Publications
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“Cytomixis and meiotic abnormalities during microsporogenesis are responsible for male sterility and chromosome variations in Houttuynia cordata”, vol. 11, pp. 121-130, 2012.
, Bellucci M, Roscini C and Mariani A (2003). Cytomixis in pollen mother cells of Medicago sativa L. J. Hered. 94: 512-516.
PMid:14691318
Boldrini KR, Pagliarini MS and Valle CB (2006). Cell fusion and cytomixis during microsporogenesis in Brachiaria humidicola (Poaceae). South Afr. J. Bot. 72: 478-481.
Cantino PD, Doyle JA, Graham SW, Judd WS, et al. (2007). Towards a phylogenetic nomenclature of Tracheophyta. Taxon 56: 822-846.
Cheng KC, Nie XW, Wang YX and Yang QL (1980). The relation between cytomixis and variation of chromosome numbers in pollen mother cells of rye (Secale cereals L.). Acta Bot. Sin. 22: 216-220.
Cheng KC, Quiglan Y and Yongsen Z (1987). The relationship between cytomixis, chromosome mutation and karyotype evolution in Lily. Caryologia 40: 243-259.
Falistocco E, Tosti N and Falcinelli M (1995). Cytomixis in pollen mother cells of diploid Dactylis, one of the origins of 2n gametes. J. Hered. 86: 448-453.
Furness CA and Rudall PJ (1999). Microsporogenesis in monocotyledons. Ann. Bot. 84: 475-499.
Ghaffari GM (2006). Occurrence of diploid and polyploidy microspores in Sorghum bicolor (Poaceae) is the result of cytomixis. Afr. J. Biotechnol. 5: 1450-1453.
Haroun SA (1995). Cytomixis in pollen mother cells of Polygonum tomentosum Schrank. Cytologia 60: 257-260.
Haroun SA (1996). Induced cytomixis and male sterility in pollen mother cells of Hordeum vulgare L. Delta J. Sci. 20: 172-183.
Haroun SA, Al Shehri AM and Al Wadie HM (2004). Cytomixis in the microsporogenesis of Vicia faba L. (Fabaceae). Cytologia 69: 7-11.
Kornicke M (1901). Über Ortsveränderung von Zellkarnern S B Niederhein. Ges. Nat. Heilk. Bonn. 14-25.
Koul KK (1990). Cytomixis in pollen mother cells of Alopecurus arundinaceus Poir. Cytologia 55: 169-173.
Lattoo SK, Khan S, Bamotra S and Dhar AK (2006). Cytomixis impairs meiosis and influences reproductive success in Chlorophytum comosum (Thunb.) Jacq. - an additional strategy and possible implications. J. Biosci. 31: 629-637.
PMid:17301501
Li XF, Liu SB, Gao JR, Lu WH, et al. (2005). Abnormal pollen development of bread wheat - Leymus mollis partial amphiploid. Euphytica 144: 247-253.
Li XF, Song ZQ, Feng DS and Wang HG (2009). Cytomixis in Thinopyrum intermedium, Thinopyrum ponticum and its hybrids with wheat. Cereal Res. Commun. 37: 353-361.
Li Z, Liu HL and Luo P (1995). Production and cytogenetics of intergeneric hybrids between Brassica napus and Orychophragmus violaceus. Theor. Appl. Genet. 91: 131-136.
Liang HX (1991). Karyomorphology of Gymnotheca and phylogeny of four genera in Saururaceae. Acta Bot. Yunnan 13: 303-307.
Liu Y, Hui RK, Deng RN, Wang JJ, et al. (2012). Abnormal male meiosis causes pollen sterility in medicinal polyploidy plant Pinellia ternate. Genet. Mol. Res. 11: (in press).
Mabberley DJ (1998). The Plant Book. A Portable Dictionary of the Vascular Plants. 2nd edn. Cambridge University Press, Cambridge.
Maity S and Datta AK (2009). Meiosis in nine species of jute (Corchorus). Indian J. Sci. Tech. 2: 27-29.
Malallah GA and Attia TA (2003). Cytomixis and its possible evolutionary role in a Kuwaiti population of Diplotaxis harra (Brassicaceae). Bot. J. Linn. Soc. 143: 169-175.
Mihara T (1960). On the reduction division of Houttuynia cordata Thunb. Bot. Mag. Tokyo 73: 498.
Morikawa T and Leggett JM (1996). Cytological and morphological variations in wild populations of Avena canariensis from the Canary Islands. Genes Genet. Syst. 71: 15-21.
Nirmala A and Rao PN (1996). Genesis of chromosome numerical mosaicism in higher plants. Nucleus 39: 151-175.
Oginuma K, Sato H, Kono Y, Chen S, et al. (2007). Intraspecific polyploidy of Houttuynia cordata and evolution of chromosome number in the Saururaceae. Chromosome Bot. 2: 87-91.
Omara MK (1976). Cytomixis in Lolium perenne. Chromosoma 55: 267-271.
Sapre AB and Deshpande DS (1987). A change in chromosome number due to cytomixis in an interspecific hybrid of Coix L. Cytologia 52: 167-174.
Sarvella P (1958). Cytomixis and loss of chromosomes in meiotic and somatic cells of Gossypium. Cytologia 23: 14-24.
Sheidai M (2008). Cytogenetic distinctiveness of sixty-six tetraploid cotton (Gossypium hirsutum L.) cultivars based on meiotic data. Acta Bot. Croat. 67: 209-220.
PMid:16131719
Shibata K and Miyake H (1908). Ueber Parthenogenesis bei Houttuynia cordata. Bot. Mag. Tokyo 22: 141-144.
PMid:19005237
Singhal VK and Kumar P (2008a). Impact of cytomixis on meiosis, pollen viability and pollen size in wild populations of Himalayan poppy (Meconopsis aculeata Royle). J. Biosci. 33: 371-380.
Singhal VK and Kumar P (2008b). Cytomixis during microsporogenesis in the diploid and tetraploid cytotypes of Withania somnifera (L.) Dunal, 1852 (Solanaceae). Comp. Cytogenet. 2: 85-92.
Singhal VK, Gill BS and Dhaliwal RS (2007). Status of chromosomal diversity in the hardwood tree species of Punjab State. J. Cytol. Genet. 8: 67-83.
Souza AM and Pagliarini MS (1997). Cytomixis in Brassica napus var. oleifera and Brassica campestris var. oleifera (Brassicaceae). Cytologia 62: 25-29.
The Angiosperm Phylogeny Group (APG II) (2003). An update of the Angiosperm Phylogeny Group classification for the orders and families of flowering plants: APG II. Bot. J. Linn. Soc. 141: 399-436.
Veilleux R (1985). Diploid and polyploid gametes in crop plants: mechanisms of formation and utilization in plant breeding. Plant Breed. Rev. 3: 253-288.
Wu W, Zheng YL, Yang RW, Chen L, et al. (2003). Variation of the chromosome number and cytomixis of Houttuynia cordata from China. J. Syst. Evol. 41: 245-257.
“In vitro induction of tetraploid garlic with trifluralin”, vol. 11, pp. 2620-2628, 2012.
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Afzal M, Ali M, Thomson M and Armstrong D (2000). Garlic and its medicinal potential. Inflammopharmacology 8: 123-148.
http://dx.doi.org/10.1163/15685600038134
Al-Zahim MA, Ford-Lloyd BV and Newbury HJ (1999). Detection of somaclonal variation in garlic (Allium sativum L.) using RAPD and cytological analysis. Plant Cell Rep. 18: 473-477.
http://dx.doi.org/10.1007/s002990050606
Ayabe M and Sumi S (1998). Establishment of a novel tissue culture method, stem-disc culture, and its practical application to micropropagation of garlic (Allium sativum L.). Plant Cell Rep. 17: 773-779.
http://dx.doi.org/10.1007/s002990050481
Campion B, Perri E, Azzimonti MT, Vicini E, et al. (1995). Spontaneous and induced chromosome doubling in gynogenic lines of onion (Allium cepa L.). Plant Breed. 114: 243-246.
http://dx.doi.org/10.1111/j.1439-0523.1995.tb00802.x
Grzebelus E and Adamus A (2004). Effect of anti-mitotic agents on development and genome doubling of gynogenic onion (Allium cepa L.) embryos. Plant Sci. 167: 569-574.
http://dx.doi.org/10.1016/j.plantsci.2004.05.001
Guo RF and Xian F (2011). Research advance of garlic breeding technology. J. Anhui Agric. Sci. 39: 2617-2619, 2890.
Hansen AL, Gertz A, Joersbo M and Andersen SB (2000). Chromosome doubling in vitro with amiprophos-methyl in Beta vulgaris ovule culture. Acta Agric. Scand. B Soil Plant Sci. 50: 89-95.
Harris JC, Cottrell SL, Plummer S and Lloyd D (2001). Antimicrobial properties of Allium sativum (garlic). Appl. Microbiol. Biotechnol. 57: 282-286.
http://dx.doi.org/10.1007/s002530100722
PMid:11759674
Kamenetsky R and Rabinowitch HD (2001). Floral development in bolting garlic. Sex. Plant Reprod. 13: 235-241.
http://dx.doi.org/10.1007/s004970000061
Khan MA, Cheng ZH, Xiao XM, Khan AR, et al. (2011). Ultrastructural studies of the inhibition effect against Phytophthora capsici of root exudates collected from two garlic cultivars along with their qualitative analysis. Crop Protect. 30: 1149-1155.
http://dx.doi.org/10.1016/j.cropro.2011.04.013
Khosravi P, Kermani MJ, Nematzadeh GA, Bihamta MR, et al. (2008). Role of mitotic inhibitors and genotype on chromosome doubling of Rosa. Euphytica 160: 267-275.
http://dx.doi.org/10.1007/s10681-007-9571-7
Long YJ, Wu Z, Yang Y, Li CH, et al. (2008). Anatomy of organogenesis from garlic (Allium sativum L.) rachis in vitro culture. Acta Bot. Boreali-Occidentalia Sin. 28: 470-474.
McCollum GD (1987). Onion and Allies. In: Evolution of Crop Plants (Simmomds NW, ed.). Longman S & T, London, 186-190.
Mousumi B and Prabir KS (2003). Inhibitory effect of garlic on bacterial pathogens from spices. World J. Microbiol. Biotechnol. 19: 565-569.
http://dx.doi.org/10.1023/A:1025108116389
Mu XQ and Cao W (1999). Herbicide on the plant cell mitosis impact. Weed Sci. 1: 11-13.
Muhammad SH, Tomikichi W and Kazumi H (1997). High frequency shoot regeneration and plantlet formation from root tip of garlic. Plant Cell Tissue Organ Cult. 50: 83-89.
http://dx.doi.org/10.1023/A:1005973929862
Myers JM and Simon PW (1998). Continuous callus production and regeneration of garlic (Allium sativum L.) using root segments from shoot tip-derived plantlets. Plant Cell Rep. 17: 726-730.
http://dx.doi.org/10.1007/s002990050473
Pang RY and Huang ZY (2003). The way to improve the inducing polyploid in experiment. J. Yulin Teach. Coll. 87-88.
Qin SP, Chen YH, Lin XH, Zhou LY, et al. (2006). Effects of colchicine on mitosis and polyploid induction in rye. J. Nuclear Agr. Sci. 20: 321-323.
Robledo-Paz A, Villalobos-Arambula VM and Jofre-Garfias AE (2000). Efficient plant regeneration of garlic (Allium sativum L.) by root-tip culture. In Vitro Cell. Dev. Biol. Plant 36: 416-419.
http://dx.doi.org/10.1007/s11627-000-0075-6
Simon PW and Jenderekm M (2003). Flowering, seed production and the genesis of garlic breeding. Plant Breed. Rev. 32: 211-244.
Stanys V, Weckman A, Staniene G and Duchovskis P (2006). In vitro induction of polyploidy in Japanese quince (Chaenomeles japonica). Plant Cell Tissue Organ Cult. 84: 263-268.
http://dx.doi.org/10.1007/s11240-005-9029-3
Thao NTP, Ureshino K, Miyajima I, Ozaki Y, et al. (2003). Induction of tetraploids in ornamental Alocasia through colchicine and oryzalin treatments. Plant Cell Tissue Organ Cult. 72: 19-25.
http://dx.doi.org/10.1023/A:1021292928295
Wang MQ and Wang XH (2000). A primary study on induction of grape polyploidy. Shandong Agr. Sci. 1: 19-20.
Wei YG and Jiang JF (2008). The preliminary explore on induction of tetraplodin muskmelon with trifluralin. Acta Agric. Boreali-Sin. 21: 73-76.
Xie XL and Deng ZF (2009). Analysis on the influences of colchicine on the growth of Allium sativum and its polyploid induction effect. J. Anhui Agric. Sci. 37: 4191-4194.
Yamashita K, Hisatune Y and Sakamoto T (2002). Chromosome and cytoplasm analyses of somatic hybrids between onion (Allium cepa L.) and garlic (A. sativum L.). Euphytica 125: 163-167.
http://dx.doi.org/10.1023/A:1015826702550
Yan ZH, Liu WG, Zhao SJ and He N (2008). In vitro induction of tetraploid watermelon using dinitroaniline herbicide. Acta Hortic. Sin. 35: 1621-1626.
Yanagino T, Sugawara E and Watanabe M (2003). Production and characterization of an interspecific hybrid between leek and garlic. Theor. Appl. Genet. 107: 1-5.
PMid:12835927
Zhang ER and Cheng ZH (2003). Study on in vitro selection of salt-tolerant calluses of garlic. Acta Bot. Boreali- Occidentalia Sin. 23: 1571-1576.
Zhang LQ, Cheng ZH, Khan MA and Zhou Yl (2012). In vitro selection of resistant mutant garlic lines by using crude pathogen culture filtrate of Sclerotium cepivorum. Aust. Plant Pathol. 41: 211-217.
http://dx.doi.org/10.1007/s13313-011-0109-z
Zhang QM and Zhang MF (2003). Progresses on polyploid induction of horticultural crops. Chin. J. Cell Biol. 223-228.
Zhang SZ and Li JR (2006a). Effect of plant growth regulators combination to the stem disc callus regeneration system of garlic (Allium sativum L.). Seed 6: 38-40.
Zhang SZ and Li JR (2006b). Study on colchicine-induced tetraploid in garlic (Allium sativum L.). J. Nuclear Agric. Sci. 20: 303-308.
Zhao J and Simmonds DH (1995). Application of trifluralin to embryogenic microspore cultures to generate doubles haploid plants in Brassica napus. Physiol. Plant 95: 304-309.
http://dx.doi.org/10.1111/j.1399-3054.1995.tb00842.x
Zhou XJ, Cheng ZH and Meng HW (2009). Effects of pendimethalin on garlic chromosome doubling in vitro. Acta Bot. Boreali-Occidentalia Sin. 29: 2571-2575.Veliqui quaectio. Ro beatis rem solores sinciis soloreicid ut hillaciendae prore con culparu mquiandita acernam, ut ipsa nescipitatur sim landam labo. Ferae officatem facerempos quas erchill