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有机肥料对改善农产品品质的作用及机理 被引量:137
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作者 沈中泉 郭云桃 袁家富 《植物营养与肥料学报》 CAS CSCD 1995年第2期54-60,共7页
本文讨论了施用有机肥对西瓜,烟草和蕃茄品质的影响及其作用机理。多年试验结果表明,在等氮磷钾条件下,配施有机肥较单施化肥,有利于西瓜糖分增加;烤烟上等品率提高和改善蕃茄果实的品质。 由于有机肥料具有养分完全组成和供肥性能好,... 本文讨论了施用有机肥对西瓜,烟草和蕃茄品质的影响及其作用机理。多年试验结果表明,在等氮磷钾条件下,配施有机肥较单施化肥,有利于西瓜糖分增加;烤烟上等品率提高和改善蕃茄果实的品质。 由于有机肥料具有养分完全组成和供肥性能好,能改善作物营养并促进养分平衡,抑制高氮对品质的负作用,使供氮性能与作物需求趋向协调,有利平衡作物的碳氮代谢过程。有机肥还能影响不同内源激素浓度及比例,促进作物生长发育。 展开更多
关键词 有机肥 养分平衡 农产品 肥效
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Relationship between Leaf Micro- and Macro-Nutrients in Top Canopy Trees in a Mixed Forest in the Upper Rio Negro in the Amazon Region
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作者 M. A. Sobrado 《American Journal of Plant Sciences》 2014年第10期1423-1431,共9页
The mixed forests of the upper Rio Negro at the northern of the Amazon basin grow in oxisol soils that are extremely infertile. These areas exhibit deficiencies in several macro-nutrients, and may also be characterize... The mixed forests of the upper Rio Negro at the northern of the Amazon basin grow in oxisol soils that are extremely infertile. These areas exhibit deficiencies in several macro-nutrients, and may also be characterized by the shortage or toxic excess of some micronutrients. The overall goal of this research is to collect more comprehensive information regarding the micronutrient composition of the upper Rio Negro forests as well as discern the relationship between leaf micro- and macro-nutrients that may contribute to the homeostasis and balance of the ionome. Firstly, the nutrient composition within the oxisol soil and leaf tissues of two top canopy tree species from the mixed forests was determined. We then analyzed the relationship between leaf micronutrient composition with N and P levels of the two species and that of species inhabiting the Amazon caatinga. Extractable soil Zn, B, Mn and Cu were very low in the mixed forest. In contrast, Fe and Al levels were potentially toxic. The analysis of leaf N/P ratios revealed for the first time the co-limitation of N and P in the mixed forest. This contrasts with species from the adjacent Amazon caatinga toposequence that are characterized by strong N limitation. All micronutrients within leaves of species inhabiting the mixed forest were also found to have low concentrations. Moreover, Fe and Al were detected at concentrations well below those reported for accumulator species. This suggested that leaf ion homeostasis was maintained under potentially toxic soil Fe and Al conditions. Leaf micronutrient (Fe, Zn and B) contents mirrored that of leaf N and P contents, and comparable Fe/N, Fe/P, Zn/N, Zn/P, B/N as well as B/P ratios were found across species and forest types. Therefore, forest species exhibited the capability to maintain leaf nutrient balances under soil conditions with deficient or toxic levels of micronutrients. 展开更多
关键词 AMAZON Forests AMAZON Caatinga LEAF Ionome Homeostasis LEAF N-P and MICROnutrientS Micro-nutrient Deficiency MICROnutrientS Toxicity Mixed Forest N-P Co-Limitation plant nutrient balance Oxisol PODZOL
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