首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Effects of inorganic nitrogen form on growth, morphology, N uptake, and nutrient allocation in hybrid Napier grass (Pennisetum purpureum x Pennisetum americanum cv. Pakchong1)
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Effects of inorganic nitrogen form on growth, morphology, N uptake, and nutrient allocation in hybrid Napier grass (Pennisetum purpureum x Pennisetum americanum cv. Pakchong1)

机译:无机氮形态对杂种长剑草生长,形态,氮素吸收和养分分配的影响(狼尾草x美国狼尾草cv。Pakchong1)

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摘要

Plant cultivars with high biomass production may have a high potential for being used in integrated water treatment and plant production system. The highly productive hybrid Napier grass cultivar, Pennisetum purpureum x Pennisetum americanum cv. Pakchong1, may be a candidate species for being used in such systems. We studied the effects of inorganic nitrogen form (NH4+, NH4NO3 or NO3-) on growth, morphology, N uptake, water content and mineral allocation in this species under hydroponic conditions at equimolar concentrations (500 mu mol NL-1). Generally, the N-form significantly affected growth, biomass allocation and tissue nutrient and mineral composition of the plants. The hybrid Napier grass grew better on NH4+ compared to NO3-, and the plants supplied with NH4+ contained three times more chlorophylls than plants supplied with NO3- alone or NO3- combined with NH4+. The morphology of the plants was, however, not affected by N source, except for the shoot to root ratio, which was lower in NH4+-fed plants. The relative water content of the leaves was lowest in the NH4+-fed plants, but the transpiration rate was not affected, indicating that NH4+ nutrition and the associated low tissue concentration of K had negative effects on the water use efficiency of the plants. The study suggests that this hybrid Napier grass cultivar may be a new candidate species for use in integrated water treatment and plant production systems. (C) 2014 Elsevier B.V. All rights reserved.
机译:具有高生物量生产的植物栽培种可能具有用于集成水处理和植物生产系统的巨大潜力。高产杂种纳皮尔草品种,Penisesetur purpureum x Pennisetum americanum cv。 Pakchong1,可能是在此类系统中使用的候选物种。我们研究了在等渗浓度(500μmol NL-1)的水耕条件下,无机氮形态(NH 4+,NH 4 NO 3或NO 3-)对其生长,形态,氮吸收,水含量和矿物质分配的影响。通常,N型显着影响植物的生长,生物量分配以及组织营养和矿物质组成。与NO3-相比,杂种纳皮草草在NH4 +上的生长更好,并且供应NH4 +的植物的叶绿素比单独供应NO3-或将NO3-与NH4 +结合的植物多三倍。但是,植物的形态不受氮源的影响,除了芽对根的比率外,根比在饲喂NH4 +的植物中较低。饲喂NH4 +的植物叶片的相对含水量最低,但蒸腾速率没有受到影响,这表明NH4 +营养和相关的低K浓度钾素对植物的水分利用效率具有负面影响。研究表明,这种杂种纳皮尔草品种可能是用于综合水处理和植物生产系统的新候选物种。 (C)2014 Elsevier B.V.保留所有权利。

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