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Microencapsulated biofertilizer formulation: product development and effect on growth of green pepper seedlings

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2022
Microencapsulated_biofertilizer_formulation_pub_2022.pdf (1.440Mb)
Authors
Stojanović, Sandra Stamenković
Karabegović, Ivana
Danilović, Bojana
Nedović, Viktor
Kalušević, Ana
Mančić, Stojan
Lazić, Miodrag
Article (Published version)
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Abstract
Aim of the study: This study aimed to formulate a novel, commercially applicable biofertilizer, to optimize the microencapsulation procedure of Bacillus subtilis NCIM 2063 and examine the stability and phytostimulatory effects of obtained formulation. Area of the study: Southestern Serbia. Material and methods: Microbial powder formulations were prepared using spray drying with maltodextrin as a carrier. The spray drying conditions were set according to Box-Benkhen experimental desing. The effect of the formulation was tested on green pepper (Capsicum annuum) seeds in controled conditions. Main results: Response surface models were developed. All of the models were statistically significant, adequately fitted and reproducible. The maximum achieved values of viability and yield in a formulation were 1.99·109 CFU/g and 96.8%, respectively, whilst the driest formulation had 1.44% moisture. The following optimum conditions were proposed for the spray drying procedure: an inlet air temperat...ure of 133 °C, maltodextrin concentration of 50 g/L and a feed flow rate of 6.5 mL/min. The obtained microbial formulation had a high survival rate after being stored at room temperature over a 1--year period. Its application on green pepper seeds had beneficial effect on plant height, leaf dry weight and chlorophyll content of the seedlings. Research highlights: B. subtilis was successfully microencapsulated on maltodextrin as a carrier. Interaction effects between the process variables were fully explained and statistically significant models were developed. In addition to biocontrol properties formulation had a phytostimulatory effect, excellent stability and satisfactory physical properties. © 2022 CSIC.

Keywords:
Additional plant growth promotion / Bacillus subtilis / optimization / phytostimulation
Source:
Spanish Journal of Agricultural Research, 2022, 20, 3
Funding / projects:
  • Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 200133 (Univeristy of Niš, Faculty of Technology, Leskovac) (RS-200133)
  • Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 200116 (University of Belgrade, Faculty of Agriculture) (RS-200116)

DOI: 10.5424/sjar/2022203-19062

ISSN: 1695-971X

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URI
http://aspace.agrif.bg.ac.rs/handle/123456789/6178
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Poljoprivredni fakultet

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