果树基因工程研究进展
张志宏,景士西,王关林
摘要(Abstract):
利用农杆菌介导、生物导入和DNA直接摄取技术,现已转化了包括苹果在内的10多种果树,获得了一些携有抗虫、抗病毒基因的转基因植株.但是,获得果树的转基因植株仍然是比较困难的,这是木本植物再生能力较差和转化效率较低之故.综述了近年来果树基因工程取得的成就及基因工程对果树遗传改良的作用和意义.
关键词(KeyWords):
基金项目(Foundation): 国家自然科学基金资助论文
作者(Author): 张志宏,景士西,王关林
Email:
DOI: 10.13925/j.cnki.gsxb.1995.03.018
参考文献(References):
- [l]McGranahan GH,Leslic CA,Uratsu SL. Agrobacterium-mediated transformtion of walnut somatic embryos and regen-eration of transgenic plants. Bio/TechnoIogy 1988, 6:800--804
- [2]Dandekar AM,Uratsu SL, Matsuta N. Factors influencing virulence in Agrobacterium-mediated transformation of ap-ple. Acta Hortic, 1990, 280: 483--494
- [3]James DJ,Passey AJ,Barbara DJ. Genetic transformation of apple(Malus pumila Mill.)using a disarmed Ti-binary vec-tor. PIant Cel1 Rep, l989, 7: 658--66l
- [4]Nehra NS, Chibbar RN,Kartha KK. Gentic transformation of strawberry by Agrobachaum tumetariens using a 1eaf regeneration system. Plant Cell Rep, 1990, 9:293--298
- [5]Nyman M .Wallin A. Transient gene expression in strawberry (Fragaria ananassa Duch)protoplasts and the recovery of transgenic p1ants. Plant Ce1l Rep, 1992, l1: 105--l08
- [6]丰田秀吉,嘉美千岁,住谷一树. Agrodacterium rhizogoes主要品种形质转换,植物组织培养, 1993, 10 (l): 92--94
- [7]Scorza R, Cordts S,Mante S. Agrobacterium--mediated transtormation of plum (Prunus domestica L. ) with the papaya ringspot virus coat protein gene. Hort Science, 1991,26:786
- [8]Smigocki AC,Hammerschlag FA. Regeneration of plants from peach embryo cells infected with a shooty mutant strain of Agrobacterium. J Amer Soc Hort Sci,1991,116:1092--1097
- [9]Machado MC,Machado A da C. Regeneration of transgenic plants of Prunus armeaiaca containing the coat protein gene of Plum Pox Virus. Plant Ce1l Rep, 1992, 1l: 25--29
- [10]Berres R,Otten L,Tinland B. Transformation of vitis tissue by different strains of Agrdarcterium tumefaciens contalning the T--6b gene. Plant Cell Rep,1992,11:192--195
- [11]Mullins MA, Tans FCA, Fasciotti D. Agrobacterium--mediated transformation of grapevines: transgenic plants of Vitis rupestris Schelle and shoots of Vitis vinifera L Bio/Technology,1990,8:1041--1045
- [12]Hebert D.Kikkert JR,Smith FD. Optimization of biolistic transformation of embryogenic grape cell suspensions. Plant Cell Rep, l993, 12: 585--589
- [13]Graham J,McNicoI RJ,Kumar A. Use of the GUS gene as a selectable marker for Agrobacterium-mediated transformation of Rubus. Plant Cell Tiss Org Cult, 1990, 20: 35--39
- [14]Graham J,McNicol RJ. Regeneration and transforrmation of Ribes. Plant Cell Tiss Org Cult,1991,24:91--95
- [15]Serres R,Stang E,McCabe D. Gene transfer using electric discharge particle bombardment and recovery of transformed cranberry plant. J Amer Soc Hort Sci,1992,117:174--180
- [16]Olivera MM,Barroso J. Pais MSS. Direct gene transfer into Actinidia deliciosa protoplasts:analysis of transient expres-sion of the CAT gene using TLC autoradiography and a GC-MS-based method. Plant Mol Biol,1991,17:235-242
- [17]Rugini E,Pellegrineschi A,Mencuccini M. Increase of rooting ability in the woody species kiwi (Actinidia deliciosa A.Chev.)by transformation with Agrobacterium rhizogenes rol genes. Plant Cell Rep, 1991, 10: 291-295
- [18]Hidaka T,Omura M,Ugaki M. Agrobacterinm-mediated transformation and regeneration of Citrus sp. from suspension cells. Japan J Breed,1990,40:199-207
- [19]Kobayashi S,Uchimiya H. Expression and integration of a foreign gene in orange (Citrus sinensis Osb.)protoplasts by direct gene transfer. Japan J Genet, 1989, 64: 91-97
- [20]Moore GA,Jacono CC,Neidigh JL. Agrobacterium-mediated transformation of Citrus stem segmente and regeneration oftransgenic plant. Plant Cell Rep, 1992, 11: 238—242.
- [21]Vardi A,Bleichan S,Aviv D. Genetic transformation of transgenic plants. Plant Sci, 1990, 69:190—206
- [22]Hood EA,Jen G,Kayes L. Restriction endonuclease map of pTiBo542,a potential Ti Plasmid vector for genetic engineering of plants. Bio/Technology, 1984, 2: 702—709
- [23]Fitch MMM,Manshardt RM,Gonsalves D. StabIe transforrmation of papaya via microprojectile bombardment. Plant Cell Rep, 1990, 9: 189—194
- [24]Lamhert C,Tepfer D. Use of Agrosbacterium rhizogenes to creat transgenic apple trees having an altered organogenic response to hormonse. Theor Apple Genet, 1992,85:105—109
- [25]Kareiva P. Transgenic plants on trail. Nature, 1993,363:580—581
- [26]Norelli JL,Aldwinckie HS. The role of aminoglycoside antibiotics in the regeneration and selection of neomycin phospho-transferase-transgenic apple tissue. J Amer Soc Hort Sci, 1993,118: 311—316
- [27]Fasolo F,Zianerma RH,Fordham I. Adventitious shoot fomtion on excised leaves of in vitro grown shoots of apple cultivars. Plant Cell Tiss Org Cult, 1989, 16:75—87
- [28]丁爱萍,曹玉芬.新红星原生质体再生绿苗.园艺学报,1992,19(3):267—268
- [29]Dong JG, Kim WT, Yip WK. Cloning of a cDNA encoding I—aminocyclopropane—I—carboxlate synthase and expression of its mRNA in ripening apple fruit. Planta, 1991, 185:38—45
- [30]Dong JG,Olson D, Sliverstone A. Sequence of a cDNA coding for a I—aminocyciopropane—I—carboxylate oxidase homolog from apple fruit. Plant Physiol, 1991. 98: 1530—153l
- [31]Schlagnhaufer CD,Arteca RN. Construction of a cDNA library from apple fruit tissue. HortScience, 1991, 26: 724
- [32]McGranahan GH,Leslie CA,Uratsu SL. Improved efficiency of the walnut somatic embryo gene transfer system. Plant Cell Rep, l990, 8: 512—516
- [33]Deng MD,Cornu D. Jay-Allemand C. Genetic transforInation of walnut sotnatic embryos to study in vitro rhizogenesis.Plant Physiol, 1991, 96: suppl, 153
- [34]Callahan AM,Morgens PH,Cohen R. Isolation and initial characterization of cDNAs for mRNAs regulated during peach fruit development. J Amer Soc Hort Sci,1993.118: 531—537
- [35]Pang SZ .Sanford JG. Agrobacterium-mediated gene transfer in papaya. J Amer Soc Hort Sci. 1988, 113: 287—291
- [36]Scorza R. Gene transfer for the genetic improvement of Pernnial fruit and nut crops. HortScience, 1991, 26: 1033—1035
- [37]Hightower R,Baden C .Penzes E. Expression of antifreeze proteins in transgenic plants. Plant Mol Bilo. 1991, 17: 1013—1021
- [38]Mckersic BD,Chen Y. Superoxide dismutase enhances tolerance of freezing stress in transgenic alfalfa (Medicago sativa L. ). Plant Physiol, 1993, 102: suppl, 85