Slow-release boron fertilizer improves yield and nutritional profile of Beta vulgaris L. grown in Northeast China by increasing boron supply capacity

文献类型: 外文期刊

第一作者: Wu, Zhenzhen

作者: Wu, Zhenzhen;Zhao, Xiaoyu;Li, Meiyu;Huo, Jialu;Yang, Songlin;Song, Baiquan;Wu, Zhenzhen;Zhao, Xiaoyu;Li, Meiyu;Huo, Jialu;Yang, Songlin;Song, Baiquan;Wu, Zhenzhen;Zhao, Xiaoyu;Li, Meiyu;Huo, Jialu;Yang, Songlin;Song, Baiquan;Wu, Zhenzhen;Zhao, Xiaoyu;Li, Meiyu;Huo, Jialu;Yang, Songlin;Song, Baiquan;Yong, Jean Wan Hong;Sehar, Shafaque;Adil, Muhammad Faheem;Riaz, Muhammad;Verma, Krishan K.;Verma, Krishan K.

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关键词: yield; quality; novel fertilizer; sugar beet; black soil; albic soil

期刊名称:FRONTIERS IN PLANT SCIENCE ( 影响因子:4.8; 五年影响因子:5.7 )

ISSN: 1664-462X

年卷期: 2024 年 15 卷

页码:

收录情况: SCI

摘要: The northeastern part of China is a traditional sugar beet cultivation area where the soils are classified generally as the black and albic soil types with low boron (B) availability. Boron fertilizer can increase soil B content and significantly improve crop yield and quality. At present, the effects of slow-release B fertilizer on beet root yield and quality remain unclear. Two sugar beet varieties KWS1197 and KWS0143 were selected as the research materials; and biologically evaluated with three dosage rates of 0, 15, and 30 kg ha-1 in two soil types. Results showed that slow-release B fertilizer (30 kg ha-1) improved sugar beet net photosynthetic rate (13.6%) and transpiration rate (9.8%), as well as enhanced dry matter accumulation and the transfer to underground parts (23.1%) for higher root yield (1.4 to 9.7% in black soil and 3.5-14.2% in albic soil). Specifically, boron fertilizer greatly increased root B accumulation, as evidenced by decreasing amino N and Na contents alongside increasing surose (Pol) content. Slow-release B fertilizer increased white sugar yield by 3.5 to 35.7% in black soil and 5.8 to 20.8% in albic soil. In conclusion, applying slow-release B fertilizer is an effective strategy to increase sugar beet yield and quality in northeast China, with a recommended application rate of 30 kg ha-1. These findings established a baseline for formulating effective and futristic fertilizer for sugar beet.

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