MORPHOLOGICAL AND RADICAL PARAMETERS ASSOCIATED WITH THE SEEDLINGS QUALITY OF Anadenanthera peregrina (L.) Speg. IN DIFFERENT SUBSTRATES
DOI:
https://doi.org/10.5380/rf.v50i3.61577Palavras-chave:
angico-vermelho, root regeneration potential, rootsResumo
Morphological and Radical Parameters Associated with the Seedlings Quality of Anadenanthera peregrina (L.) Speg.in Different Substrates. In this research, we evaluated the effects of different substrate formulations on the quality of angico-vermelho seedlings (Anadenanthera peregrina (L.) Speg). The tested substrates corresponded to eight different formulations: Bioplant®, Carolina Soil, Coffee husk, Coconut fiber and Vermiculite. In the nursery phase, the following were evaluated: height of the aerial part (H); neck diameter (D); fresh and dry biomass of the aerial parts and radical system; dickson quality index (IQD); number of roots regenerated in tubes; and length of roots regenerated in boxes. In the field phase, the following were evaluated: survival; crown diameter; number of lateral roots; and length of the pivoting root. To produce seedlings, a completely randomized design with eight treatments and four replications was used, and for the evaluation of the root regeneration potential (P.R.R.), six replications were used. In the field, the experimental arrangement consisted of subdivided plots, arranged in randomized blocks with four replications. Seedlings with higher averages for most of the evaluated characteristics were produced in the formulation of substrate containing 50% Bioplant® + 30% coffee husk + 20% coconut fiber. The values related to the IQD were positively related to the substrate formulations containing Bioplant®, coffee husk and coconut fiber, which were also positively associated with P.R.R. The substrate formulations containing Bioplant®, coffee husk and coconut fiber resulted in seedlings with a higher P.R.R., evaluated in boxes. Substrates containing Bioplant®, Carolina Soil, coffee husk and coconut fiberfavored the production of seedlings with a better radical system and, consequently, better in the field.
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