4.7 Article

Nanobubbles promote nutrient utilization and plant growth in rice by upregulating nutrient uptake genes and stimulating growth hormone production

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 800, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2021.149627

关键词

Nanobubbles; Rice; Crop yield; Sustainable green agriculture; Reducing fertilizer; Nutrient use efficiency

资金

  1. Fudan Zhangjiang Institute Guide Fund [ZJXDJJ2019001]
  2. National Natural ScienceFoundation of China [51978489]
  3. United States Department of Agriculture (USDA)
  4. National Institute of Food and Agriculture, AFRI project [2018-07549]

向作者/读者索取更多资源

The study demonstrates that irrigation with nanobubble water can significantly increase rice yield, reduce fertilizer usage, and enhance plant growth and nutrient uptake.
Excessive application of chemical fertilizers can lead to serious environmental problems. In this study, we ex-plored the use of nanobubble water for irrigation of crop rice as a means of reducing fertilizer use. The effect of nanobubbles on plant growth and nutrient uptake was evaluated in the laboratory, while crop yield and the ef-ficiency of fertilizer use were evaluated in a field study. The laboratory experiments indicated that nanobubbles significantly improve plant height and root length in rice seedlings. Nanobubble treatment stimulated synthesis of the growth hormone gibberellin and upregulated the plant nutrient absorption genes OsBT, PiT-1 and SKOR, resulting in increased nutrient uptake and utilization by the roots. The field experiments verified the laboratory observations, showing that nanobubble treatment significantly increases rice yield by almost 8% when using sim-ilar levels of fertilizer as controls. Moreover, the same yield as controls was achieved with approximately 25% less fertilizer. As well as their impact on growth hormones and nutrient absorption genes, nanobubbles, due to hydrophobic and surface charge properties, enhance the release and absorption of soil nutrients, thereby reducing fertilizer demand. Overall, this study highlights a new and sustainable water irrigation strategy for enhancing crop yield and reducing chemical fertilizer waste. (c) 2021 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).

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