4.7 Article

Responses of Root Characteristic Parameters and Plant Dry Matter Accumulation, Distribution and Transportation to Nitrogen Levels for Spring Maize in Northeast China

期刊

AGRICULTURE-BASEL
卷 11, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/agriculture11040308

关键词

maize; nitrogen level; root characteristic parameters; dry matter accumulation; distribution and transport; yield

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资金

  1. Excellent Youth Foundation of Heilongjiang Province of China [JC2017008]
  2. China Agriculture Research System [CARS-02-34]

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This study investigated the effects of nitrogen levels on root characteristics and plant dry matter accumulation, distribution, and transportation in two maize hybrids. The results showed that nitrogen levels significantly influenced root parameters and dry matter accumulation, with high nitrogen promoting dry matter transport to grains. The study provides theoretical and practical guidance for maize production techniques.
Improving nitrogen use efficiency is a significant scientific problem to be solved. Two maize hybrids JD27 (Jidan 27) and SD19 (Sidan 19) were selected to study the effects of nitrogen levels on root characteristic parameters and plant dry matter accumulation, distribution and transportation. We set five different nitrogen levels, which were nitrogen deficiency (000N), low nitrogen (075N), medium nitrogen (150N), high nitrogen (225N) and excessive nitrogen (300N). The results showed that the root length and root surface area of JD27 were significantly higher than those of SD19 under 075N. With the increase of nitrogen levels, the root difference among varieties gradually decreased. The root length, projection area, total surface area and total volume reached the maximum values at silking stage. The average root diameter kept stable or decreased slowly with the growth stage. The dry matter accumulation of JD27 was higher than that of SD19 at all growth stages. Increasing the amount of nitrogen fertilizer can promote the transport of dry matter to grain and improve dry matter transport efficiency after anthesis. Under the treatment of medium and high nitrogen fertilizer, maize was easy to obtain a higher yield, but excessive nitrogen fertilizer inhibited the increase of yield. This study provides theoretical and practical guidance for maize production techniques.

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