Biochar effects in the growing and control of biotic and abiotic stress in Astrophytum myriostigma and Astrophytum capricorne

Authors

  • Domenico Prisa CREA Research Centre for Vegetable and Ornamental Crops, Council for Agricultural Researchand Economics, Via dei Fiori 8, 51012 Pescia, PT, Italy.

DOI:

https://doi.org/10.30574/gscbps.2021.16.1.0211

Keywords:

Cactus, Sustainable agriculture, Soil amendment, Soil fertility, Ornamental plants

Abstract

Research goal: Based on the information found in the literature on biochar, its ability to improve the quality and yield of productions and to influence soil microflora. In this work, studies were carried out at different concentrations in pots to assess whether the addition of this material to the growing medium can influence the growth and control of biotic and abiotic stresses on Astrophytum myriostigma and Astrophytum capricorne.

Materials and Methods: The experiments, started in June 2020, were conducted in the greenhouses of CREA-OF in Pescia (PT), Tuscany, Italy (43°54′N 10°41′E). The experimental groups were: i) group control, irrigated with water and substrate previously fertilized; ii) group with biochar 5%, irrigated with water and substrate previously fertilized; iii) group with biochar 10%, irrigated with water and substrate previously fertilized; iv) group with biochar 15%, irrigated with water and substrate previously fertilized; On June 30, 2021, plant height and circumference, number and length of thorns, vegetative weight, root weight, number of fruits, fruit weight, number of flowers, flower life, plants dead from cold stress, plants dead from Rhizoctonia solani.

Results and Discussion: The test showed a significant increase in the agronomic parameters analyzed in biochar-treated plants on Astrophytum myriostigma and Astrophytum capricorne. The test also showed an improvement in plant quality in terms of increased number of thorns, fruits, flowers and increased resistance to cold stress and the pathogen Rhizoctonia solani. The trial also showed that an increase in substrate biochar content of 10%-15% improved plant growth performance compared to lower 5% contents.

Conclusions: The experimentation carried out at CREA-OF in Pescia showed how the application of biochar to the cultivation substrate of Astrophytum myriostigma and Astrophytum capricorne can significantly improve the quality and the resistance to biotic and abiotic stresses of the plants. As in other experiments in the literature, the application of this soil conditioner also resulted in positive effects in the control of pathogenic fungi, particularly Rhizoctonia solani. This effect was probably mediated by the presence of microorganisms in the biochar that, in addition to having an effect on plant stimulation, may have a fundamental role in their biocontrol activity of substrate pathogens. Interesting results have also been the increase in the number of thorns, flowers and fruit duration and resistance to cold stress in plants grown with biochar.

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References

Cecarini M. Piante grasse. Le succulente non cactacee. Guida pratica completa per coltivare, riconoscere, moltiplicare, difendere, curare le succulente non cactacee. 2011.

Chapman P, Martin M. Cactus e altre succulente. Zanichelli. 1993.

Vázquez-Lobo A, Aguilar Morales G, Arias S, Golubov J, Hernández-Hernández T, Mandujano MC. Systematic Botany. 2015; 40(4): 1022-1030.

Backeberg C. Some results of twenty years of cactus research Part I. A synopsis of the genera of the Cactaceae. Cactus and Succulent Journal. 1950; 22: 181–190.

Britton NL, Rose JN. The Cactaceae vol. 3. Washington, D. C. The Carnegie Institution. 1922.

Iswaran V, Jauhri KS, Sen A. Effect of charcoal and peat on the yield of moong, soybean and pea. Soil Biology & Biochemistry. 1980; 12: 191–192.

Wardle DA, Zackrisson O, Nilsson MC. The charcoal effect in Boreal forests: mechanisms and ecological consequences. Oecologia. 1998; 115: 419–426.

Kishimoto S, Sugiura G. Charcoal as a soil conditioner. In: Symposium on Forest Products Reserarch, International Achievements for the Future. 1985; 5: 12–23.

Major J, Rondon M, Molina D, Riha SJ, Lehmann J. Maize yield and nutrition during 4 years after biochar application to a Colombian savanna oxisol. Plant and Soil. 2010; 333: 117–128.

Rondon MA, Lehmann J, Ramirez J, Hurtado M. Biological nitrogen fixation by common beans (Phaseolus vulgaris L.) increases with bio-char additions. Biology and Fertility of Soils. 2007; 43: 699–708.

Lehmann J, Rillig MC, Thies J, Masiello CA, Hockaday WC, Crowley D. Biochar effects on soil biota – a review. Soil Biology and Biochemistry. 2011; 43: 1812–1836.

Warnock DD, Lehmann J, Kuyper TW, Rillig MC. Mycorrhizal responses to biochar in soil - concepts and mechanisms. Plant and Soil. 2007; 300: 9–20.

Prisa D. Rhizobacteria and zeolites for overcoming saline stress in the cultivation of succulent plants. The International Journal of Engineering and Science (IJES). 2019; 8(5) I: 38-41.

Prisa D. Effective microorganisms for germination and root growth in Kalanchoe daigremontiana. World Journal of Advanced Research and Reviews. 2019; 03(03): 047–053.

Prisa D. Germination of Vegetable and Grassland species With Micronized chabazitic-Zeolites and Endophytic Fungi. IOSR Journal of Agriculture and Veterinary Science (IOSR-JAVS). E-ISSN: 2319-2380, p-ISSN: 2319-2372. May 2019; 12(5): I 32-37.

Jesus ED, Marsh TL, Tiedje JM, Moreira FMD. Changes in land use alter the structure of bacterial communities in Western Amazon soils. ISME Journal. 2009; 3: 1004–1011.

O’Neill B, Grossman J, Tsai MT, Gomes JE, Lehmann J, Peterson J, Neves E, Thies JE. Bacterial community composition in Brazilian Anthrosols and adjacent soils characterized using culturing and molecular identification. Microbial Ecology. 2009; 58: 23–35.

Amonette JE, Joseph S. Characteristics of biochar: Microchemical properties. In: Biochar for Environmental Management: Science and Technology. (Lehmann J., S. Joseph, ed.), Earthscan, London, UK. 2009; 33–52.

Chan KY, Xu Z. Biochar: Nutrient properties and their enhancement. In: Biochar for Environmental Management: Science and Technology. (Lehmann J., S. Joseph, ed.), Earthscan, London, UK. 2009; 67–84.

Blackwell P, Riethmuller G, Collins M. Biochar application to soil. In: Biochar for Environmental Management: Science and Technology. (Lehmann J., S. Joseph, ed.), Earthscan, London, UK. 2009; 207–226.

Prisa D. Effective Microorganisms and Chabazitic-Zeolites for the Improvement Quality of Echinopsis Hybrids. Asian Academic Research Journal of Multidisciplinary. 2019; 6(2): 23-34.

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Published

2021-07-30

How to Cite

Prisa, D. . (2021). Biochar effects in the growing and control of biotic and abiotic stress in Astrophytum myriostigma and Astrophytum capricorne. GSC Biological and Pharmaceutical Sciences, 16(1), 186–194. https://doi.org/10.30574/gscbps.2021.16.1.0211

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Original Article