首页> 美国卫生研究院文献>Plants >Interactive Effects of N Form and P Concentration on Growth and Tissue Composition of Hybrid Napier Grass (Pennisetum purpureum × Pennisetum americanum)
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Interactive Effects of N Form and P Concentration on Growth and Tissue Composition of Hybrid Napier Grass (Pennisetum purpureum × Pennisetum americanum)

机译:n形式和P浓度对杂交纳皮尔草生长和组织组成的互动影响(Pennisetum Purpureum×Pennisetum Americanum)

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摘要

This study aimed to assess effect of nitrogen (N) form and phosphorus (P) level on the growth and mineral composition of hybrid Napier grass. Experimental plants were grown with different N forms (NO , NH NO , and NH ; 500 µM) and P concentrations (100 and 500 µM) under greenhouse conditions for 42 days. Growth rate, morphology, pigments, and mineral nutrients in the plant tissue were analysed. At the low P concentration, the better growth was found in the plants supplied with NH (relative growth rate (RGR) = 0.05 g·g ·d ), but at the high P concentration, the NH -fed plants had 37% lower growth rates and shorter roots and stems. At the high P level, the NH NO -fed plants had the highest RGR (0.04 g·g ·d ). The mineral nutrient concentrations in the plant tissues were only slightly affected by N form and P concentration, although the P concentrations in the plant tissue of the NO -fed plants supplied with the high P concentration was 26% higher compared to the low P concentration plants. The N concentrations in the plant tissues did not vary between treatments. The results showed that the optimum N form for the plant growth and biomass productivity of hybrid Napier grass depends on P level. Hybrid Napier grass may be irrigated by treated wastewater containing high concentrations of N and P, but future studies are needed to evaluate biomass production and composition when irrigating with real wastewater from animal farms.
机译:本研究旨在评估氮(N)形式和磷(P)水平对杂交纳米尔草的生长和矿物成分的影响。实验植物在温室条件下在温室条件下以不同的n形(NO,NH NO,NH;500μm)和P浓度(100和500μm)生长42天。分析了植物组织中的生长速率,形态,颜料和矿物质营养物质。在低p浓度下,在NH供应的植物中发现较好的生长(相对生长速率(RGR)= 0.05g·g·d),但在高p浓度下,NH -FED植物的生长降低了37%费率和较短的根和茎。在高P水平下,NH NO -FED植物具有最高的RGR(0.04g·g·d)。植物组织中的矿物质营养浓度仅受N形和P浓度略微影响,尽管与低P浓度植物相比,NO-FED植物的植物组织中的P浓度较高26% 。植物组织中的n浓度在治疗之间没有变化。结果表明,杂种纳皮尔草植物生长和生物质生产率的最佳N形式取决于P级。通过含有高浓度N和P的处理废水可以灌溉杂种纳皮尔草,但是需要进行未来的研究来评估生物质生产和组合物,当用动物农场灌溉真实废水时。

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