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Seasonal variation in biomass and nitrogen content of fine roots of bead tree (Melia azedarach) under different nutrient levels in an agroforestry system

机译:农林复合系统中不同养分水平下珠树细根生物量和氮含量的季节性变化

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The understanding of seasonal fine root distribution in agroforestry systems is important for assessing the root competition between tree and intercrop roots. Growth parameters of bead tree (Melia azedarach Linn.) were evaluated under different levels of N and P in an agroforestry system (pearl millet-wheat rotation under bead tree) in Punjab. Depth-wise (0-15, 15-30, 30-45 and 45-75 cm) distribution of fine root biomass (FRB), concentration and accumulation of N in the fine roots of bead trees were determined during four months (April, July, October and January) representing four seasons in the plantation in its 5th year of age under different nutrient levels. Leaf N concentration was also determined. The diameter at breast height (DBH) and height of 5 year old trees (in January 2010) were the highest (18.14 cm and 14.83 m, respectively) with the application of N and P @ N40P25, N60P37.5, N80P50, N100P62.5 and N120P75 kg ha(-1) during 1st, 2nd, 3rd, 4th and 5th year, respectively. Significant variations (P<0.01) were observed for above parameters among soil depths, months and nutrient levels. Fine root biomass and N accumulation were significantly higher in July and October than April and January. These were lowest in unfertilized trees (31.1 g m(-2) and 141 mg m(-2), respectively) and highest at the highest level of nutrient application (94.2 g m(-2) and 1102 mg m(-2), respectively) in the soil profile (0-75 cm depth). More than 30% FRB and 37% N accumulation were restricted to 0-15 cm soil depth. Root and leaf N concentration were highest in April (0.96 and 1.10%, respectively) and lowest in January (0.67 and 0.94%, respectively). These also increased significantly (P<0.01) with the application of nutrients. The study signifies that the root competition for moisture and nutrients between tree and intercrop roots would be higher in summer crops than the winter crops.
机译:对农林业系统中季节性细根分布的理解对于评估树木和间作根之间的根系竞争非常重要。在旁遮普邦的农林业系统(珠子树下的花生-小米-小麦轮作)中,在氮和磷含量不同的条件下评估了珠子树(Melia azedarach Linn。)的生长参数。在四个月内(4月,4月,4月,10月, 7月,10月和1月)代表了不同营养水平下5年龄人工林的四个季节。还测定了叶氮浓度。施用N和P @ N40P25,N60P37.5,N80P50,N100P62时,胸高(DBH)直径和5岁树的高度(分别为2010年1月)最高(分别为18.14 cm和14.83 m)。第一,第二,第三,第四和第五年分别为5和N120P75 kg ha(-1)。在土壤深度,月份和养分含量之间,上述参数存在显着差异(P <0.01)。 7月和10月的细根生物量和氮积累显着高于4月和1月。在未受精的树木中最低(分别为31.1 gm(-2)和141 mg m(-2)),在最高施肥水平下分别最高(分别为94.2 gm(-2)和1102 mg m(-2))。 )在土壤剖面中(深度为0-75厘米)。超过30%的FRB和37%的氮积累被限制在0-15厘米的土壤深度。根和叶N浓度在4月最高(分别为0.96和1.10%),最低在1月(分别为0.67和0.94%)。随着养分的施用,这些也显着增加(P <0.01)。该研究表明,夏季作物比冬季作物在树根和间作作物根之间对水分和养分的根竞争更高。

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