Investigation of Vermicompost Influence on Seed Germination of the Endangered Wild Rubber Species Scorzonera tau-saghyz
Abstract
:1. Introduction
2. Materials and Methods
2.1. Plant Material
2.2. Vermicompost and “Vermicompost Tea” Preparation
2.3. Seed priming and Seedling Production
2.4. Cultivation of S. tau-saghyz in Standard Vessels with 20% Vermicompost-Enriched Soil
3. Results
3.1. Seed Pre-Treatment and Seedling Procurement
3.2. Vermicompost Influence on Tau-Saghyz Seedling Growth
- In the control, the average FWs of the leaves and roots corresponded to 83.3 and 136.6 mg, respectively, and the ratio of the average weight of the raw roots to the weight of the raw leaves was 1.63. There was thus a clear correlation between the FW of the Tau-saghyz roots and leaves in the control, allowing for an estimation of the root system growth based on leaf development. A coefficient of 0.61 was obtained when assessing the link between the average FWs of the leaves and roots, demonstrating a direct correlation; i.e., when the leaves’ weight increases, the root weight grows accordingly.
- In the experiment, the average FWs of the roots and leaves were 223 and 252 mg, respectively, and the ratio of the FWs of the roots to leaves was 0.88; this was much lower than that in the control (less than 1), indicating that there was no direct correlation in this case. The ratio of the leaves to the roots FW was 1.13; this is above 1, indicating the absence of a direct correlation. Therefore, it can only be concluded that vermicompost has a greater influence on leaf development.
- In the control, the ratio of the DWs of the roots (28.0 mg) to leaves (16.3 mg) was 1.71.
- In the experiment, the ratio of the DWs of the leaves (16.3 mg) to roots (28.0 mg) was 1.17, being more than 1. There was no positive correlation detected in the experiment, which was presumably due to the vermicompost primarily influencing the leaf biomass growth and subsequently allowing for the root system to also expand (Figure 8).
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Kultiasov, M.V. Tau-Saghyz and Its Introduction into Culture; Keller, B.A., Vavilov, N.I., Eds.; Publishing House of the USSR Academy of Sciences: Moscow, Russia, 1938. [Google Scholar]
- Pavlov, N.V. Plant Resources of Southern Kazakhstan; Pavlov, N.V., Ed.; Moscow Society of Nature Testers: Moscow, Russia, 1947; Volume 3. [Google Scholar]
- Agrawal, A.A.; Konno, K. Latex: A Model for Understanding Mechanisms, Ecology, and Evolution of Plant Defense against Herbivory. Annu. Rev. Ecol. Evol. Syst. 2009, 40, 311–331. [Google Scholar] [CrossRef]
- Konno, K. Plant Latex and Other Exudates as Plant Defense Systems: Roles of Various Defense Chemicals and Proteins Contained Therein. Phytochemistry 2011, 72, 1510–1530. [Google Scholar] [CrossRef] [PubMed]
- Boguspaev, K.K.; Turasheva, S.K.; Seilkhanov, T.M.; Faleev, D.G.; Mutalkhanov, M.S.; Portnoy, V.H. Rapid Rubber Extraction and NMR Spectroscopy of Rubber, Extracted from the Endemic Species Scorzonera Tau-Saghyz. Eurasian Chem. Technol. J. 2020, 22, 59–68. [Google Scholar] [CrossRef]
- Orazova, S.B.; Boguspaev, K.K.; Ivashchenko, A.T.; Bisenbayev, A.K. The Effect of Priming on the Activity of Antioxidant Enzymes (Superoxide Dismutase and Peroxidase) of Corn with a Sign of CMS with Different Salinization. Bull. KazNU Ser. Biol. 2009, 2, 61–64. [Google Scholar]
- Edwards, C.A.; Arancon, N.Q.; Vasko-Bennett, M.; Askar, A.; Keeney, G. Effect of Aqueous Extracts from Vermicomposts on Attacks by Cucumber Beetles (Acalymna Vittatum) (Fabr.) on Cucumbers and Tobacco Hornworm (Manduca Sexta) (L.) on Tomatoes. Pedobiologia 2010, 53, 141–148. [Google Scholar] [CrossRef]
- Boguspaev, K.K.; Mukataeva, K.A.; Kanalbek, G.K.; Ilbekova, A.I.; Faleev, D.G.; Titov, I.N.; Nusupov, A.A. Microbiological and Molecular Genetic Analysis of the Fungal Microflora of Vermicompost Obtained from Cattle Manure Using Compost Worms Eisenia Fetida. Bull. Biotechnol. Phys.Chem. Biol. Named After Yu.A. Ovchinnikov 2020, 16, 17–22. [Google Scholar]
- Arancon, N.Q.; Edwards, C.A.; Babenko, A.; Cannon, J.; Galvis, P.; Metzger, J.D. Influences of Vermicomposts, Produced by Earthworms and Microorganisms from Cattle Manure, Food Waste and Paper Waste, on the Germination, Growth and Flowering of Petunias in the Greenhouse. Appl. Soil Ecol. 2008, 39, 91–99. [Google Scholar] [CrossRef]
- Padmavathiamma, P.K.; Li, L.Y.; Kumari, U.R. An Experimental Study of Vermi-Biowaste Composting for Agricultural Soil Improvement. Bioresour. Technol. 2008, 99, 1672–1681. [Google Scholar] [CrossRef] [PubMed]
- Biyasheva, Z.M.; Lovinskaja, A.V. Introduction to Biostatistics (Biometry), 2nd ed.; Qazaq University: Almaty, Kazakhstan, 2017; Volume 1, ISBN 978-601-04-2745-7. [Google Scholar]
- Turasheva, S.K.; Boguspaev, K.K.; Faleev, D.G.; Alnurova, A.A.; Kopytina, A.I. Restoration the Population Number of Wild Rubber Endemic Plant Scorzonera Tau-Saghyz Lipsch. et Bosse. KazNU Bull. 2016, 47, 134–142. [Google Scholar] [CrossRef]
- Boguspaev, K.K.; Portnoy, V.; Faleev, D.G.; Kasymbekov, B.K.; Turasheva, S.K. Tau-Saghyz (Scorzonera Tau-Saghyz Lipsch. Et GG Bose) an Alternative Source of Natural Rubber. KazNU Bull. Biol. Ser. 2015, 65, 322–331. [Google Scholar]
- Paparella, S.; Araújo, S.S.; Rossi, G.; Wijayasinghe, M.; Carbonera, D.; Balestrazzi, A. Seed Priming: State of the Art and New Perspectives. Plant Cell Rep. 2015, 34, 1281–1293. [Google Scholar] [CrossRef] [PubMed]
- Xu, C.; Mou, B. Short-Term Effects of Composted Cattle Manure or Cotton Burr on Growth, Physiology, and Phytochemical of Spinach. HortScience 2016, 51, 1517–1523. [Google Scholar] [CrossRef]
- Sissemali, K.; Mutalkhanov, M.; Alnurova, A.; Akilbekova, A.; Tauasarova, M.; Bassygarayev, Z.; Boguspaev, K. Determination of the Correlation between the Accumulation of Pigments and Natural Rubber in Tau-Saghyz. Int. J. Biol. Chem. 2021, 14, 12–18. [Google Scholar] [CrossRef]
VCT Concentration, % | Seed Germination Rate (%) after Pre-Treatment with VCT * | |
---|---|---|
4 h | 8 h | |
control (without VCT priming) | 31.7 ± 4.66 | 40.0 ± 4.92 |
1 | 43.0 ± 3.78 | 45.0 ± 3.80 |
5 | 50.0 ± 5.01 | 60.0 ± 4.92 |
10 | 68.3 ± 4.68 | 76.7 ± 4.25 |
Root System Parameters | Control | Experiment | |
---|---|---|---|
Main root length, mm | 196 ± 9.90 | 200 ± 11.5 | |
Amount of lateral roots sprouting from the main root, pcs | 1.30 ± 0.10 | 2.70 ± 0.20 | |
Length of lateral roots sprouting from the main root, mm | 1st order | 0.10 ± 0.01 | 0.20 ± 0.01 |
2nd order | - | - |
Root System Parameters | Control | Experiment | |
---|---|---|---|
Number of axillary roots, pcs | 18.7 ± 1.20 | 19.0 ± 1.40 | |
Length of axillary roots, mm | 83.3 ± 3.10 | 96.7 ± 4.20 | |
Number of lateral roots sprouting from the axillary root, pcs | 1.30 ± 0.10 | 1.30 ± 0.10 | |
Length of lateral roots sprouting from axillary roots, mm | 1st order | 3.50 ± 0.20 | 15.0 ± 0.10 |
2nd order | - | - |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Boguspaev, K.-K.; Turasheva, S.; Mutalkhanov, M.; Bassygarayev, Z.; Yernazarova, G.; Alnurova, A.; Sarsenbek, B. Investigation of Vermicompost Influence on Seed Germination of the Endangered Wild Rubber Species Scorzonera tau-saghyz. Diversity 2023, 15, 224. https://doi.org/10.3390/d15020224
Boguspaev K-K, Turasheva S, Mutalkhanov M, Bassygarayev Z, Yernazarova G, Alnurova A, Sarsenbek B. Investigation of Vermicompost Influence on Seed Germination of the Endangered Wild Rubber Species Scorzonera tau-saghyz. Diversity. 2023; 15(2):224. https://doi.org/10.3390/d15020224
Chicago/Turabian StyleBoguspaev, Kenzhe-Karim, Svetlana Turasheva, Meirambek Mutalkhanov, Zhandos Bassygarayev, Gulzira Yernazarova, Aizada Alnurova, and Balaussa Sarsenbek. 2023. "Investigation of Vermicompost Influence on Seed Germination of the Endangered Wild Rubber Species Scorzonera tau-saghyz" Diversity 15, no. 2: 224. https://doi.org/10.3390/d15020224
APA StyleBoguspaev, K. -K., Turasheva, S., Mutalkhanov, M., Bassygarayev, Z., Yernazarova, G., Alnurova, A., & Sarsenbek, B. (2023). Investigation of Vermicompost Influence on Seed Germination of the Endangered Wild Rubber Species Scorzonera tau-saghyz. Diversity, 15(2), 224. https://doi.org/10.3390/d15020224