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Soil science and plant nutrition (Tokyo), 2020-05, Vol.66 (3), p.438-448
2020

Details

Autor(en) / Beteiligte
Titel
Organic farming promotes selective uptake of glycine over nitrate uptake by pakchoi
Ist Teil von
  • Soil science and plant nutrition (Tokyo), 2020-05, Vol.66 (3), p.438-448
Ort / Verlag
Kyoto: Taylor & Francis
Erscheinungsjahr
2020
Link zum Volltext
Quelle
Taylor & Francis Journals Auto-Holdings Collection
Beschreibungen/Notizen
  • Understanding how plants use of various nitrogen (N) sources is important for improving plant N use efficiency in organic farming systems. This study investigated the effects of farming management practices (organic and conventional) on pakchoi short-term uptake of glycine (Gly), nitrate (NO 3 − ) and ammonium (NH 4 + ) under two N level conditions. Results showed that plant N uptake rates and N contributions from the three N forms in the low N (0.15 μg N g −1 dry soil) treatment did not significantly differ between the organic and conventional soils, except the significantly greater Gly contribution in organic soil at 24 h after tracer addition. Under high N (15 μg N g −1 dry soil) conditions, the N uptake rates, uptake efficiencies, and N contributions of Gly and NH 4 + -N were significantly greater in pakchoi cultivated in the organic soil compared to conventional soil, whereas the N uptake rates and N contributions from NO 3 - -N decreased in pakchoi cultivated in the organic soil. The greater Gly-N uptake in plants grown in high-N treated organic soil may be related to the greater gross N transformation, Gly turnover rate and the increased expression of an amino acid transporter gene BcLHT1. Intact Gly contributed at most 6% to Gly-derived N at 24 h after tracer additions, which accounting for about 1.24% of the total N uptake in organic soil. Our study suggested that Gly-N and other organic source N might serve as a more important compensatory N source for plants in organic farming.
Sprache
Englisch
Identifikatoren
ISSN: 0038-0768
eISSN: 1747-0765
DOI: 10.1080/00380768.2020.1755607
Titel-ID: cdi_informaworld_taylorfrancis_310_1080_00380768_2020_1755607

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