[1]

Dold C, Staver C, Pocasangre L, Heller J. 2008. Musa in shaded perennial crops-response to light interception. In Conference on Int. Res. on food security natural resource management and rural development, Hohenheim, Germany, 7−9 October 2008. University of Hohenheim, Centre for Agriculture in the Tropics and Subtropics, Germany.

[2]

Muralidharan A. 1980. Biomass productivity, plant interactions and economics of intercropping in areca nut garden. PhD Thesis. University of Agricultural Sciences, Bangalore, Karnataka, India. pp. 271

[3]

Dauzat J, Eroy MN. 1997. Simulating light regime and intercrop yields in coconut based farming systems. European Journal of Agronomy 7:63−74

doi: 10.1016/S1161-0301(97)00029-4
[4]

Food and Agricultural Organisation (FAO). 2018. www.fao.org/faostat/en/#data (Accessed on 26.11.2020)

[5]

Sujatha S, Bhat R, Chowdappa P. 2016. Cropping systems approach for improving resource use in areca nut (Areca catechu L.) plantation. Indian Journal of Agricultural Sciences 86:1113−20

doi: 10.56093/ijas.v86i9.61349
[6]

Norgrove L. 1998. Musa in multistrata systems: focus on shade. Info musa (International magazine on banana and plantain) 7:17−22

[7]

Marimuthu R. 2005. Multi species cropping system in coconut garden. Madras Agricultural Journal 92:404−6

doi: 10.29321/MAJ.10.A01334
[8]

Rodrigo VHL, Stirling CM, Naranpanawa RMAKB, Herath PHMU. 2001. Intercropping of immature rubber in Sri Lanka: present status and financial analysis of intercrops planted at three densities of banana. Agroforestry Systems 51:35−48

doi: 10.1023/A:1006449230436
[9]

Sarmiento-Soler A, Vaast P, Hoffmann MP, Jassogne L, van Asten P, et al. 2020. Effect of cropping system, shade cover and altitudinal gradient on coffee yield components at Mt. Elgon, Uganda. Agriculture, Ecosystems and Environment 295:106887

doi: 10.1016/j.agee.2020.106887
[10]

Israeli Y, Plaut Z, Schwartz A. 1995. Effect of shade on banana morphology, growth and production. Scientia Horticulturae 62:45−56

doi: 10.1016/0304-4238(95)00763-J
[11]

Ganeshamurthy AN, Satisha GC, Patil P. 2011. Potassium nutrition on yield and quality of fruit crops with special emphasis on banana and grapes. Karnataka Journal of Agriculural Sciences 24(1):29−38

[12]

Ndabamenye T, Vanlauwe B, Van Asten PJA, Blomme G, Swennen R, et al. 2013. Influence of plant density on variability of soil fertility and nutrient budgets in low input East African highland banana (Musa spp. AAA-EA) cropping systems. Nutrient Cycling Agroecosystems 95(2):187−202

doi: 10.1007/s10705-013-9557-x
[13]

Jeyabaskaran KJ, Pitchaimuthu R, Uma S. 2018. Assessing nutrient uptake pattern with respect to dry matter accumulation in Ney Poovan (AB) banana at critical growth stages. Indian Journal of Horticulture 75(3):405−10

doi: 10.5958/0974-0112.2018.00069.5
[14]

Lahav E, Turner DW. 1983. Bananas Nutrition. International Potash Institute (IPIN) Bulletin. 7:33

[15]

Hauser S. 2010. Growth and yield response of the plantain (Musa spp. ) hybrid 'FHIA 21' to shading and rooting by Inga edulis on a Southern Cameroonian ultisol. Acta Horticulturae 879:487−94

doi: 10.17660/ActaHortic.2010.879.53
[16]

Subbaiah VV, Asija GK. 1956. A rapid procedure for utilization of available nitrogen in soil. Current Science 26:258−60

[17]

Bray RH, Kurtz LT. 1945. Determination of total, organic and available forms of phosphorus in soils. Soil Science 59:39−45

doi: 10.1097/00010694-194501000-00006
[18]

Hanway JJ, Heidal H. 1952. Soil analysis methods used in Iowa State College Soil Testing Lab. Iowa Agriculture 57:1−31

[19]

Alves LA, de Oliveira Denardin LG, Martins AP, Anghinoni I, de Faccio Carvalho PC, et al. 2019. Soil acidification and P, K, Ca and Mg budget as affected by sheep grazing and crop rotation in a long-term integrated crop-livestock system in southern Brazil. Geoderma 351:197−208

doi: 10.1016/j.geoderma.2019.04.036
[20]

Rethinam P. 1990. Potassium nutrition in plantation crops. Proceedings of Seminar on Potassium for Plantation Crops. Nov. 6-8, 1990. Gurugram, Haryana Indiapp: Potash Research Institute of India. pp. 7−15.

[21]

Arunachalam V, Reddy DSV. 2007. Foliar traits of jasmine plants intercropped in coconut. Agroforestry Systems 71:19−23

doi: 10.1007/s10457-007-9084-3
[22]

Rodrigo VHL, Stirling CM, Teklehaimanot Z, Nugawela A. 1997. The effect of planting density on growth and development of component crops in rubber/banana intercropping systems. Field Crops Research 52:95−108

doi: 10.1016/S0378-4290(96)01069-6
[23]

Khayat E, Regev S, Amira M, Duvdevani A. 1999. Proposed mechanism for the occurrence of the long narrow leaf (LNL) Cavendish mutant in micropropagated Cavendish bananas. Info musa (International magazine on banana and plantain) 8(2):8−9

[24]

Israeli Y, Reuveni O, Lahav E. 1991. Qualitative aspects of somaclonal variations in banana propagated by in vitro techniques. Scientia Horticulturae 48(1-2):71−88

doi: 10.1016/0304-4238(91)90154-Q
[25]

Murray DB. 1961. Shade and fertilizer relations in the banana. Tropical Agriculture 38:123−32

[26]

Turner DW, Lahav E. 1983. The growth of banana plants in relation to temperature. Australian Journal of Plant Physiology 10(1):43−53

doi: 10.1071/PP9830043
[27]

Turner DW, Fortescue JA, Ocimati W, Blomme G. 2016. Plantain cultivars (Musa spp. AAB) grown at different altitudes demonstrate cool temperature and photoperiod responses relevant to genetic improvement. Field Crops Research 194:103−11

doi: 10.1016/j.fcr.2016.02.006
[28]

Norgrove L, Hauser S. 2002. Yield of plantain grown under different tree densities and 'slash and mulch' versus 'slash and burn' management in an agrisilvicultural system in southern Cameroon. Field Crops Research 78:185−95

doi: 10.1016/S0378-4290(02)00134-X
[29]

Ashokan PK, Wahid PA Sreedharan C. 1988. Relative uptake of 32P by cassava, banana, elephant foot yam and groundnut in intercropping systems. Plant and Soil 109:23−30

doi: 10.1007/BF02197576
[30]

Ndabamenye T, Van Asten PJA, Blomme G, Vanlauwe B, Swennen R, et al. 2013. Ecological characteristics and cultivar influence optimal plant density of East African highland bananas (Musa spp. AAA-EA) in low input cropping systems. Scientia Horticulturae 150:299−311

doi: 10.1016/j.scienta.2012.11.037
[31]

Arunachalam V, Fernandes CM, Salgaonkar DC. 2020. Quick method to quantify the potassium and sodium content variation in leaves of banana varieties. Analytical Sciences 36(10):1255−59

doi: 10.2116/analsci.20P096
[32]

Paramesh V, Arunachalam V, Nath AJ. 2019. Enhancing ecosystem services and energy use efficiency under organic and conventional nutrient management system to a sustainable arecanut based cropping system. Energy 187:115902

doi: 10.1016/j.energy.2019.115902
[33]

Rajan KC, Geethakumari VL, Mohammed Kunju U, Elizabeth Syriac K. 1988. Intercropping banana varieties in coconut gardens. Agricultural Research Journal of Kerala, 26(1):79−84

[34]

Assuncao Neto JF, Farias WR, Mareli JP, Amorim EP, Cordeiro ZJ, et al. 2015. Superior banana varieties in a Cacao-Cabruca agroforestry system in South of Bahia. 3rd World Congress on integrated crop-livestock-forest systems. International symposium on integrated crop-livestock systems - Towards sustainable intensification, Brasília, Brizil, 2015. Cruz das Almas, Brazil: Embrapa Mandioca e Fruticultura. www.alice.cnptia.embrapa.br/alice/bitstream/doc/1037666/1/APDJ1SuperiorbananavarietiesinaCacaoCabrucaagrofo.pdf

[35]

Malia IE. 2021. Intercropping of several cultivars of banana and plantain under coconut based in North Sulawesi, Indonesia. E3S Web of Conferences 232:03007

doi: 10.1051/e3sconf/202123203007