Effects of Phosphorus Application Levels on Its Uptake and Utilization in Foxtail Millet

Agronomy Pub Date : 2024-09-11 DOI:10.3390/agronomy14092078
Junwei Ma, Guo Wang, Xiaojie Liu, Biao Lei, Guofang Xing
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Abstract

Foxtail millet is a traditional minor crop in China, known for its strong resistance to stress, tolerance to barren lands, and wide adaptation. Phosphorus is an essential element for crop growth and development, and the appropriate application of phosphorus can enhance crop yield and quality. However, the optimal phosphorus fertilization levels for the growth of foxtail millet have yet to be determined. This study aims to explore the effects of different phosphorus application levels (T1, T2, T3, and T4), on phosphorus accumulation and use efficiency and crop yield and quality in the foxtail millet cultivars ‘B376’ and ‘B27’, which have different phosphorus efficiencies. Additionally, we investigated the effects of phosphorus accumulation and use efficiency on the heading and filling stages of these cultivars. The results show that the total phosphorus content and accumulation levels in the ‘B376’ and ‘B27’ cultivars vary at different developmental stages and in different plant parts. Furthermore, crop yield and quality in both cultivars vary in response to the different phosphorus application levels. In terms of yield, the phosphorus-tolerant variety ‘B376’ reaches its highest at T2, while the phosphorus-sensitive variety ‘B27’ achieves its maximum yield at T3. For quality, ‘B376’ exhibits the highest moisture and crude fat content under T4, and the highest protein and the lowest amylose content under T3. On the other hand, ‘B27’ achieves its highest moisture content under T4, its highest crude fat and protein levels under T3, and its lowest amylose content under T2. Therefore, the response to different phosphorus application levels differs between the two cultivars with different phosphorus use efficiencies. Moreover, under different phosphorus fertilization levels, the average crop yield, moisture, fat, and amylose content averages of the phosphorus-tolerant ‘B376’ cultivar are 16.1%, 1.2%, 7.0%, and 4.1% higher than those of the phosphorus-sensitive ‘B27’ cultivar. Additionally, phosphorus use efficiency is positively correlated with the moisture and crude fat contents of foxtail millet. In conclusion, the phosphorus-tolerant cultivar demonstrates superior phosphorus accumulation, absorption, and utilization capacities compared to the phosphorus-sensitive cultivar. These results suggest that in the phosphorus-tolerant ‘B376’, optimal phosphorus fertilization levels enhance the development of roots, stems, and leaves at the T2 (P90) level, and promote the accumulation of moisture and crude fat in foxtail millet grains, thereby improving their taste and quality. Our findings provide a theoretical basis for phosphorus fertilizer utilization in foxtail millet cultivation and will help determine the optimal fertilization levels for foxtail millet growth.
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施磷水平对狐尾黍吸收和利用磷的影响
狐尾黍是中国传统的小宗作物,以抗逆性强、耐瘠薄、适应性广而著称。磷是作物生长发育必不可少的元素,适当施磷可以提高作物产量和品质。然而,狐尾黍生长的最佳磷肥施用量尚未确定。本研究旨在探讨不同施磷水平(T1、T2、T3 和 T4)对具有不同磷效率的狐尾粟栽培品种 "B376 "和 "B27 "的磷积累和利用效率以及作物产量和品质的影响。此外,我们还研究了磷的积累和利用效率对这些栽培品种的顶芽期和灌浆期的影响。结果表明,'B376'和'B27'栽培品种在不同发育阶段和不同植株部位的总磷含量和积累水平各不相同。此外,这两种栽培品种的产量和质量也随不同的施磷水平而变化。在产量方面,耐磷品种'B376'在T2达到最高产量,而对磷敏感的品种'B27'在T3达到最高产量。在品质方面,'B376'在 T4 期的水分和粗脂肪含量最高,在 T3 期的蛋白质含量最高,直链淀粉含量最低。另一方面,'B27'在 T4 时水分含量最高,在 T3 时粗脂肪和蛋白质含量最高,在 T2 时直链淀粉含量最低。因此,两种不同磷利用率的栽培品种对不同施磷水平的反应是不同的。此外,在不同磷肥施用水平下,耐磷品种'B376'的平均产量、水分、脂肪和直链淀粉含量分别比对磷敏感的品种'B27'高出 16.1%、1.2%、7.0% 和 4.1%。此外,磷的利用效率与狐尾粟的水分和粗脂肪含量呈正相关。总之,与对磷敏感的栽培品种相比,耐磷栽培品种表现出更强的磷积累、吸收和利用能力。这些结果表明,在耐磷栽培品种 "B376 "中,最佳磷肥水平可促进根、茎和叶在 T2(P90)水平上的发育,并促进狐尾粟谷粒中水分和粗脂肪的积累,从而改善其口感和品质。我们的研究结果为狐尾粟栽培中的磷肥利用提供了理论依据,有助于确定狐尾粟生长的最佳施肥水平。
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