油棕叶中铁(Fe)营养成分的动态变化

R. A. Sinaga, B. J. Priatmadi, G. I. Ichriani, Joko Purnomo, Sukarman, S. Primananda, F. T. Sibarani
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引用次数: 0

摘要

铁(Fe)在支持光合作用和棕榈新陈代谢方面起着至关重要的作用,直接影响着油棕榈树的质量和产量,因此对铁(Fe)的管理对油棕榈树的栽培至关重要,尤其是在沙质土壤中。本研究旨在探讨印度尼西亚中加里曼丹省油棕叶片缺铁的动态变化。该研究采用分小区设计,比较了对照组(T0)和三种缺铁程度的植物状况:低度(T1)、中度(T2)和重度(T3)。棕榈样本采用有目的的取样方法选出。叶片样本的实验室分析表明,与对照组(67.25 微克/克)相比,缺铁棕榈的铁含量显著下降,T1 为 41.49 微克/克,T2 为 42.59 微克/克,T3 为 38.93 微克/克。研究还表明,缺铁会影响其他宏量和微量营养元素的吸收。例如,在中度缺铁的情况下,氮含量会增加(2.57%),而在相同水平下,钾含量会减少(0.729%)。尽管缺铁,但植物通过将其他养分水平保持在适度范围内来适应。在严重缺铁的情况下,铜的含量达到最高(5.868 微克/克),而铁的含量则显著下降。这证明油棕具有复杂的养分适应和调节机制,即使在缺铁条件下也能保持养分平衡。这些结果强调了油棕种植园中铁管理的重要性,尤其是在容易出现养分缺乏的沙质土壤中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Iron (Fe) Nutrient Dynamics in Oil Palm Leaves
Iron (Fe) management is crucial in cultivating oil palm, especially in sandy soils, due to its essential role in supporting photosynthesis and palm metabolism, directly influencing the quality and productivity of oil palms. This study aimed to explore the dynamics of Fe deficiency in oil palm leaves in Central Kalimantan, Indonesia. Using a Split Plot Design, the study compared plant conditions between the control (T0) and three levels of Fe deficiency: low (T1), moderate (T2), and severe (T3). Palm samples were selected using the purposive sampling method. Laboratory analysis of leaf samples indicated a significant decrease in Fe content in deficient palms, with levels of 41.49 µg/g in T1, 42.59 µg/g in T2, and 38.93 µg/g in T3, compared to the control group, which had 67.25 µg/g. The study also revealed that Fe deficiency affects the absorption of other macro and micronutrients. For instance, nitrogen levels increased under moderate Fe deficiency (2.57%), while potassium levels decreased (0.729%) at the same level. Despite the Fe deficiency, the plants adapted by maintaining other nutrient levels within a moderate range. Under severe Fe deficiency conditions, Cu levels reached their highest (5.868 µg/g), while Fe showed a significant decrease. This confirms that oil palm has complex nutrient adaptation and regulation mechanisms to maintain nutrient balance even under deficient conditions. These results emphasize the importance of Fe management in oil palm plantations, especially in sandy soils that are prone to nutrient deficiency.
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