Cite

Abeygunawardana A. (2005): Gliricidia - fourth plantation crop of Sri Lanka. Available at: https://www.bioenergysrilanka.lk/wp-content/uploads/2018/12/GLIRICIDIA-Fourth-Plantation-Crop-of-Sri-Lanka.pdf Search in Google Scholar

Alamu E.O., Adesokan M., Fawole S., Maziya-Dixon B., Mehreteab T., Chikoye D. (2023): Gliricidia sepium (Jacq.) walp applications for enhancing soil fertility and crop nutritional qualities: a review. Forests, 14(3): 635. doi.org/10.3390/f14030635 Search in Google Scholar

Allen S.E., Grimshaw H.M., Parkinson J.A., Quarmby C., Roberts J.D. (1974): Chemical analysis of ecological materials. Blackwell Scientific Publications. Osney, Oxford and London. Search in Google Scholar

Anis S.D., Kaligis D.A., Tulung B., Aryanto A. (2016): Leaf quality and yield of Gliricidia sepium (Jacq) Steud under different population density and cutting interval in coconut plantation. Journal of the Indonesian Tropical Animal Agriculture, 41(2): 91-98. Search in Google Scholar

Atapattu A.A.A.J., Pushpakumara D.K.N.G., Rupasinghe W.M.D., Senarathne S.H.S., Raveendra S.A.S.T. (2017a): Potential of Gliricidia sepium as a fuelwood species for sustainable energy generation in Sri Lanka. Agricultural Research Journal, 54(1): 34-39. Search in Google Scholar

Atapattu A.A.A.J., Raveendra S.A.S.T., Pushpakumara D.K.N.G., Rupasinghe W.M.D. (2017b): Regeneration potential of Gliricidia sepium (Jacq.) Kunth ex Walp. as a fuelwood species. Indian Journal of Plant Sciences, 6: 32-39. Search in Google Scholar

Atapattu A.A.A.J., Senarathne S.H.S., Raveendra S.A.S.T., Egodawatte W.C.P., Mensah S. (2017c): Effect of short - term agroforestry systems on soil quality in marginal coconut lands in Sri Lanka. Agricultural Research Journal, 54(3): 324-328. doi.org/10.5958/2395-146x.2017.00060.6 Search in Google Scholar

Bah A.R. & Rahman Z.A. (2001): Gliricidia (Gliricidia sepium) green manures as a potential source of N for maize production in the tropics. The Scientific World Journal, 1: 90-95. Search in Google Scholar

Beedy T.L., Snapp S.S., Akinnifesi F.K., Sileshi G.W. (2010): Impact of Gliricidia sepium intercropping on soil organic matter fractions in a maize-based cropping system. Agriculture, ecosystems & environment, 138(3-4): 139-146. Search in Google Scholar

Chadhokar P.A. & Lecamwasam A. (1982): Effect of feeding Gliricidia maculata to milking cows. A preliminary report. Tropical Grasslands, 16(1): 46-48. Search in Google Scholar

Dalling M.J. (1987): Proteolytic enzymes and leaf senescence. In: W.W. Thomson, E.A. Nothnagel, R.C. Huffaker, (Eds), Plant Senescence: Its Biochemistry and Physiology, American Society of Plant Physiologists, Rockville, MD, pp. 54-70 Search in Google Scholar

Dissanayaka D.M.N.S., Dissanayake D.K.R.P.L., Udumann S.S., Nuwarapaksha T.D., Atapattu A.J. (2023): Agroforestry-a key tool in the climate-smart agriculture context: a review on coconut cultivation in Sri Lanka. Frontiers in Agronomy, 5: 1162750. Search in Google Scholar

Dissanayaka D.M.N.S., Nuwarapaksha T.D., Udumann S.S., Dissanayake D.K.R.P.L., Atapattu A.J. (2022): A sustainable way of increasing productivity of coconut cultivation using cover crops: A review. Circular Agricultural Systems, 2(1): 1-9. doi.org/0.48130/CAS-2022-0007 Search in Google Scholar

Jadhao V.H., Gabhane V.V., Ashwini C., Usha S. (2019): Effect of potash management through gliricidia green leaf manuring on physico-chemical and biological properties of vertisols. Journal of Pharmacognosy and Phytochemistry, 8(6): 2162-2166. Search in Google Scholar

Kabaija E.M. (1985): Factors Influencing Mineral Content and Utilization of Tropical Forages by Ruminants. Ph.D. dissertation, Obafemi Awolowo University. Search in Google Scholar

Kalra Y. (Ed.) (1997): Handbook of reference methods for plant analysis. CRC press. Search in Google Scholar

Kumar P. & Mishra P.K. (2013): Cultivation of Gliricidia Sepium (Gliricidia) and its use for improving soil fertility. Journal of The Kalash Science, 1(1): 131-133. Search in Google Scholar

La O.O., Gonzalez H., Vasquez M.C., Hernandez J., Estrada A., Ledea J.L. (2018): Nutritional characterization of Gliricidia sepium in a saline and high drought ecosystem of the Cauto river basin, Cuba. Cuban Journal of Agricultural Science, 52(3): 347-356. Search in Google Scholar

Melchor Marroquín I., Vargas Hernández J., Velázquez Martínez A., Etchevers Barra J. (2005): Aboveground biomass production and nitrogen content in Gliricidia sepium (Jacq.) Walp. under several pruning regimes. Interciencia, 30(3): 151-158. Search in Google Scholar

Nelson D.W. & Sommers L.E. (1996): Total carbon, organic carbon, and organic matter. Methods of soil analysis: Part 3 Chemical methods, 5: 961-1010. Search in Google Scholar

Nuwarapaksha T.D., Dissanayaka D.M.N.S., Udumann S.S., Atapattu A.J. (2023): Gliricidia as a beneficial crop in resource-limiting agroforestry systems in Sri Lanka. Indian Journal of Agroforestry, 25(1): 12-18. Search in Google Scholar

Nuwarapaksha T.D., Udumann S.S., Dissanayaka D.M.N.S., Dissanayake D.K.R.P.L., Atapattu A.J. (2022): Coconut based multiple cropping systems: An analytical review in Sri Lankan coconut cultivations. Circular Agricultural Systems, 2(1): 1-7. doi.org/10.48130/CAS-2022-0008 Search in Google Scholar

Olsen S.R. (1954): Estimation of available phosphorus in soils by extraction with sodium bicarbonate (No. 939). US Department of Agriculture. Search in Google Scholar

Omari R.A., Aung H.P., Mudan H.O.U., Yokoyama T., Onwona-Agyeman S., Oikawa Y., Fujii Y., Bellingrath-Kimura S.D. (2016): Influence of different plant materials in combination with chicken manure on soil carbon and nitrogen contents and vegetable yield. Pedosphere, 26(4): 510-521. Search in Google Scholar

Raveendra S.A.S.T., Nissanka S.P., Somasundaram D., Atapattu A.J., Mensah S. (2021): Coconut-gliricidia mixed cropping systems improve soil nutrients in dry and wet regions of Sri Lanka. Agroforestry Systems, 95: 307-319. doi.org/10.1007/s10457-020-00587-2 Search in Google Scholar

Sahrawat K.L., Ravi Kumar G., Rao J.K. (2002): Evaluation of triacid and dry ashing procedures for determining potassium, calcium, magnesium, iron, zinc, manganese, and copper in plant materials. Communications in Soil Science and Plant Analysis, 33(1-2): 95-102. Search in Google Scholar

Shantharam S. & Mattoo A.K. (1997): Enhancing biological nitrogen fixation: An appraisal of current and alternative technologies for N input into plants. Plant and Soil, 194(1-2): 205-216. doi.org/10.1007/978-94-011-7113-7_20 Search in Google Scholar

Smith O.B. & Van Houtert M.F.J. (1987): The feeding value of Gliricidia sepium. A review. World Animal Review, 62: 57–68. Search in Google Scholar

Solangi A.H., Mal B., Kazmi A.R., Iqbal M.Z. (2010): Preliminary studies on the major characteristic, agronomic feature and nutrient value of Gliricidia sepium in coconut plantations of Pakistan. Pakistan Journal of Botany, 42(2): 825-832. Search in Google Scholar

Tesfai M., Alamu E.O., Njoloma J., Nagothu U.S., Joel N. (2022): Agroecological farming approaches that enhance resilience and mitigation to climate change in vulnerable farming systems. 1st Edition, Routledge. Search in Google Scholar

Thomas G.V., Krishnakumar V., Dhanapal R., Srinivasa Reddy D.V. (2018): Agro-management practices for sustainable coconut production. In: The Coconut Palm (Cocos nucifera L.) - Research and Development Perspectives, pp. 227-322. doi.org/10.1007/978-981-13-2754-4_7 Search in Google Scholar

Vennila C., Gunasekaran S., Sankaran V.M. (2016): Effect of lopping interval on the growth and fodder yield of Gliricidia sepium. Agricultural Science Digest-A Research Journal, 36(3): 228-230. Search in Google Scholar

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