2,147
Views
2
CrossRef citations to date
0
Altmetric
Research Article

Standardization of Grafting Time of Mandarin (Citrus reticulata Blanco) in Central Mid Hill of Nepal

, &

References

  • Adhikari, A. 2006. Effect of grafting season on success and growth of acid lime (Citrus aurantifolia Swingle) in Rampur, Chitwan. Rampur, Chitwan, Nepal, Tribhuvan University, IAAS. M.Sc. thesis.
  • APP. 1995. Nepal agriculture perspective plan, final report. Agricultural Project Services Center. Kathmandu, Nepal.
  • Chalise, B., D.R. Baral, D.M. Gautam, and R.B. Thapa. 2013a. Effect of grafting dates and methods on success and growth of Mandarin (Citrus reticulata Blanco) Sapling. Nepal J. Sci. Technol. 14(1):23–30. doi: https://doi.org/10.3126/njst.v14i1.8873.
  • Chalise, B., K.P. Paudyal, and S.P. Srivastava. 2013b. Effect of grafting height on success and subsequent growth of acid lime (Citrus aurantifolia Swingle) Saplings. Nepal J. Sci. Technol. 14(2):25–32. doi: https://doi.org/10.3126/njst.v14i2.10412.
  • Dhakal, D.D. 1979. Stone grafting in mango. Maharastra, India, Konkan Krishi Vidhyapeeth, M.Sc. Thesis.
  • Dubey, A.K., and A.K. Singh. 2003. Evaluation of rootstocks of different mandarin (Citrus reticulata) under foot-hills conditions of Arunchal Pradesh. Indian J. Agric. Sci. 73(10):527–529.
  • FAOSTAT. 2007. Food and Agriculture Organization. http://faostat.fao.org
  • Gautam, I.P., D.N. Sah, and B. Khatri. 2001. Effect of time of grafting and budding on trifoliate rootstocks for appropriate mandarin orange sapling production. Lumle Working Paper No. 2001/20. Lumle Agricultural Research Station, Lumle, Kaski, Nepal.
  • Hartmann, H.T., D.E. Kester, F.T. Devise, and R.L. Geneve. 2002. Plant propagation: Principles and practices. 7th ed. Prentice Hall, Upper Saddle River, NJ.
  • Iqbal, U., M.F. Ahmad, and A.A. Khan. 2004. Effect of timing and environments on budding success in walnut. Progress. Hortic. 36:1–4.
  • Kilany, O.A., M.H. Abd El-Zaher, and H.H. Hamed. 2012. The relationship between the histological features in the grafting areas and the compatibility degrees of some mango cultivars onto nucellar seedlings. J. Hortic. Sci. Ornament. Plants 4(1):58–65.
  • Matsuoka, K., E. Sugawara, R. Aoki, K. Takuma, M. Terao-Morita, S. Satoh, and M. Asahina. 2016. Differential cellular control by cotyledon-derived phytohormones involved in graft reunion of Arabidopsis hypocotyls. Plant Cell Physiol. 57(12):2620–2631. doi: https://doi.org/10.1093/pcp/pcw177.
  • Mazur, E., E. Benkova, and J. Friml. 2016. Vascular cambium regeneration and vessel formation in wounded inflorescence stems of Arabidopsis. Sci. Rep. 6:33754. doi: https://doi.org/10.1038/srep33754.
  • Melnyk, C.W., C. Schuster, O. Leyser, and E.M. Meyerowitz. 2015. A developmental framework for graft formation and vascular reconnection in Arabidopsis thaliana. Current Bio. 25(10):1306–1318. doi: https://doi.org/10.1016/j.cub.2015.03.032.
  • MOAC and FAO. 2011. Training manual for combating citrus decline problem in Nepal, p. 10. Department of Agriculture, Ministry of Agriculture and Cooperatives, Government of Nepal and Food and Agriculture Organization of United Nations, Lalitpur, Nepal.
  • MOALD. 2020. Statistical Information on Nepalese Agriculture (2018/19). Ministry of Agriculture & Livestock Development, Planning and Development Cooperation Coordination Division, Government of Nepal, Singhadurbar, Kathmandu, Nepal.
  • Pandey, S., and S. Karki. 2019. Citrus Fruit Cultivation Technology, p. 19. National Centre for Fruit Development, Kathmandu, Nepal.
  • Patel, R.K., K.D. Babu, A. Singh, D.S. Yadav, and L.C. De. 2010. Soft wood grafting in Mandarin (C. reticulata Blanco): A novel vegetative propagation technique. Inter. J. Fruit Sci. 10(1):54–64. doi: https://doi.org/10.1080/15538361003676793.
  • Poon, T.B. 1999. Effect of grafting methods and time on mandarin sapling production at Dailekh, p. 65–68. Proceed. of the Second Nat. Hortic. Res. Wrkshp., Khumaltar, Lalitpur, 13–15 May 1998.
  • Ramana, K.V.R., V.S. Govindarajan, S. Ranganna, and J. Kefford. 1981. Citrus fruits-varieties, chemistry, technology, and quality evaluation. Part I: Varieties, production, handling, and storage. Crit. Rev. Food Sci. Nutr. 15:353–431. doi: https://doi.org/10.1080/10408398109527321.
  • Regmi, C., I.P. Kafle, K.P. Paudyal, R.P. Devkota, G. Aryal, and G. Awasthi. 2009. Screen house system to produce quality planting materials of Citrus in Banepa, p. 89–92. Proceed. of Fifth Nat. Seminar. on Hortic. Kathmandu, Nepal, 9–10 Jun. 2008.
  • Regmi, C., and B.P. Yadav. 2007. Present status of Huanglongbing in some western districts of Nepal, p. 40–43. Proceed. of Fourth Nat. Hortic. Seminar on Hortic. for Food Sec. Emp. Gener. and Econ. Oppor. Kirtipur, Kathmandu, Nepal, 18–19 Jan. 2007.
  • Seletsu, S., P.K. Paul, and K. Thangjam. 2011. Effect of time and species on bud union and survivability in citrus under Allahbad condition. J. Crop Weed 7(1):89–93.
  • Shah, R.B. 1992. Trainer’s manual No. 16 citrus fruit, p. 523. Manpower Development Agriculture Project, Kathmandu, Nepal.
  • Singh, S., and A. Singh. 2006. Standardization of method and time of propagation in jammun (Syzygium cumini) under semi arid environment of Western India. Indian J. Agric. Sci. 76(4):242–245.
  • United States Department of Agriculture (USDA). 2021. Citrus: World markets and trade. Foreign Agricultural Service, USA.