Evaluating rice lipid content, yield, and quality in response to nitrogen application rate and planting density

播种 脂肪酸 化学 移植 氮气 农学 光合作用 叶绿素 饱和脂肪酸 动物科学 食品科学 园艺 生物 生物化学 有机化学
作者
Guangyi Chen,Congmei Li,Mingming Hu,Xingmei He,Hong Yang,Qiuqiu Zhang,Chaoyue Wu,Qiang Duan,Ligong Peng,Yao Zhang,Ziyu Li,Yuyuan Ouyang,Yan Lan,Tian Li
出处
期刊:Frontiers in Plant Science [Frontiers Media SA]
卷期号:15
标识
DOI:10.3389/fpls.2024.1469264
摘要

To investigate the effects of nitrogen (N) application rate and planting density (D) on the contents of lipid and free fatty acid, fatty acid composition, yield and quality of rice grain, a field experiment was conducted using Koshihikari (japonica) as experimental material from 2021 to 2022 with three N levels (90, 150 and 210 kg ha -1 , denoted as N1, N2 and N3, respectively) and three transplanting densities (19.0 × 10 4 , 26.7 × 10 4 and 40.0 × 10 4 plants ha -1 , denoted as D1, D2 and D3, respectively). The results showed that N application rate and planting density had highly significant impacts only on the contents of free fatty acid and saturated fatty acid, respectively. Increased N and planting density enhanced the contents of lipid (29.41 mg g -1 ) and free fatty acid (21.47%). The highest values were obtained under N3D3 increasing by 7.02% and 3.23 percentage points, respectively, compared to other treatments. No significant differences in lipid content were found among treatments, whereas free fatty acid exhibited significant differences. The unsaturated fatty acid content increased with increasing N but first decreased and then increased with increasing planting density, while saturated fatty acid content showed the opposite trend. Appropriate N level and planting density improved the relative chlorophyll content and net photosynthetic rate of rice flag leaves, as well as increased grain yield, effective panicle number and spikelete number per panicle, but decreased the seed setting rate. Under N2D2, the relative chlorophyll content and net photosynthetic rate remained relatively high throughout the grain filling stage, resulting in the highest grain yield, with increases of 43.87-47.03% compared to other treatments. A moderate N level improved the milling quality of rice, while increased planting density reduced it. However, both increased N and planting density reduced the appearance quality and cooking and eating quality of rice. Overall, the effects of increasing N application rate and planting density on enhancing rice lipid and free fatty acid contents were limited. A combination of 150 kg ha -1 N application rate and 26.7 × 10 4 plants ha -1 was recommended for achieving relatively higher yield, lipid content and better grain quality.
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