2024
Bustami M. U., Werbrouck S. P. O., Cyclic Somatic Embryogenesis in Indonesian Elite Theobroma cacao L. Clones, Horticulturae 2024, 10, 24. Click here
Daurov, D.; Daurova, A.; Sapakhova, Z.; Kanat, R.; Akhmetzhanova, D.; Abilda, Z.; Toishimanov, M.; Raissova, N.; Otynshiyev, M.; Zhambakin, K.; Shamekova, M. The Impact of the Growth Regulators and Cultivation Conditions of Temporary Immersion Systems (TISs) on the Morphological Characteristics of Potato Explants and Microtubers. Agronomy 2024, 14(8), 1782. Click here
del Rosario Moreno-Hernández, M., Mancilla-Álvarez, E., Aguilar-Jiménez, D., Bello-Bello, J.J. (2024), In Vitro Multiplication of Agave (A. marmorata and A. potatorum) by Temporary Immersion in SETIS™ Bioreactor In: Ramírez-Mosqueda, M.A., Cruz-Cruz, C.A. (eds) Micropropagation Methods in Temporary Immersion Systems. Methods in Molecular Biology, vol 2759, Humana, New York, NY. Click here
Jing Y., Beleski, D., Vendrame W., Micropropagation and Acclimatization of Monstera deliciosa Liebm. ‘Thai Constellation’,Horticulturae 2024, 10, 1. Click here
2023
Bozkurt T., Inan S., Dundar I., 2023, Comparison of Temporary Immersion Bioreactor (SETIS™) and Classical Solid Culture in Micropropagation of ‘Grand Naine’ (Musa spp.) Banana Cultivar, Journal of Agricultural Science; Vol. 15, No. 12, ISSN 1916-9752 E-ISSN 1916-9760 Published by Canadian Center of Science and Education. Click here
Dyduch-Siemińska M., Błaszczyk W., Gawroński J., Influence of Medium Type and Culture Method on the Multiplication Efficiency of Chlorophytum comosum (Thunb.) Jaques in in vitro Conditions, Acta Sci. Pol. Hortorum Cultus, 22(6) 2023, 91-102. Click here
Duzgoren B., Sen E. Y., Mendi Y., Current Applications in Setis Bioreactor Systems in Ornamental Plants, 2023, 9th International Agriculture Congress.
Fraj, H., Werbrouck, S. P., Constant and Intermittent Contact with the Volatile Organic Compounds of Serendipita indica Alleviate Salt Stress In Vitro Ocimum basilicum L. Appl. Sci. 2023, 13, 1776. Click here
Lopes T., Correia M., Pedrosa A., Baltazar E., Canhoto J. and Correia S. (2023), Improved micropropagation of Prunus spp. rootstocks using temporary immersion systems, Acta Hortic. 1359, 249-254. Click here
Méndez-Hernández H.A., Galaz-Ávalos R.M., Quintana-Escobar A.O., Pech-Hoil R., Collí-Rodríguez A.M., Salas-Peraza I.Q., Loyola-Vargas V.M., In Vitro Conversion of Coffea spp. Somatic Embryos in SETIS™ Bioreactor System, Plants 2023, 12, 3055. Click here
Murthy H. N., Joseph K. S., Paek K. Y. and Park S. Y., 2023, Bioreactor systems for micropropagation of plants: present scenario and future prospects, Front. Plant Sci. 14:1159588. Click here
Nongdam P., Beleski D. G., Tikendra L., Dey A., Varte V., EL Merzougui S., Pereira V.M., Barros P. R., Vendrame, W.A., Orchid Micropropagation Using Conventional Semi-Solid and Temporary Immersion Systems: A Review, Plants 2023, 12, 1136. Click here
Vendrame W.A., Xu J. and Beleski D.G., Micropropagation of Brassavola nodosa (L.) Lindl. using SETIS™ bioreactor, Plant Cell Tiss Organ Cult 153, 67–76 (2023). Click here
Zambela J. A., Espinosa-Reyes L. A., Perez-Perez L. J., Contenido de nutrientes minerales y metabolitos durante la multiplicación en biorreactores de Dioscorea alata (Original), (2023), Redel, Revista Granmense De Desarrollo Local, 8(1), 197-216. Click here
2021
Alves V., Pinto R., Debiasi C., Santos M. C., Goncalves J. S., Domingues J., Micropropagation of Corema album from adult plants in semisolid medium and temporary immersion bioreactor, Plant Cell, Tissue and Organ Culture (PCTOC) 2021, 145:641–648. Click here
Andriani S., Siregar M. A. L., Safni I., Microtubers production by using Temporary Immersion System (TIS) bioreactor to potato varieties, IOP Conf. Series: Earth and Environmental Science 886 (2021). doi:10.1088/1755-1315/886/1/012005
AR S.-S., and Norwati M. (2021), Micropropagation of Nepenthes Hybrid (N. Viking x N. Miranda) Using a Temporary Immersion Bioreactor System, SETIS, Journal of Tropical Forest Science (JTFS), 33(4), 494–500. Click here
Bello-Bello J. J. and Ramirez-Mosqueda A. M., SETIS™ bioreactor increases in vitro multiplication and shoot length in vanilla (Vanilla planifolia Jacks. Ex Andrews), Acta Physiologiae Plantarum (2021) 43:52. Click here
Bošnjak D., Marković M., Agić D., Vinković T., Tkalec Kojić M., Ravnjak B., Stanisavljević A., The Influence of Nutrient Media Modification on the Morphological Parameters in Raspberry (Rubus idaeus L.), Micropropagation in the Liquid and Semi-solid Media, Poljoprivreda 27:2021 (1) 22- 29. Click here
Mancilla-Álvarez, E., Pérez-Sato, J.A., Núñez-Pastrana, R., Spinoso-Castillo, J.L., Bello-Bello, J.J., Comparison of Different Semi-Automated Bioreactors for In Vitro Propagation of Taro (Colocasia esculenta L. Schott), Plants 2021, 10, 1010. Click here
Trentini E. G, Rojas M., Gajardo D., Alburquenque D., Villagra E., Gómez A., Arru L., Arencibia D. A., Elicitation of phenylpropanoids in maqui (Aristotelia chilensis [Mol.] Stuntz) plants micropropagated in photomixotrophic temporary immersion bioreactors (TIBs), Plant Cell, Tissue and Organ Culture (PCTOC) (2021) 146: 607–619. Click here
2020
DaSilva A. J., Solis-Gracia N., Jifon J., Souza C. S., Mandadi K. K., 2020, Use of bioreactors for largescale multiplication of sugarcane (Saccharum spp.), energy cane (Saccharum spp.), and related species, In Vitro Cellular & Developmental Biology – Plant, Click here
Lotfi M. and Werbrouck S.P.O., SETIS™, a novel variant within the temporary immersion bioreactors, Acta Hortic. 1285. ISHS 2020. DOI 10.17660/ActaHortic.2020.1285.37, XXX IHC – Proc. II Int. Symp. on Micropropagation and In Vitro Techniques.
Pérez-Pérez J. L., Fonseca-Yero M., Bahi-Arevich M., Silva-Pupo J. J. and Werbrouck S., In vitro multiplication of Morus alba L. Criolla variety in temporary immersion systems, Pastos y Forrajes, 43 (3):221-229, 2020.
2019
Bello-Bello J. J., Cruz-Cruz A. C., Perez-Guerra C. J., A new temporary immersion system for commercial micropropagation of banana (Musa AAA cv. Grand Naine), The Society for In Vitro Biology 2019 In Vitro Cellular & Developmental Biology – Plant. Click here
Yanez N. E. M., 2019, Multiplicacion in vitro de Aristotelica chilensis en sistema de inmersion temporal SETIS, Universidad de Talca como, Parte de los requisitos para optar al titulo de, Ingeniero Agronomo, Talca
2018
Chukwunalu O., Balogun M., Maroya N. and Asiedu R., YIIFSWA Research Brief: Improving Yam Micropropagation Series 2, Development of micropropagation system for yam (Dioscorea spp.) using somatic embryogenesis, International Institute of Tropical Agriculture, Ibadan, Nigeria, 8 pp.
Ramasamy M., Mora V., Damaj B. M., Padilla S. C., Ramos N., Rossi D., Solis-Gracia N., VargasBautista C., Irigoyen S., DaSilva A. J., Mirkov E. T., Mandadi K. K. (2018). A biolistic-based genetic transformation system applicable to a broad range of sugarcane and energycane varieties, GM Crops & Food. doi: 10.1080/21645698.2018.1553836
Rosales C., Brenes J., Salas, K., Arce-Solano, S., and Abdelnour-Esquivel, A. (2018), Micropropagation of Stevia rebaudiana in temporary immersion systems as an alternative horticultural production method, Revista Chapingo Serie Horticultura, 24(1), 69-84. doi: 10.5154/r.rchsh.2017.08.028
2017
Balogun M., Maroya N., Taiwo J., Chukwunalu O., Ajayi A., Kumar L. P., Pelemo O., Aighewi B., and Asiedu R., 2017, Clean Breeder Seed Yam Tuber Production using Temporary Immersion Bioreactors, IITA, Ibadan, Nigeria, 66 pp.
Bello-Bello J. J., Mendoza-Mexicano M., and Pérez-Sato A. J., In Vitro Propagation of Sugarcane for Certified Seed Production, 2017 Sugarcane - Technology and Research, InTech. doi: 10.5772/intechopen.74037