Non-random inheritance of mitochondrial genomes in Citrus hybrids produced by protoplast fusion

被引:6
作者
Cabasson C.M. [1 ]
Luro F. [2 ]
Ollitrault P. [1 ]
Grosser J.W. [3 ]
机构
[1] CIRAD-FLHOR, 34032 Montpellier
[2] Station de Recherches Agronomiques, INRA-CIRAD, 20230 San Nicolao, Corsica
[3] Citrus Research and Education Center, University of Florida, IFAS, Lake Alfred, FL 33850
关键词
Citrus; Mitochondrial DNA; Nuclear DNA; Protoplast fusion; RFLP;
D O I
10.1007/s002990100370
中图分类号
学科分类号
摘要
Somatic hybridization offers the possibility of manipulating chloroplast and mitochondrial genomes and evaluating their role on cultivar qualities in citrus. Numerous associations between Willow-leaf mandarin (Citrus deliciosa Ten.), as embryogenic parent, and sweet orange cv. Valencia (Citrus sinensis (L.) Osb.), as mesophyll parent, and between Willow-leaf mandarin (embryogenic parent) and grapefruit cv. Duncan (Citrus paradisi Macf.) (mesophyll parent) were obtained by the fusion of protoplasts induced by polyethylene glycol. Regenerated plants were characterized by flow cytometry and nuclear and mitochondrial DNA restriction fragment length polymorphism (RFLP). All plants were diploid. Diploid plants with the nuclear RFLP patterns of mandarin or sweet orange were identified in the progeny between these two parents, while only grapefruit nuclear types were found in the mandarin + grapefruit progeny. The diploid plants with the nuclear profile of the mesophyll parent originated systematically from cells formed through spontaneous association of the nuclear genome of the mesophyll parent and the mitochondrial genome of the embryogenic parent. These plants are assumed to be alloplasmic hybrids or cybrids. They were viable and have been propagated for field testing.
引用
收藏
页码:604 / 609
页数:5
相关论文
共 31 条
[11]  
Grosser J.W., Gmitter F.G., Sesto F., Deng F.F., Chandler J.L., Six new somatic Citrus hybrids and their potential for cultivar improvement, J Am Soc Hortic Sci, 117, pp. 168-173, (1992)
[12]  
Grosser J.W., Gmitter F.G., Tusa N., Reforgiato Recupero G., Cucinotta P., Further evidence of a cybridization requirement for plant regeneration from citrus leaf protoplasts following fusion, Plant Cell Rep, 15, pp. 672-676, (1996)
[13]  
Louzada E.S., Grosser J.W., Gmitter F.G., Deng X.X., Tusa N., Nielsen B., Chandler J.L., Eight new somatic hybrid citrus rootstocks with potential for improved disease resistance, HortScience, 27, pp. 1033-1036, (1992)
[14]  
Luro F., Utilisation des marqueurs moléculaires pour la cartographie du génome et les études génétiques chez les agrumes, (1993)
[15]  
Luro F., Lorieux M., Laigret F., Bove J.M., Ollitrault P., Genetic mapping of an intergeneric Citrus hybrid using molecular markers, Fruits, 49, pp. 404-408, (1995)
[16]  
Moreira C.D., Chase C.D., Gmitter F.G., Grosser J.W., Inheritance of organelle genomes in Citrus cybrids, Mol Breed, 6, pp. 401-405, (2000)
[17]  
Moriguchi T., Hidaka T., Omura M., Motomura T., Akihama T., Genotype and parental combination influence efficiency of cybrid induction in Citrus by electrofusion, HortScience, 31, pp. 275-278, (1996)
[18]  
Moriguchi T., Motomura T., Hidaka T., Akihama T., Omura M., Analysis of mitochondrial genomes among Citrus plants produced by the interspecific somatic fusion of 'Seminole' tangelo with rough lemon, Plant Cell Rep, 16, pp. 397-400, (1997)
[19]  
Ohgawara T., Kobayashi S., Ohgawara E., Uchimiya H., Ishii S., Somatic hybrid plants obtained by protoplasts fusion between Citrus sinensis and Poncirus trifoliata, Theor Appl Genet, 71, pp. 1-4, (1985)
[20]  
Ohgawara T., Kobayashi S., Ishii S., Yoshinaga K., Oiyama I., Somatic hybridization in Citrus: Navel orange (C. sinensis Osb.) and grapefruit (C. paradisi Macf.), Theor Appl Genet, 78, pp. 609-612, (1989)