施氮后冬季荠菜的氮吸收和利用效率

Nitrogen Pub Date : 2024-06-06 DOI:10.3390/nitrogen5020033
Stephen Gregg, R. W. Gesch, A. Garcia y Garcia
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摘要

中西部上游地区的玉米(Zea mays L.)和大豆(Glycine max (L.) Merr.)轮作产量很高。然而,这些狭窄的轮作之后是漫长的冬季休耕期。随着时间的推移,这导致了农业生态功能的丧失,包括硝态氮(NO3-N)对地下水污染的加剧。冬季荠菜 [Camelina sativa (L.) Crantz] 是可以在休耕期间生长的第三种作物,但其氮素(N)的利用和效率尚不十分清楚。在美国中西部上部的三个地方进行了一项研究,以确定冬季荠菜对施氮和施氮时间的吸收和利用效率。农艺效率 (AE)、内部效率 (IE) 和氮回收效率 (NRE) 有随着氮肥用量的增加而降低的趋势,尤其是在大多数情况下超过 67 千克氮公顷-1 时。不同施氮率下的总吸氮量从 34 千克/公顷到 176 千克/公顷不等,平均为施氮量的 1.5 倍。根据观察到的氮利用效率随氮肥施用量增加而下降的情况,与更高的氮肥施用量相比,67 千克每公顷氮肥的施用量似乎能兼顾氮肥的高效利用、高产和较低的环境风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nitrogen Uptake and Use Efficiency in Winter Camelina with Applied N
Maize (Zea mays L.) and soybean [Glycine max (L.) Merr.] rotations in the upper Midwest are highly productive. However, these narrow rotations are followed by a long winter fallow period. Over time, this has contributed to the loss of agroecological functioning, including increased ground water pollution from nitrate-nitrogen (NO3–N). Winter camelina [Camelina sativa (L.) Crantz] is a third crop that could grow during this fallow period, but its nitrogen (N) use and efficiency are not well known. A study was conducted at three locations in the U.S. upper Midwest to determine the N uptake and use efficiency of winter camelina in response to applied N and N application timing. Agronomic efficiency (AE), internal efficiency (IE), and nitrogen recovery efficiency (NRE) tended to decrease with increasing N rates, especially beyond 67 kg N ha−1 in most instances. Total N uptake ranged from 34 to 176 kg ha−1 across N rates, and was on average 1.5 fold the applied rate. Based on the observed decline in N use efficiency with increasing N rates, an application rate of 67 kg N ha−1 appears to balance efficient N use, high yield, and lower environmental risk compared to higher N rates.
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