Abdollahi MR, Ghazanfari P, Corral-Martínez P, Moieni A, Seguí-Simarro JM (2012) Enhancing secondary embryogenesis in Brassica napus by selecting hypocotyl-derived embryos and using plant-derived smoke extract in culture medium. Plant Cell, Tissue Organ Cult 110:307–315. doi: 10.1007/s11240-012-0152-7
Arnedo Andrés MS, Garcés Claver A, Esteban Chapapría J, Peiró Abril JL, Palazón C, Luis Arteaga M, Gil Ortega R (2004) Application of anther culture and molecular markers to a pepper breeding program for diseases resistance. Capsicum Eggplant Newsl 23:105–108
Campos FF, Morgan DTJ (1958) Haploid pepper from a sperm. J Hered 49:135–137
[+]
Abdollahi MR, Ghazanfari P, Corral-Martínez P, Moieni A, Seguí-Simarro JM (2012) Enhancing secondary embryogenesis in Brassica napus by selecting hypocotyl-derived embryos and using plant-derived smoke extract in culture medium. Plant Cell, Tissue Organ Cult 110:307–315. doi: 10.1007/s11240-012-0152-7
Arnedo Andrés MS, Garcés Claver A, Esteban Chapapría J, Peiró Abril JL, Palazón C, Luis Arteaga M, Gil Ortega R (2004) Application of anther culture and molecular markers to a pepper breeding program for diseases resistance. Capsicum Eggplant Newsl 23:105–108
Campos FF, Morgan DTJ (1958) Haploid pepper from a sperm. J Hered 49:135–137
Corral-Martínez P, Seguí-Simarro JM (2012) Efficient production of callus-derived doubled haploids through isolated microspore culture in eggplant (Solanum melongena L.). Euphytica. doi: 10.1007/s10681-012-0715-z
Corral-Martínez P, Nuez F, Seguí-Simarro JM (2011) Genetic, quantitative and microscopic evidence for fusion of haploid nuclei and growth of somatic calli in cultured ms10 35 tomato anthers. Euphytica 178:215–228. doi: 10.1007/s10681-010-0303-z
Dumas de Vaulx R, Chambonnet D (1982) Culture in vitro d’anthères d’aubergine (Solanum melongena L.): stimulation de la production de plantes au moyen de traitements à 35°C associés à de faibles teneurs en substances de croissance. Agronomie 2:983–988
Dumas de Vaulx R, Pochard E (1986) Parthogénese et androgénese chez le piment. Role actuel dans les programmes de selection. Le Selectionneur Francais 36:3–16
Dumas de Vaulx R, Chambonnet D, Pochard E (1981) Culture in vitro d’anthères de piment (Capsicum annuum L.): amèlioration des taux d’obtenction de plantes chez différents génotypes par des traitments à +35°C. Agronomie 1:859–864
Dunwell JM (2010) Haploids in flowering plants: origins and exploitation. Plant Biotechnol J 8:377–424. doi: 10.1111/j.1467-7652.2009.00498.x
Ferrie A, Caswell K (2011) Isolated microspore culture techniques and recent progress for haploid and doubled haploid plant production. Plant Cell, Tissue Organ Cult 104:301–309. doi: 10.1007/s11240-010-9800-y
Ferriol M, Pico B, Nuez F (2003) Genetic diversity of a germplasm collection of Cucurbita pepo using SRAP and AFLP markers. Theor Appl Genet 107:271–282
George L, Narayanaswamy S (1973) Haploid Capsicum through experimental androgenesis. Protoplasma 78:467–470
Germanà MA (2011) Anther culture for haploid and doubled haploid production. Plant Cell, Tissue Organ Cult 104:283–300. doi: 10.1007/s11240-010-9852-z
Guha S, Maheshwari SC (1964) In vitro production of embryos from anthers of Datura. Nature 204:497
Hwang JK, Paek KY (1998) Breeding of resistant pepper lines (Capsicum annuum L.) to bacterial spot (Xanthomonas campestris Pv. Vesicatoria) through anther culture. Acta Hort 461:301–307
Irikova T, Grozeva S, Rodeva V (2011) Anther culture in pepper (Capsicum annuum L.) in vitro. Acta Physiol Plant 33:1559–1570. doi: 10.1007/s11738-011-0736-6
Jiang ZR, Li CL (1984) Observations and experiments on later generations of sweet x hot pepper derived by anther culture. Acta Hort Sin 11:191–194
Kim M, Park E-J, An D, Lee Y (2012) High-quality embryo production and plant regeneration using a two-step culture system in isolated microspore cultures of hot pepper (Capsicum annuum L.). Plant Cell Tissue Organ Cult. doi: 10.1007/s11240-012-0222-x
Kuo JS, Wang YY, Chien NF, Ku SJ, Kung ML, Hsu HC (1973) Investigations on the anther culture in vitro of Nicotiana tabacum L. and Capsicum annuum L. Acta Bot Sin 15:47–52
Lantos C, Juhász A, Somogyi G, Ötvös K, Vági P, Mihály R, Kristóf Z, Somogyi N, Pauk J (2009) Improvement of isolated microspore culture of pepper (Capsicum annuum L.) via co-culture with ovary tissues of pepper or wheat. Plant Cell, Tissue Organ Cult 97:285–293. doi: 10.1007/s11240-009-9527-9
Lantos C, Juhasz AG, Vagi P, Mihaly R, Kristof Z, Pauk J (2012) Androgenesis induction in microspore culture of sweet pepper (Capsicum annuum L.). Plant Biotechnol Rep 6:123–132. doi: 10.1007/s11816-011-0205-0
Minamiyama Y, Tsuro M, Hirai M (2006) An SSR-based linkage map of Capsicum annuum. Mol Breed 18:157–169. doi: 10.1007/s11032-006-9024-3
Mythili JB, Thomas P (1995) Some factors influencing the in vitro establishment and callusing of anthers in Capsicum (Capsicum annuum L. var. Grossum Sendt). Indian J Plant Physiol 38:126–130
Parra-Vega V, González-García B, Seguí-Simarro JM (2012) Morphological markers to correlate bud and anther development with microsporogenesis and microgametogenesis in pepper (Capsicum annuum L.). Acta Physiol Plant. doi: 10.1007/s11738-012-1104-x
Portis E, Nagy I, Sasvári Z, Stágel A, Barchi L, Lanteri S (2007) The design of Capsicum spp. SSR assays via analysis of in silico DNA sequence, and their potential utility for genetic mapping. Plant Sci 172:640–648. doi: 10.1016/j.plantsci.2006.11.016
Regner F (1996) Anther and microspore culture in Capsicum. In: Jain SM, Sopory SK, Veilleux RE (eds) In vitro haploid production in higher plants, vol 3., Kluwer AcademicDordrecht, The Netherlands, pp 77–89
Salas P, Prohens J, Seguí-Simarro JM (2011) Evaluation of androgenic competence through anther culture in common eggplant and related species. Euphytica 182:261–274. doi: 10.1007/s10681-011-0490-2
Seguí-Simarro JM (2010) Androgenesis revisited. Bot Rev 76:377–404. doi: 10.1007/s12229-010-9056-6
Seguí-Simarro JM, Nuez F (2005) Meiotic metaphase I to telophase II is the most responsive stage of microspore development for induction of androgenesis in tomato (Solanum lycopersicum). Acta Physiol Plant 27:675–685
Seguí-Simarro JM, Nuez F (2007) Embryogenesis induction, callogenesis, and plant regeneration by in vitro culture of tomato isolated microspores and whole anthers. J Exp Bot 58:1119–1132
Seguí-Simarro JM, Nuez F (2008) How microspores transform into haploid embryos: changes associated with embryogenesis induction and microspore-derived embryogenesis. Physiol Plant 134:1–12. doi: 10.1111/j.1399-3054.2008.01113.x
Seguí-Simarro JM, Corral-Martínez P, Parra-Vega V, González-García B (2011) Androgenesis in recalcitrant solanaceous crops. Plant Cell Rep 30:765–778. doi: 10.1007/s00299-010-0984-8
Supena EDJ, Custers JBM (2011) Refinement of shed-microspore culture protocol to increase normal embryos production in hot pepper (Capsicum annuum L.). Sci Hort 130:769–774. doi: 10.1016/j.scienta.2011.08.037
Supena EDJ, Muswita W, Suharsono S, Custers JBM (2006a) Evaluation of crucial factors for implementing shed-microspore culture of Indonesian hot pepper (Capsicum annuum L.) cultivars. Sci Hort 107:226–232
Supena EDJ, Suharsono S, Jacobsen E, Custers JBM (2006b) Successful development of a shed-microspore culture protocol for doubled haploid production in Indonesian hot pepper (Capsicum annuum L.). Plant Cell Rep 25:1–10
Wang Y–Y, Sun C-S, Wang C–C, Chien N-F (1973) The induction of the pollen plantlets of triticale and Capsicum annuum from anther culture. Sci Sin 16:147–151
[-]