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首页> 外文期刊>Acta Horticulturae >Nitrogen efficiency and yield responses of two 'early' globe artichoke cultivars to nitrogen fertilization
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Nitrogen efficiency and yield responses of two 'early' globe artichoke cultivars to nitrogen fertilization

机译:两种“早期”全球朝鲜蓟品种对氮肥的氮效率和产量应答

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摘要

Nitrogen (N) fertilization is extremely important in determining horticultural crop growth and yield performance. However, the demand for environmentally sustainable production systems leads modern agriculture to optimize the efficiency of N fertilizer applications. Among the high N-demanding horticultural crops, globe artichoke deserves particular attention since farmers often apply N rates up to 700 kg ha1 with possible environmental impact In order to minimize N supply while maintaining optimal agronomic performances, this study investigated the effects of three N fertilizer rates (0-200 and 400 kg ha1, referred to as N0-N2oo and N400, respectively) on crop performances of two 'early* globe artichoke cultivars ('Violet de Provence' and Tema 2000'). The field trial was conducted during 2013-14 on the Catania Plain (Sicily), a typical area for globe artichoke cultivation in Italy. Heads were weekly harvested at the marketable stage, weighted to determine their fresh weight and then oven-dried to determine their dry matter content. The following parameters were also calculated: earliness, total yield, harvest index (HI) and N agronomic efficiency (Nae). In addition, chlorophyll content was recorded at 82-132 and 181 days after planting (DAP). Theresults indicated that N supply strongly affected all the above-mentioned traits. Compared to control (No), earliness and harvest index increased up to N200, while they significantly decreased with N400- Both cultivars reported a significant reduction ofNae due to the increase in N supply from 200 (2.3 A kg ha-1 DW kg-1) to 400 kg ha1 (0.6 A kg ha1 DW kg*1). Only N2oo increased the fresh weight of main, first and second order heads than No. In addition, regardless of measurement time, Nzoo also ensuredan optimal chlorophyll content (as SPAD units). Finally, it emerged that it could be possible to decrease nitrogen supply from 400 to 200 kg ha-1, while increasing at the same time agronomic performances of the crop and ensuring a more environmentally sustainable production.
机译:氮气(n)施肥在确定园艺作物生长和产量性能方面非常重要。然而,对环境可持续生产系统的需求引发了现代农业,优化了N肥应用的效率。在高苛刻的园艺作物中,全球朝鲜蓟值得特别关注,因为农民往往适用于700公斤HA1,可能的环境影响,以便在保持最佳的农艺表演的同时最小化N供应,研究了三个氮肥的影响率(0-200和400千克HA1,分别称为N0-N2OO和N400),分别为两种“早期*地球秀品种的作物性能('紫德普罗旺斯'和Tema 2000')。现场试验在2013-14期间在卡塔尼亚平原(西西里岛),是意大利地球秀丽栽培的典型区域。头部是每周收获的市场阶段,加权以确定它们的鲜重,然后烘箱干燥以确定它们的干物质含量。还计算了以下参数:重点,总产量,收获指数(HI)和N个农艺效率(NAE)。此外,叶绿素含量在种植后的82-132和181天中记录(DAP)。结果表明,N供应强烈影响所有上述特征。与对照(NO)相比,早期和收获指数增加到N200,而N400 - 对于N400而言,它们显着降低了由于200(2.3AKG HA-1 DW KG-1的N供应量增加,因此NAE的显着降低)至400公斤Ha1(0.6 a kg ha1 dw kg * 1)。只有N2oo增加了主要的主要重量,第一和二阶头的鲜重,而不是编号,无论测量时间如何,NZOO也是Ensulyan最佳叶绿素含量(作为Spad单元)。最后,它旨在将氮气供应从400〜200公斤HA-1降低,同时同时增加作物的农艺性能,并确保更环境可持续的生产。

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