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Critical Nitrogen Level Determination in Curcuma alismatifolia Gagnep.

机译:姜黄的临界氮水平测定。

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We determined the critical nitrogen (N) level in field-grown Curcuma alismatifolia Gagnep. by applying N at a rate of 3.75, 7.5, 15, 30, and 60 g N plant(-1) as urea. Plant growth and N critical levels were determined 105 d after planting (flowering stage). To establish critical N levels in plant tissue, the relationship between rhizome yield and the N concentrations in the first fully expanded leaf from the bottom of 1st order shoots as investigated. The rate of N application had a significant effect on growth, plant dry weight, leaf N concentrations, and leaf chlorophyll content. Leaf N concentrations were similar for all treatments up to 30 g N plant(-1), but increased when N was applied at 60 g N plant(-1). Rhizome yields increased with increasing leaf N up to about 1-1.5 % N, but were relatively constant at a higher leaf N. The critical leaf N level response to 90 % of the maximum yield was 1.51 %. Most N concentrations in the various tissues increased with increasing N supply. The method for determining critical N levels provides an accurate description of the relationship between leaf N and rhizome yield and may be used by growers to predict the N requirement of Curcuma plants.
机译:我们确定了田间种植的姜黄姜的临界氮含量。通过以3.75、7.5、15、30和60 g N植物(-1)的比例施用N作为尿素。播种后105 d(开花期)测定植物生长和氮临界水平。为了确定植物组织中的关键氮水平,对根茎产量与从一阶芽底部开始的第一个完全膨胀的叶片中的氮浓度之间的关系进行了研究。施氮量对生长,植物干重,叶片氮浓度和叶片叶绿素含量有显着影响。在不超过30 g N植物(-1)的所有处理中,叶片N浓度均相似,但是当在60 g N植物(-1)上施氮时,叶片N浓度会增加。根茎产量随叶片氮含量的增加而增加,最高达到1-1.5%N,但在较高叶片N时相对恒定。对最大产量的90%的临界叶片氮水平响应为1.51%。各种组织中的大多数N浓度都随着N供应的增加而增加。确定临界氮含量的方法可准确描述叶片氮素与根茎产量之间的关系,种植者可利用其预测姜黄植物的氮素需求。

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