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Evaluation of the effectiveness of soil-applied plant derivatives of Meliaceae species on nitrogen availability to peach trees

机译:Mel科植物土壤应用植物衍生物对桃树氮素有效性的评价

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We assessed the effect of soil-applied derivatives of melia (Melia azedarach L.) and neem (Azadirachta indica A. Juss) on nitrogen (N) soil availability, root uptake and peach (Prunus persica L.) growth. First we evaluated the effectiveness of experimentally prepared amendments made with fresh ground melia leaves or commercial neem cake incorporated into the soil as nitrification inhibitors, then we evaluated the effect of fresh ground melia fruits and neem cake on growth and N root uptake of potted peach trees, and on soil microbial respiration. Soil-applied fresh ground melia leaves at 10 and 20gkgp# of soil as well as commercial neem cake (10gkgp#) were ineffective in decreasing the level of mineral N after soil application of urea-N as a source of mineral N, rather they increased soil concentration of nitric N and ammonium N. The incorporation into the soil of fresh ground melia fruits (at 20 and 40gkgp#) and neem cake (at 10 and 20gkgp#) increased N concentration in leaves of GF677 peachcalmond (Prunus amygdalus) hybrid rootstock alone or grafted with one-year-old variety Rome Star peach trees. An increase in microbial respiration, leaf green color and plant biomass compared to the control trees were also observed. The Meliaceae derivatives did not affect, in the short term (7 days), N root uptake efficiency, as demonstrated by the use of stable isotope p#eN, rather they promoted in the long term an increase of soil N availability, N leaf concentration and plant growth.
机译:我们评估了土壤施用的麦莉(Melia azedarach L.)和印ne(Azadirachta indica A. Juss)衍生物对氮(N)土壤有效性,根吸收和桃(Prunus persica L.)生长的影响。首先,我们评估了用新鲜磨碎的胡lia叶或商业印em饼作为硝化抑制剂掺入土壤的实验制备的改良剂的有效性,然后评估了新鲜磨碎的胡lia果和印em饼对盆栽桃树生长和N吸收的影响,以及对土壤微生物的呼吸作用。在土壤中施用10和20 gkgp ##的新鲜地面me叶以及商业印em饼(10gkgp#)不能有效地降低土壤中的氮素含量,而尿素-N作为氮素的来源硝态氮和铵态氮在土壤中的浓度。新鲜碎米lia果实(20和40gkgp ##)和印em饼(10和20gkgp ##)的掺入增加了GF677桃子杏仁(李桃)杂交砧木叶片中的氮含量。单独或嫁接一岁的罗马星桃树。与对照树相比,还观察到了微生物呼吸,叶绿色和植物生物量的增加。如通过使用稳定同位素p#eN所证明的,Meliaceae衍生物在短期(7天)内不影响N根吸收效率,而是长期促进了土壤N有效性,N叶片浓度的增加和植物生长。

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