Brief summary. No one has contributed a brief summary to this page yet. Explore what EOL knows about Caesalpinia ebano. Add a brief summary to this page. Biological inoculation and organic amendments as strategies to improve ebony ( Caesalpinia ebano) tree-seedling growth at the nursery. Inoculación biológica y. Caesalpinia ebano H. Karst. Search in The Plant List Search in IPNI Search in Australian Plant Name Index Search in NYBG Virtual Herbarium Search in.

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For example, in the unamended control the P content was 2.

Timberline Exotic Hardwoods | Specialist Timber – Ebano

Cofie O and Veenhuizen R. At this dose increases in substrate fertility parameters were more moderate, particularly in P and B.

The results indicated that the addition of organic amendments promoted plant growth significantly. Mycorrizhal dependency, inoculum potential and habitat preference of native woody species in south Brazil.

Caesalpinia ebano H.Karst.

International Journal of Hygiene and Environmental Medicine There were significant differences between them. Nova Science, New York.

Agrononomia Mesoamericana 25 2: Data analysis The experimental design was completely random; the treatments were a factorial arrangement of 7×2. Fertilization is one of the most important aspects in early stages of plant growth, and that is why guidelines are needed for tree seedling production, so caesalppinia contribute to the reduction of mortality of planted individuals and improve the process of adaptation in planting sites Oliet et al.


No significant effects were detected with interaction amendment x inoculum. Mycorrhizal dependence of barcino Clusiaceae: This could also result in a satisfactory plant growth and increased resistance to pests and diseases Veresoglou et al.

An additional worth to mention is the corrective effect of the organic amendment on the exchangeable cation ratios in soil used as substrate see control in Table 1which affects plant performance Pedrol et al. Contrarily, the organic amendments can also carry pathogenic microorganisms that have potential hazard on human, animal and plants.

Disposing these materials prevents their use, and thus generate large volumes for final disposal that are improperly deposited in different sites, increasing pollution in cities Cofie and Veenhuizen, Eabno example, Acacia mangium, Leucaena leucocephala and Jacaranda mimosifolia are pioneer species and exhibit high mycorrhizal dependency Habte and Manjunath, ; Habte and Soedarjo, Ebony Caesalpilinia ebano is one of the tree species with a high potential in urban silviculture given its caeaslpinia growth, urban environment adaptability, an esthetical appeal Arroyave et al.

After a growth period of days it was measured: The seeds were supplied by the nursery of the Foundation Botanical Garden of Medellin.

Organic amendments used in this work were effective in promoting nutrient availability in the substrate, plant nutrition and growth of C. This may be due to at least two factors: It is very likely that lower doses increase as good as those caesalponia with P and RV.


Editorial L Vieco, Medellin.

Caesalpinia ebano H.Karst. (En Peligro) – Fabaceae

Soil fertility and spontaneous revegetation in lignite spoil banks under different amendments. The addition of composted plant residues also generated significant effects on height, that is, with RV20 the effect was 2.

The improvement in the nutrient availability and the nutrient ratios certainly explains why plants grew better when organic amendments were applied.

This paper supports the alternative use of organic amendment generated in the city for improving plant nutrition and growth in urban silviculture.

Recent municipal administrations of Medellin have realized the importance of maintaining woodland and gardens of the city, and have allocated financial resources for its establishment and care AMVA, In contrast, plant species that correspond to initial stages of the succession called pioneering or early successional plants have high mycorrhizal dependency; lighter and more porous cafsalpinia.

Canadian Journal of Botany Droffner and Brinton, Stover R and Simmonds N. It is clear that the excess of soil exchangeable Mg can inhibit the plant K uptake Pedrol et al.