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Evaluation of growth promoting activity of Pleurotus ostreatus extract on Trigonella foenum, Cicer arietinum, Brassica nigra, Coriandrum sativum

Renuka Ambilgeker1 , S. Anju2 , V. Selva Kumar3 , J. Sarada4

Section:Research Paper, Product Type: Journal Paper
Vol.06 , Special Issue.01 , pp.8-13, May-2019

CrossRef-DOI:   https://doi.org/10.26438/ijsrbs/v6si1.813

Online published on May 10, 2019

Copyright © Renuka Ambilgeker, S. Anju, V. Selva Kumar, J. Sarada . This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.  

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IEEE Style Citation: Renuka Ambilgeker, S. Anju, V. Selva Kumar, J. Sarada, “Evaluation of growth promoting activity of Pleurotus ostreatus extract on Trigonella foenum, Cicer arietinum, Brassica nigra, Coriandrum sativum,” International Journal of Scientific Research in Biological Sciences, Vol.06, Issue.01, pp.8-13, 2019.

MLA Style Citation: Renuka Ambilgeker, S. Anju, V. Selva Kumar, J. Sarada "Evaluation of growth promoting activity of Pleurotus ostreatus extract on Trigonella foenum, Cicer arietinum, Brassica nigra, Coriandrum sativum." International Journal of Scientific Research in Biological Sciences 06.01 (2019): 8-13.

APA Style Citation: Renuka Ambilgeker, S. Anju, V. Selva Kumar, J. Sarada, (2019). Evaluation of growth promoting activity of Pleurotus ostreatus extract on Trigonella foenum, Cicer arietinum, Brassica nigra, Coriandrum sativum. International Journal of Scientific Research in Biological Sciences, 06(01), 8-13.

BibTex Style Citation:
@article{Ambilgeker_2019,
author = {Renuka Ambilgeker, S. Anju, V. Selva Kumar, J. Sarada},
title = {Evaluation of growth promoting activity of Pleurotus ostreatus extract on Trigonella foenum, Cicer arietinum, Brassica nigra, Coriandrum sativum},
journal = {International Journal of Scientific Research in Biological Sciences},
issue_date = {5 2019},
volume = {06},
Issue = {01},
month = {5},
year = {2019},
issn = {2347-2693},
pages = {8-13},
url = {https://www.isroset.org/journal/IJSRBS/full_paper_view.php?paper_id=20},
doi = {https://doi.org/10.26438/ijcse/v6i1.813}
publisher = {IJCSE, Indore, INDIA},
}

RIS Style Citation:
TY - JOUR
DO = {https://doi.org/10.26438/ijcse/v6i1.813}
UR - https://www.isroset.org/journal/IJSRBS/full_spl_paper_view.php?paper_id=20
TI - Evaluation of growth promoting activity of Pleurotus ostreatus extract on Trigonella foenum, Cicer arietinum, Brassica nigra, Coriandrum sativum
T2 - International Journal of Scientific Research in Biological Sciences
AU - Renuka Ambilgeker, S. Anju, V. Selva Kumar, J. Sarada
PY - 2019
DA - 2019/05/10
PB - IJCSE, Indore, INDIA
SP - 8-13
IS - 01
VL - 06
SN - 2347-2693
ER -

Abstract :
Increase in the human population brings in a demand for large scale production of agricultural products to meet the needs. To minimize the loss in the production of plant products, due to pests, use of pesticides has become an unavoidable practice. The harmful impact of chemical pesticides has invariantly brought in the necessity of biopesticide usage. As a result, a number of studies propose many herbal and natural plants extracts to replace the chemical pesticides. Mushroom extract has been proven to be an active biopesticide that can be used on the plants to control plant diseases. It has many low molecular and high molecular proteins, which are reported to be effective antimicrobial agents. Several plant pathogens have been identified to be susceptible to mushroom extract. Active compounds like ethyl 2-methylbutyrate, linalool, methional , 3-octanone from the extract are currently explored for preparations of biopesticides. Present study focuses on growth promoting activity of Pleurotus ostreatus mushroom extract on selected plants. Experiments were conducted to evaluate growth promotional activity of Pleurotus ostreatus extract on Trigonella foenum, Cicer arietinum, Brassica nigra, Coriandrum sativum. In potted plant experiments various concentrations of mushroom extract was tested in triplicates. It has been evident from the study that, with increasing concentration of mushroom extract, a selective growth promotion in Trigonella foenum was observed whereas a significant inhibition in growth was found with Brassica nigra, Cicer arietinum, Coriandrum sativum. A considerable change in the rhizosphere flora was also observed in the presence of mushroom extract which could have influenced the growth. The statistical analysis by ANOVA revealed a significant value p<0.05, showing a significant impact of mushroom extract on growth in the selected plants.

Key-Words / Index Term :
Mushroom extract, Coriandrum sativum, Brassica nigra, Cicer arietnum, Trigonella foenum

References :
[1]. Chihara G. 1993 Medical aspects of lentinan isolated from Lentinus edodes (Berk.) Sing. In Mushroom Biology and Mushroom Products, eds ChangS.T., BuswellJ.A. & ChiuS.W. pp. 261–266. Hong Kong: Chinese University Press.Google Scholar
[2]. JongS.C. & BirminghamJ.M. 1992 Medicinal benefits of the mushroom Ganoderma. Advances in Applied Microbiology 37, 101–134.Google Scholar
[3]. LiuF., OoiV.E.C. & ChangS.T. 1995 Antitumour components of the culture filtrates from Tricholoma sp. World Journal of Microbiology and Biotechnology 11, 486–490.Google Scholar
[4]. LiuF., FungM.C., OoiV.E.C. & ChangS.T. 1996 Induction in the mouse of gene expression of immunomodulating cytokines by mushroom polysaccharide-protein complexes. Life Sciences 58, 1795–1803.Google Scholar
[5]. MizunoT. & ZhuangC. 1995 Miitake, Grifola frondosa: Pharmacological effects. Food Reviews International 11, 135–149.Google Scholar
[6]. MizunoT., WangG., ZhangJ., KawagishiH., NishitobaT. & LiJ. 1995 Reishi, Ganoderma lucidum and Ganoderma tsugae: Bioactive substances and medicinal effects. Food Reviews International 11, 151–166.Google Scholar
[7]. PaiS.H., JongS.C. & LowD.W. 1990 Usages of mushroom. Bioindustry 1, 126–131.Google Scholar
[8]. SakagamiH. & TakedaM. 1993 Diverse biological activity of PSK (Krestin), a protein-bound polysaccharide from Coriolus versicolor (Fr.) Quel. In Mushroom Biology and Mushroom Products, eds ChangS.T., BuswellJ.A. & ChiuS.W. pp. 237–245. Hong Kong: Chinese University Press.Google Scholar
[9]. WangH.X., LiuW.K., NgT.B., OoiV.E.C. & ChangS.T. 1995a Immunomodulatory and antitumour activities of a polysaccharide-peptide complex from a mycelial culture of Tricholoma sp., a local edible mushroom. Life Sciences. 57, 269–281.Google Scholar
[10]. WangH.X., LiuW.K., NgT.B., OoiV.E.C. & ChangS.T. 1995b. Isolation and characterization of two distinct lectins with antiproliferative activity from the cultured mycelium of the edible mushroom Tricholoma mongolicum. International Journal of Peptide and Protein Research 46, 508–513.Google Scholar
[11]. YangQ.Y., HuY.J., LiX.Y., YangS.X., LiuJ.X., LiuT.F., XuG.M. & LiaoM.L. 1993 A new biological response modifier-PSP. In Mushroom Biology and Mushroom Products, eds ChangS.T., BuswellJ.A. & ChiuS.W. pp. 247–259. Hong Kong: Chinese University Press.Google Scholar
[12]. Sasaki, T., & Takasuka, N. (1976). Further study of the structure of lentinan, an anti-tumor polysaccharide from Lentinus edodes. Carbohydrate Research, 47(1), 99-104.
[13]. Beltran-Garcia, M. J., Estarron-Espinosa, M., & Ogura, T. (1997). Volatile compounds secreted by the oyster mushroom (Pleurotus ostreatus) and their antibacterial activities. Journal of Agricultural and Food Chemistry, 45(10), 4049-4052.
[14]. Chang, S. T., & Hayes, W. A. (Eds.). (2013). The biology and cultivation of edible mushrooms. Academic press.
[15]. Masota, N. E., Mihale, M., Sempombe, J., Henry, L., Mugoyela, V., & Sung`hwa, F. (2017). Pesticidal Activity of Wild Mushroom Amanita muscaria (L) Extracts against Sitophilus zeamais (Motschulsky)(Coleoptera: Curculionidae) in Stored Maize Grains. Journal of Food Security, 5(2), 26-32.
Badalyan, S. M., Innocenti, G., & Garibyan, N. G. (2002). Antagonistic activity of xylotrophic mushrooms against pathogenic fungi of cereals in dual culture. Phytopathologia Mediterranea, 41(3), 220-225.
[16]. Falade, O. E., Oyetayo, V. O., & Awala, S. I. (2017). Evaluation of the mycochemical composition and antimicrobial potency of wild macrofungus, Rigidoporus microporus (Sw). J Phytopharmacol, 6(2), 115-125.

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