Control of Pome and Stone Fruit Virus Diseases

被引:58
作者
Barba, Marina [1 ]
Ilardi, Vincenza [1 ]
Pasquini, Graziella [1 ]
机构
[1] Consiglio Ric & Sperimentaz Agr, Ctr Ric Patol Vegetale, Rome, Italy
来源
ADVANCES IN VIRUS RESEARCH, VOL 91: CONTROL OF PLANT VIRUS DISEASES VEGETATIVELY-PROPAGATED CROPS | 2015年 / 91卷
关键词
PLUM-POX-VIRUS; PRUNUS-NECROTIC-RINGSPOT; LINKED-IMMUNOSORBENT-ASSAY; POLYMERASE-CHAIN-REACTION; STEM-GROOVING-VIRUS; LITTLE-CHERRY-VIRUS; LEAF-SPOT VIRUS; RT-PCR; MONOCLONAL-ANTIBODIES; NICOTIANA-BENTHAMIANA;
D O I
10.1016/bs.aivir.2014.11.001
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Many different systemic pathogens, including viruses, affect pome and stone fruits causing diseases with adverse effects in orchards worldwide. The significance of diseases caused by these pathogens on tree health and fruit shape and quality has resulted in the imposition of control measures both nationally and internationally. Control measures depend on the identification of diseases and their etiological agents. Diagnosis is the most important aspect of controlling fruit plant viruses. Early detection of viruses in fruit trees or in the propagative material is a prerequisite for their control and to guarantee a sustainable agriculture. Many quarantine programs are in place to reduce spread of viruses among countries during international exchange of germplasm. All these phytosanitary measures are overseen by governments based on agreements produced by international organizations. Also certification schemes applied to fruit trees allow the production of planting material of known variety and plant health status for local growers by controlling the propagation of pathogen-tested mother plants. They ensure to obtain propagative material not only free of "quarantine" organisms under the national legislation but also of important "nonquarantine" pathogens. The control of insect vectors plays an important role in the systemic diseases management, but it must be used together with other control measures as eradication of infected plants and use of certified propagation material. Apart from the control of the virus vector and the use of virus-free material, the development of virus-resistant cultivars appears to be the most effective approach to achieve control of plant viruses, especially for perennial crops that are more exposed to infection during their long life span. The use of resistant or tolerant cultivars and/or rootstocks could be potentially the most important aspect of virus disease management, especially in areas in which virus infections are endemic. The conventional breeding for virus-tolerant or resistant fruit tree cultivars using available germplasm is a long-term strategy, and the development and production of these cultivars may take decades, if successful. Genetic engineering allows the introduction of specific DNA sequences offering the opportunity to obtain existing fruit tree cultivars improved for the desired resistance trait. Unfortunately, genetic transformation of pome and stone fruits is still limited to few commercial genotypes. Research carried out and the new emerging biotechnological approaches to obtain fruit tree plants resistant or tolerant to viruses are discussed.
引用
收藏
页码:47 / 83
页数:37
相关论文
共 199 条
[71]  
Hammond R. W, 2011, Virus and Virus-like Diseases of Pome and Stone Fruits, P207, DOI [DOI 10.1094/9780890545010.038, 10.1094/9780890545010.038]
[72]   Hypersensitivity - A possibility for breeding sharka resistant plum hybrids [J].
Hartmann, W .
17TH INTERNATIONAL SYMPOSIUM ON VIRUS AND VIRUS-LIKE DISEASES OF TEMPERATE FRUIT CROPS: FRUIT TREE DISEASES, VOLS 1 AND 2, 1998, (472) :429-432
[73]   Simultaneous detection and identification of four pome fruit viruses by one-tube pentaplex RT-PCR [J].
Hassan, M ;
Myrta, A ;
Polak, J .
JOURNAL OF VIROLOGICAL METHODS, 2006, 133 (02) :124-129
[74]  
HAUFLER K Z, 1989, Acta Horticulturae (Wageningen), P169
[75]   Cryopreservation for the elimination of cucumber mosaic and banana streak viruses from banana (Musa spp.) [J].
Helliot, B ;
Panis, B ;
Poumay, Y ;
Swennen, R ;
Lepoivre, P ;
Frison, E .
PLANT CELL REPORTS, 2002, 20 (12) :1117-1122
[76]   Plum pox virus coat protein gene Intron-hairpin-RNA (ihpRNA) constructs provide resistance to plum pox virus in Nicotiana benthamiana and Prunus domestica [J].
Hily, Jean-Michel ;
Ravelonandro, Michel ;
Damsteegt, Vern ;
Bassett, Carole ;
Petri, Cesar ;
Liu, Zongrang ;
Scorza, Ralph .
JOURNAL OF THE AMERICAN SOCIETY FOR HORTICULTURAL SCIENCE, 2007, 132 (06) :850-858
[77]  
Himmler G., 1987, MITTEILUNGEN KLOSTER, V37, P251
[78]  
HUNTER J. A., 1958, NEW ZEALAND JOUR AGRIC RES, V1, P80
[79]  
Ilardi Vincenza, 2011, GM Crops, V2, P24, DOI 10.4161/gmcr.2.1.15096
[80]   Simultaneous detection of six citrus viroids and Apple stem grooving virus from citrus plants by multiplex reverse transcription polymerase chain reaction [J].
Ito, T ;
Ieki, H ;
Ozaki, K .
JOURNAL OF VIROLOGICAL METHODS, 2002, 106 (02) :235-239