在有害的临界点,即使是高度管理的系统也会开始失去生产力。这种负面影响在佛罗里达州的一个柑橘林中被观察到,其中有瓦伦西亚橙树,树的大小有明显的差异,但其他方面的管理方式相同。土壤健康指数表明,树木较少的地区土壤有机质含量(平均有机质= 0.57%)显著低于树木较多的地区(平均有机质= 0.94%)。作物生产力较低的地区,常见碳循环酶的酶活性和不同微生物种群的酶活性也较低,这些都对土壤健康和相应的植物生产力产生了不利影响。该农业区也有柑橘绿化病(HLB)感染率接近100%,因此我们提出了一个假设,可以解释这种感染的进展如何受到SOM浓度和微生物多样性差异的影响。我们认为,土壤更健康的地区可能对致命的HLB症状有更强的抵抗力。因此,在建立新林时应考虑土壤有机质分布和浓度,以优化土壤和作物生产力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Determining soil health parameters controlling crop productivity in a Citrus Greening disease affected orange grove

Determining soil health parameters controlling crop productivity in a Citrus Greening disease affected orange grove

Soil health is an important aspect for maintaining adequate crop production, but the specifics of what entails a healthy soil can vary from region to region and crop to crop. In highly managed agricultural systems, unhealthy soil can be masked by intensive management practices, yet there must be detrimental cutoff points in various characteristics, such as soil organic matter (SOM) concentrations, where even highly managed systems start to lose productivity. This negative impact was observed in a Florida citrus grove containing Valencia orange trees with observable differences in tree size yet were otherwise managed identically. A soil health index demonstrated that the areas with smaller trees had a significantly lower index score and those soils contained significantly less SOM (average SOM ​= ​0.57%) compared to areas with larger trees (average SOM ​= ​0.94%). The areas of lower crop productivity also had less enzymatic activity of common carbon-cycling enzymes and different microbial populations, which all together negatively affected soil health and corresponding plant productivity. This agricultural region is also known to have a Citrus Greening disease (HLB) infection rate of close to 100%, hence we developed a hypothesis that could explain how progression of this infection could be impacted by SOM concentrations and differences in microbial diversity. We posit that areas of this grove with healthier soil could have more resistance to the onset of fatal HLB symptoms. Consequently, soil organic matter distribution and concentration should be considered when establishing new groves in order to optimize soil and crop productivity.

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