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首页> 外文期刊>The Indian Journal of Agricultural Sciences >Influence of boron and organic matter on the changes in soil biological properties and yield of rape (Brassica campestris) in an aeric endoaquept
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Influence of boron and organic matter on the changes in soil biological properties and yield of rape (Brassica campestris) in an aeric endoaquept

机译:硼和有机质对高油菜内生油菜土壤生物学特性和油菜产量的影响

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摘要

Field experiments were conducted during winter seasons of 2006-07 and 2007-08 to study the influence of boron and organic matter application on the changes in soil biological properties in an aeric endoaquept (pH,7.5;organic carbon content, 0.61%; CaCl2-extractable boron 0.32 mg/kg) growing rape (Brassica campestris L.) as a test crop. The results reveal that non-symbiotic nitrogen fixing bacteria (NFB), non symbiotic nitrogen fixing capacity, phosphate solubilising micro-organisms (PSM), phosphate solubilising capacity (PSC) and microbial biomass carbon (MBC) have been found to be influenced with different treatments, being recorded highest (90.45, 69.29 x 10(5)/g soil; 11.73, 9.63; 80.29, 63.28 mg of N-2 fixed/g of soil/g of sucrose; 0.038, 0.032 mg/g dry soil and 159.48, 149.58 mu g/g dry soil respectively) in the treatment T, where lower level (0.5 kg/ha) of boron as calbor and organic matter at 5 tonnes/ha was applied along with recommended levels of N, P2O5 and K2O (80:40:40) in both rhizosphere (R) and non-rhizosphere (NR) soils. The yield of rape was also recorded highest (8.95 q/ha) in the treatment T-4 (lower level (0.5 kg/ha) of boron as calbor,organic matter at 5 tonnes/ha and recommended levels of N, P2O5 and K2O (80:40:40). From the stepwise technique of multiple regression it was revealed that the NFB at R and NR, PSC at R and NR, PSM at R and NR and MBC at NR are only important predictors which can explain 99% of total variance.
机译:在2006-07和2007-08的冬季进行了田间试验,研究了硼和有机质的施用对航空内吸液(pH,7.5;有机碳含量,0.61%; CaCl2-)中土壤生物学特性变化的影响。可提取的硼(0.32 mg / kg)生长的油菜(Brassica campestris L.)作为试验作物。结果表明,非共生固氮细菌(NFB),非共生固氮能力,磷酸盐增溶微生物(PSM),磷酸盐增溶能力(PSC)和微生物生物量碳(MBC)受到不同的影响。处理记录最高(90.45,69.29 x 10(5)/ g土壤; 11.73,9.63; 80.29,63.28 mg N-2固定/ g土壤/ g蔗糖; 0.038,0.032 mg / g干燥土壤和159.48 ,在处理T中分别施用了149.58μg / g干燥土壤),其中施用了较低水平的硼(0.5 kg / ha)和5吨/公顷的有机物以及建议的N,P2O5和K2O含量(80 :40:40)在根际(R)和非根际(NR)的土壤中。在处理T-4的硼肥中,油菜的产量也最高(8.95 q / ha)(较低水平(0.5 kg / ha)),有机物含量为5吨/ ha,推荐的N,P2O5和K2O含量为(80:40:40)。从多元回归的逐步技术中发现,R和NR的NFB,R和NR的PSC,R和NR的PSM和NR的MBC只是重要的预测因子,可以解释99%总方差。

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