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Effects of vertical distribution of soil inorganic nitrogen on root growth and subsequent nitrogen uptake by field vegetable crops

机译:土壤无机氮垂直分布对大田蔬菜作物根系生长及随后吸收氮的影响

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摘要

Information is needed about root growth and N uptake of crops under different soil conditions to increase nitrogen use efficiency in horticultural production. The purpose of this study was to investigate if differences in vertical distribution of soil nitrogen (Ninorg) affected root growth and N uptake of a variety of horticultural crops. Two field experiments were performed each over 2 years with shallow or deep placement of soil Ninorg obtained by management of cover crops. Vegetable crops of leek, potato, Chinese cabbage, beetroot, summer squash and white cabbage reached root depths of 0.5, 0.7, 1.3, 1.9, 1.9 and more than 2.4 m, respectively, at harvest, and showed rates of root depth penetration from 0.2 to 1.5 mm day)1 C)1. Shallow placement of soil Ninorg resulted in greater N uptake in the shallow-rooted leek and potato. Deep placement of soil Ninorg resulted in greater rates of root depth penetration in the deep-rooted Chinese cabbage, summer squash and white cabbage, which increased their depth by 0.2–0.4 m. The root frequency was decreased in shallow soil layers (white cabbage) and increased in deep soil layers (Chinese cabbage, summer squash and white cabbage). The influence of vertical distribution of soil Ninorg on root distribution and capacity for depletion of soil Ninorg was much less than the effect of inherent differences between species. Thus, knowledge about differences in root growth between species should be used when designing crop rotations with high N use efficiency.
机译:需要有关在不同土壤条件下作物根系生长和氮吸收的信息,以提高园艺生产中的氮利用效率。这项研究的目的是调查土壤氮素(Ninorg)垂直分布的差异是否影响了各种园艺作物的根系生长和氮素吸收。在2年中,分别进行了两次田间试验,分别对通过覆盖作物的管理而获得的Ninorg浅层或深层土壤进行了处理。韭菜,马铃薯,大白菜,甜菜根,西葫芦和白菜的蔬菜作物在收获时的根深分别达到0.5、0.7、1.3、1.9、1.9和2.4 m以上,并且根深渗透率从0.2开始至1.5毫米一天)1 C)1。浅层土壤Ninorg会导致根部较浅的韭菜和马铃薯吸收更多的N。土壤Ninorg的深层放置使深根大白菜,西葫芦和白菜的根深穿透率更高,这使它们的深度增加了0.2-0.4 m。在浅土层(白菜)中,根的频率降低,而在深土层(大白菜,西葫芦和白菜)中的根频率增加。土壤Ninorg的垂直分布对根系分布和土壤Ninorg耗竭能力的影响远小于物种间固有差异的影响。因此,在设计氮素利用效率高的作物轮作时,应使用有关物种之间根系生长差异的知识。

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