Zacytuj

Aghdaei, M., Nemati, S. H., Samiee, L., and Sharifi, A. (2019). Effect of rooting medium, cutting type, and auxin on rooting of Pepino (Solanum muricatum Aiton) cutting. Applied Ecology and Environmental Research, 17(5), 10357 ‒ 10369. DOI:10.15666/aeer/1705_1035710369. Search in Google Scholar

Aini, N. A. S., Guanih, V. S. and Ismail, P. (2010). Effects of cuttings positions and growth regulators on rooting ability of Gonystylus bancanus. African Journal of Plant Science, 4(8), 290 ‒ 295. DOI:10.5897/AJPS.9000079. Search in Google Scholar

Bayer, E. M., Smith, R. S., Mandel, T., Nakayama, N., Sauer, M., Prusinkiewicz, P., and Kuhlemeier, C. (2009). Integration of transport-based models for phyllotaxis and midvein formation. Genes and Development, 23(3), 373 ‒ 384. DOI: 10.1101/gad.497009. Search in Google Scholar

Chen, S., Wang, D., Sheng, X., Zhang, C., Li, W., Xiao, N., Wang, L., and Lu, Z. (2022). Comparison of stomatal structure and distribution between ovule and leaves in Ginkgo biloba. Forests, 13, 1 ‒ 11. DOI:10.3390/f13111801. Search in Google Scholar

Das, P., Basak, U. and Das, A. (1997). Metabolic changes during rooting in pre-girdled stem cuttings and air layers of Heritiera. Botanical Bulletin of Academia Sinica, 38, 91 ‒ 95. Search in Google Scholar

Depuydt, S., Praet, S. V., Nelissen, H., Vanholme, B., and Vereecke, D. (2016). How plant hormone and their interactions affect cell growth. In Rose, R. J. (Ed.) Molecular Cell Biology of the Growth and Differentiation of Plant Cells, CRC Press: Boca Rato, pp. 176 ‒ 198. DOI:10.1201/b20316-14. Search in Google Scholar

Gauchan, D. P., Dhakal, A., Sharma, N., Bhandari, S., Maskey, E., Shrestha, N., Gautam, R., Giri, S., and Gurung, S. (2014). Regenerative callus induction and biochemical analysis of Stevia rebaudiana Bertoni. Journal of Advanced Laboratory Research in Biology, 5(3), 41 ‒ 45. Search in Google Scholar

Ghose, A. K., Abdullah, S. N. A., Hatta, M. A. Md., and Wahab, P. E. M. (2022). In vitro regeneration of Stevia (Stevia rebaudiana Bertoni) and evaluation of the impacts of growth media nutrients on the biosynthesis of steviol glycosides (SGs). Agronomy, 12, 1 ‒ 24. DOI:10.3390/agronomy12081957. Search in Google Scholar

Hartmann, H. T., Kester, D. E., Davies, F. T., and Geneve, R. L. (1997). Plant Propagation: Principles and Practices. 6th ed. New Jersey: Prentice Hall. ISBN:978-0-13-261488-7. Search in Google Scholar

Jahan, M. T., Islam, M. R., Roy, P. K., Mamun, A. N. K, and Islam, M. A. (2014). In vitro clonal propagation of Stevia rebaudiana Bertoni through node and shoot tip culture. Nuclear Sciences and Applications, 23, 61 ‒ 65. Search in Google Scholar

Kassahun, B. M., Mekonnen, Sa. (2012). Effect of cutting position and rooting hormone on propagation ability of stevia (Stevia rebaudiana Bertoni). The African Journal of Plant Science and Biotechnology, 6(1), 5 ‒ 8. Search in Google Scholar

Kaur, S., Cheema, S., Chhabra, B., and Talwar, K. (2002). Chemical induction of physiological changes during adventitious root formation and bud break in grapevine cuttings. Plant Growth Regulation, 37(1), 63 ‒ 68. DOI: 10.1023/A:1020355505105. Search in Google Scholar

Keeley, K., Preece, J. E., Taylor, B. H., and Dami, I. E. (2004). Effects of high auxin concentrations, cold storage, and cane position on improved rooting of Vitis aestivalis michx. Norton cuttings. American Journal of Enology and Viticulture, 55(3), 265 ‒ 268. DOI:10.5344/ajev.2004.55.3.265. Search in Google Scholar

Khalil, S. A., Zamir, R. and Ahmad, N. (2014). Selection of Suitable Propagation Method for Consistent Plantlets Production in Stevia rebaudiana (Bertoni). Saudi Journal of Biological Sciences, 21, 566 ‒ 573. DOI:10.1016/j. sjbs.2014.02.005. Search in Google Scholar

Khan, M. A., Wang, Y., Muhammad, B., Uddin, S., Saeed, A., Khan, D., Ali, M., Saeed, S., and Jia, Z. (2021). Morpho-physiological and phytohormonal changes during the induction of adventitious root development stimulated by exogenous IBA application in Magnolia biondii Pamp. Brazilian Journal of Biology, 24, 1 ‒ 10. DOI:10.1590/1519-6984.255664. Search in Google Scholar

Khudur, S. A. and Omer, T. J. (2015). Effect of NAA and IAA on stem cuttings of Dalbergia sissoo (Roxb). Journal of Biology and Life Science, 6(2), 1 ‒ 13. DOI:10.5296/jbls. v6i2.7445. Search in Google Scholar

Kovylyaeva, G. I., Bakaleinik, G. A., Strobykina, I. Y., Gubskaya, V. I., Sharipova, R. R., Al’fonsov, V. A., Kataev, V. E., and Tolstikov, A. G. (2007). Glycosides from Stevia rebau-diana. Chemistry of Natural Compounds, 43, 81 ‒ 85. DOI: 10.1007/s10600-007-0037-x. Search in Google Scholar

Latifa, R., Hadi, S. and Nurrohman, E. (2019). The exploration of chlorophyll content of various plants in city forest of Malabar Malang. Bioedukasi, 17(2), 50 ‒ 62. DOI: 10.19184/bioedu.v17i2.14091. Search in Google Scholar

Lemus-Mondaca, R., Vega-Galvez, A., Zura-Bravo, L., Ah-Hen L. (2012). Stevia rebaudiana Bertoni, source of a high-potency natural sweetener: A comprehensive review on the biochemical, nutritional and functional aspect. Food Chemistry, 132(3), 1121 ‒ 1132. DOI:10.1016/j.food-chem.2011.11.140. Search in Google Scholar

Leyser, O. (2018). Auxin signaling. Plant Physiology, 176(1), 465 ‒ 479. DOI:10.1104/pp.17.00765. Search in Google Scholar

Li, S. W., Xue, L. and Feng, H. (2009). IBA induced changes in antioxidant enzymes during adventitious rooting in mung bean seedlings. Environmental and Experimental Botany, 66, 442 ‒ 450. DOI:10.1016/j.envexpbot.2009.03.005. Search in Google Scholar

Livanos, P., Giannoutsou, E., Apostolakos, P., and Galatis, B. (2015). Auxin as an inducer of asymmetrical division generating the subsidiary cells in stomatal complexes of Zea mays. Plant Signalling & Behavior, 10, 1 ‒ 15. DOI: 10.4161/15592324.2014.984531. Search in Google Scholar

Nanda, K. K., Anand, V. K. and Kumar, P. (1970). Some investigation on the use of auxins in vegetative reproduction of forest plants. Indian Forester, 96(3), 171 ‒ 187. Search in Google Scholar

Ogunyale, O. G., Fawibe, O. O., Ajiboye, A. A., and Agboola, D. A. (2014). A review of plant growth substance: their forms, structure, synthesis, and function. Journal of Advanced Laboratory Research in Biology, 5(4), 152 ‒ 168. Search in Google Scholar

Peteliuk, V., Rybchuk, L., Bayliak, M., Storey, K. B., and Lush-chak, O. (2021). Natural sweetener Stevia rebaudiana: functionalities, health benefits, and potential risks. EXCLI Journal, 20, 1412 ‒ 1430. DOI:10.17179/excli2021-4211. Search in Google Scholar

Pooja, H. S. and Sadatulla, F. (2022). Effect of indole-3-butyric acid (IBA) on performance of Mulberry (Morus alba L.) sapling: A review. International Journal of Environment and Climate Change, 12(12), 791 ‒ 797. DOI:10.9734/ ijecc/2022/v12i121515. Search in Google Scholar

Reinhardt, D., Pesce, E. R., Stieger, P., Mandel, T., Baltensperger, K., Bennett, M., Traas, J., Friml, J., and Kuhlemeier, C. (2003). Regulation of phyllotaxis by polar auxin transport. Nature, 426(6964), 255 ‒ 260. DOI:10.1038/nature02081. Search in Google Scholar

Samuel, P., Ayoob, K. T., Magnuson, B. A., Wolwer-Rieck, U., Jeppesen, P. B., Rogers, P. J., Rowland, I., and Mathews, R. (2018). Stevia leaf to stevia sweetener: exploring its science, benefits, and future potential. The Journal of Nutrition, 148, 1186 ‒ 1205. DOI:10.1093/jn/nxy102. Search in Google Scholar

Satpal, M., Rawat, S. S., Singh, K. K. (2014). Effect of various concentrations of IBA, type of cuttings and planting time on the rooting of cuttings of lemon (Citrus limon Burm.) cv. Pant Lemon-1 under valley conditions of Garhwal Himalaya. International Journal of Current Research, 6(12), 10974 ‒ 10976. Search in Google Scholar

Seran, T. H. and Umadevi, T. (2011). Influence of Indole Acetic Acid (IAA) on the establishment of stem cuttings in lemon (Citrus limon L.). Journal of Agricultural Research, 49(4), 517 ‒ 524. DOI:10.1093/jn/nxy102. Search in Google Scholar

Singh, M., Saharan, V., Dayma, J., Rajpurohit, D., Sen, Y., and Sharma, A. (2017). In vitro propagation of Stevia rebaudiana (Bertoni): An overview. International Journal of Current Microbiology and Applied Sciences, 6(7), 1010 ‒ 1022. DOI:10.20546/ijcmas.2017.607.122. Search in Google Scholar

Singh, V. P., Mishra, D. S., Mishra, N. K., and Rai, T. (2015). Effect of growing season, PGRs, and rooting media on survival of hardwood stem cuttings of lemon (Citrus limon Burm.) CV. Pant Lemon-1. HortFlora Research Spectrum, 4(4), 347 ‒ 350. Search in Google Scholar

Smitha, G. R. and Umesha, K. (2012). Vegetative propagation of stevia (Stevia rebaudiana (Bertoni) Hemsl.) through stem cuttings. Journal of Tropical Agriculture, 50(1 ‒ 2), 72 ‒ 75. Search in Google Scholar

Supyandi, D., Sukayat, Y. and Hapsari, H. (2018). Farmer readiness for adopting stevia cultivation (a case study at District of Pasir Jambu, Regency of Bandung). IOP Conf. Series: Earth and Environmental Sciences, 142, 1 ‒ 6. DOI: 10.1088/1755-1315/142/1/012069. Search in Google Scholar

Swarts, A., Matsiliza-Mlathi, B., Kleynhans, R. (2018). Rooting and survival of Lobostemon fruticosus (L) H. Buek stem cuttings as affected by season, media and cuttings position. South African Journal of Botany, 119, 80 ‒ 85. DOI: 10.1016/j.sajb.2018.08.019. Search in Google Scholar

Tivendale, N. D. and Millar, A. H. (2022). How is auxin linked with cellular energy pathways to promote growth? New Phytologist, 233(6), 2397 ‒ 2404. DOI:10.1111/nph.17946. Search in Google Scholar

Wang, J. J. and Guo, H. S. (2015). Cleavage of indole-3-acetic acid inducible28 mRNA by microRNA847 upregulates auxin signaling to modulate cell proliferation and lateral organ growth in Arabidopsis. The Plant Cell, 27(3), 574 ‒ 590. DOI:10.1105/tpc.15.00101. Search in Google Scholar

Xuan, X., Wang, Y., Ma, S., and Ye, X. (2011). Comparisons of stomatal parameters between normal and abnormal leaf of Bougainvillea spectablis Willd. African Journal of Biotechnology, 10(36), 6973 ‒ 6978. DOI:10.5897/AJB10.2196. Search in Google Scholar

Yadav, A. K., Singh, S., Dhyani, D., and Ahuja, P. S. (2011). A review on the improvement of Stevia (Stevia rebaudiana Bertoni). Canadian Journal of Plant Science, 9(11), 1 ‒ 27. DOI:10.4141/cjps10086. Search in Google Scholar

Yoon, A., Oh, H. E., Kim, S. Y., and Park, Y. G. (2021). Plant growth regulators and rooting substrates affect growth and development of Salix koriyanagi cuttings. Rhizosphere, 20, 1 ‒ 4. DOI:10.1016/j.rhisph.2021.100437. Search in Google Scholar

Zhao, Y. (2018). Essential roles of local auxin biosynthesis in plant development and in adaptation to environmental changes. Annual Review of Plant Biology, 69, 417 ‒ 435. DOI:10.1146/annurev-arplant-042817-040226. Search in Google Scholar

eISSN:
1338-4376
Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Life Sciences, Plant Science, Ecology, other