Nitrogen application levels based on critical nitrogen absorption regulate processing tomatoes productivity, nitrogen uptake, nitrate distributions, and root growth in Xinjiang, China

发布者:农学院发布时间:2023-12-13浏览次数:11

Nitrogen application levels based on critical nitrogen absorption regulate processing tomatoes productivity, nitrogen uptake, nitrate distributions, and root growth in Xinjiang, China

文章信息:JING Bo, SHI Wenjuan, DIAO Ming. Journal of Arid Land . 2023 ,15 (10): 1231–1244

摘要:The unreasonable nitrogenNsupply and low productivity are the main factors restricting the sustainable development of processing tomatoes. In addition, the mechanism by which the N application strategy affects root growth and nitrate distributions in processing tomatoes remains unclear. In this study, we applied four N application levels to a field(including 0N0, 200N200, 300N300, and 400N400kg/hm2) based on the critical N absorption ratio at each growth stageplanting stage to flowering stage: 22%; fruit setting stage: 24%; red ripening stage: 45%; and maturity stage: 9%. The results indicated that N300 treatment significantly improved the aboveground dry matterDM, yield, N uptake, and nitrogen use efficiencyNUE, while N400 treatment increased nitrate nitrogenNO3--Nresidue in the 20–60 cm soil layer. Temporal variations of total root dry weightTRDWand total root lengthTRLshowed a single-peak curve. Overall, N300 treatment improved the secondary root parameter of TRDW, while N400 treatment improved the secondary root parameter of TRL. The grey correlation coefficients indicated that root dry weight densityRDWDin the surface soil0–20 cmhad the strongest relationship with yield, whereas root length densityRLDin the middle soil20–40 cmhad a strong relationship with yield. The path model indicated that N uptake is a crucial factor affecting aboveground DM, TRDW, and yield. The above results indicate that N application levels based on critical N absorption improve the production of processing tomatoes by regulating N uptake and root distribution. Furthermore, the results of this study provide a theoretical basis for precise N management.


DOI: 10.1007/s40333-023-0108-2


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