Growth Response and Yield of Stevia (Stevia rebaudiana) to Giving Old Coconut Water and Different Types of Irrigation

Authors

  • Sahidatun Fahima Department of Agrotechnology, Faculty of Agriculture, University of Jember, Indonesia
  • Arthur Frans Cesar Regar Department of Agrotechnology, Faculty of Agriculture, University of Jember, Indonesia

DOI:

https://doi.org/10.19184/jsa.v2i2.832

Keywords:

Drip Irrigation, Sprinkle Irrigation, Stevia, Old Coconut Water

Abstract

The purpose of this study was to determine the response and yield of the stevia plant to different concentrations of old coconut water combined with two different types of irrigation, namely drip irrigation and sprinkler irrigation. The experimental design was a split plot with the RAK basic design pattern and two factors. The first factor is the use of different irrigation types, including drip and sprinkler irrigation. The second factor is the concentration of coconut water, which consists of 5 levels, namely A0 = 0% coconut water concentration, A1 = 25% coconut water concentration, A2 = 50% coconut water concentration, A3 = 75% coconut water concentration, and A4 = water concentration coconut 100%. Data analysis used the T-test to determine the effect of the type of irrigation and ANOVA to determine the impact of giving old coconut water with the F test at level α = 0.05. A DMRT test was done to measure the significant values of the ANOVA test. The results showed no interaction between different irrigation types and coconut water concentration for all observational variables. Different kinds of irrigation showed significant differences in some parameters. Giving old coconut water gives different results in each experiment.

References

Adhiguna, RT and A. Rejo. 2018. Drip Irrigation Technology in Optimizing Water Use Efficiency on Agricultural Land. Proceedings of the National Seminar on World Water Day . 1(1): 107-116.

Central Statistics Agency (BPS). 2020. Executive Summary of Indonesian Population Expenditure and Consumption . CV. Dharmaputra.

Borut, RN, OW Angkejaya, and PY Silalahi. 2021. Knowledge, Attitudes and Behavior of Coastal Communities Regarding Coconut Water as a Rehydration Fluid in Tonu Jaya Village in 2018. Pattimura Medical Review. 3(1): 33-45.

Edo, B. And M. Murdaningsih. 2018. The Effect of Providing Coconut Water on the Growth and Yield of Ground Water Spinach ( Ipomoea reptans ). Agrica . 11(1): 30-42.

Fallovo, C., Y. Rouphael, M. Cardarelli, E. Rea, A. Battistelli, and G. Colla. 2009. Yield and Quality of Leafy Lettuce in Response to Nutrient Solution Composition and Growing Season. J. Food Agric. Environ . 7(2): 456-462.

Firmansyah, E. 2017. Growth and Morphology of Palm Oil (Elaeis guinensis jacq.) Root Under Different Waterlogging Salinity. AGROISTA Journal of Agrotechnology. 1(2): 181-191.

Haryati, U. 2014. Supplemental Irrigation Technology for Adapting to Climate Change in Dry Land Agriculture. Journal of Land Resources . 8(1): 43-57.

Heksaputra, D., Z. Naimah, Y. Azani, and L. Iswari. 2013. Determining the Effect of Climate on Plant Growth with Naive Bayes. In National Seminar on Information Technology Applications (SNATI). N34-N39.

Hidayat, N. 2008. Growth and Production of Peanuts ( Arachis hypogea L.) Local Madura Varieties at Various Planting Distances and Phosphorus Fertilizer Doses. Agrovigor: Journal of Agroecotechnology . 1(1): 55-64.

Idealistiana, L., N. Anggaraeni, and R. Khairiyah. 2021. Efforts to Increase Community Knowledge Regarding Limiting Sugar, Salt and Fat Consumption through Nutrition Counseling Activities in the Margajaya Health Center Area. Journal of Community Service in Midwifery. 4(1): 6-13.

Karim, H., AI Suryani, Y. Yusuf, and NA K Fatah. 2019. Growth of Cayenne Pepper ( Capsicum frutescens L.) Plants on the Application of Liquid Organic Fertilizer from Kepok Banana Waste. Indonesian Journal of Fundamental Sciences . 5(2): 89-101.

Kosma, C., V. Triantafyllidis, A. Papasavvas, G. Salahas, and A. Patakas. 2013. Yield and Nutritional Quality of Greenhouse Lettuce as Affected by Shading and Cultivation Season. Emirates Journal of Food and Agriculture. 25(12): 974-979.

Krestiani, V., H. Supriyo, and MA Hidayat. 2022. Study of Types of Planting Media and Nutrient Concentrations of AB Mix on the Growth and Yield of Lettuce Plants ( Lactuca sativa L) in the Hydroponic Drip Irrigation System. Muria Journal of Agrotechnology (MJ-Agrotechnology). 1(1): 22-29.

Krisna, B., EETS Putra, R. Rogomulyo, and D. Kastono. 2017. Effect of Oxygen and Calcium Enrichment on Root Growth and Yield of Curly Lettuce ( Lactuca sativa L.) in Floating Raft Hydroponics. Vegetalica . 6(4): 14-27.

Kristina, NN and SF Syahid. 2012. Effect of Coconut Water on In Vitro Shoot Multiplication , Rhizome Production, and Xanthorrhizol Content of Temulawak in the Field. Littri . 18(3): 125-134.

Lestari, IGAAI 2014. Characteristics of Expansive Clay Soil. GaneÇ Swara . 8(2): 15-19.

Lutfia, U., R. Rugayah, K. Hendarto, and TD Andalasari. 2017. Growth Response of Red Dragon Fruit ( Hylocereus costaricensis ) Stem Cuttings to Provision of Coconut Water. Journal of Applied Agricultural Research . 17(3): 149-156.

Sembiring, BE, and L. Mawarni. 2017. Growth and Production of Samosir Variety Shallots ( Allium ascalonicum L.) at various coconut water concentrations and soaking times. Online Journal of Agroecotechnology. 5(4): 780-785.

Mudaningrat, A., and S. Nada. (2021, October). Effect of concentration of growth regulators in coconut water on the growth of ginger ( Zingiber officinale ) and galanga ( Kaempferia galanga L.) plants. In National Biology Seminar (Vol. 9, pp. 1-9).

Mustawa, M., SH Abdullah, and GMD Putra. 2017. Analysis of the Efficiency of Drip Irrigation on Various Soil Textures for Mustard Plants ( Brassica juncea ). Scientific Journal of Agricultural and Biosystem Engineering . 5(2): 408-421.

Negara, IDGJ, Y. Saadi, and IG Putra. 2015. Characteristics of Mini Sprinkler Irrigation Performance on the North Pringgabaya Dry Land in East Lombok Regency: Characteristics of Mini Sprinkler Irrigation Performance on The North Pringgabaya Dry Land in The East Lombok Regency. Civil Spectrum . 2(1): 28-37.

Pal, PK, R. Kumar, V. Guleria, M. Mahajan, R. Prasad, V. Pathania, BS Gill, D. Singh, G. Chand, B. Singh, RD Singh, and PS Ahuja. 2015. Crop-Ecology and Nutritional Variability Influence Growth and Secondary Metabolites of Stevia rebaudiana Bertoni. BMC Plant Biology . 15(1): 1-16.

Prasetya, MHE, MD Maghfoer, and M. Santoso. 2014. The Effect of Types and Combinations of Organic Materials on the Growth and Yield of Stevia Plants ( Stevia rebaudiana B.). Journal of Crop Production . 2(6): 503-509.

Purba, DW 2017. Growth and Production Response of Pakcoy Mustard Plants ( Brassica juncea L.) to Provision of Dophosf G-21 Organic Fertilizer and Old Coconut Water. AGRIUM: Journal of Agricultural Sciences . 21(1): 8-19.

Putra, A., Ichwana, and S. Chairani. 2017. Efficiency of Water Distribution Uniformity from Varying Pipe Height in Bulk Irrigation Systems. Agricultural Student Scientific Journal . 2(2): 430-438.

Rahmawati, D., H. Setiawan, and K. Aji. 2015, November. Design of an Automatic Sprinkling Microirrigation System based on Fuzzy Logic. In National Seminar on Applied Technology (MACHINE) (Vol. 1, No. 01).

Rezky, FL 2018. Effect of the amount of water applied using a drip irrigation system on the growth and yield of purple eggplant plants ( Solanum melongena L.). AGROHITA Journal: Agrotechnology Journal, Faculty of Agriculture, Muhammadiyah University, South Tapanuli . 2(2): 10-19.

Rianditya, OD and S. Hartatik, S. 2022. The Effect of Providing Phosphorus Fertilizer on the Vegetative Growth of Sugarcane Plants Var. Mutation Result of Bululawang. Agricultural Scientific Periodicals . 5(1): 52-57.

Riski, M., and R. Ramli. 2022. Growth and Yield of Lettuce Plants ( Lactuca sativa L.) by Providing Coconut Water in a Substrate Hydroponic System. Agrotekbis: E-Journal of Agricultural Sciences . 10(2): 397-405.

Rosniawaty, S., IRD Anjarsari and R. Sudirja. 2017. Cytokinin Application to Increase Tea Plant Growth in the Lowlands. Journal of Industrial and Refreshing Plants . 5(1): 31-38

Rosniawaty, S., M. Ariyanti, C. Suherman, R. Sudirja, and S. Fitria. 2020, February. Utilization of Coconut Water Waste to Increase Cocoa Growth Seedling by Different Application Methods and Intervals. In IOP Conference Series: Earth and Environmental Science (Vol. 653, No. 1, p. 012081). IOP Publishing.

Setyanti, YH, S. Anwar, and W. Slamet. 2013. Photosynthetic Characteristics and Phosphorus Uptake of Alfalfa ( Medicago sativa ) Forages at Different Mowing Heights and Nitrogen Fertilization. Animal Agriculture Journal . 2(1): 86-96.

Setyawati, L., M. Marmaini, and YP Putri. 2020. Growth response of Pakcoy mustard greens ( Brassica chinensis L.) to the provision of old coconut ( Cocos nucifera ) water. Indobioscience . 2(1): 1-6.

Sumanto, NL and AE Purba. 2019. The Effect of Providing Natural Growth Regulators on the Growth of Stevia ( Stevia rebaudiana B) Cuttings. Bioscientist: A Scientific Journal of Biology . 7(2): 138-145.

Wahyono, ND, N. Hasanah, and N. Nurprahastani. 2021. Optimization of Sterilization Techniques and Effects of Coconut Water for the Induction of Shoots of Stevia ( Stevia rebaudiana Bertoni). Food and Agricultural Sciences: Polije Proceedings Series . 3(1): 10-18.

Witman, S. 2021. Application of Drip Irrigation Methods to Support Efficient Water Use on Dry Land. Triton Journal . 12(1): 20-28.

Published

2024-04-03

How to Cite

Fahima , S. ., & Frans Cesar Regar, A. . (2024). Growth Response and Yield of Stevia (Stevia rebaudiana) to Giving Old Coconut Water and Different Types of Irrigation . Journal of Soilscape and Agriculture, 2(2). https://doi.org/10.19184/jsa.v2i2.832