The molecular bases of plant resistance and defense responses to aphid feeding: current status

被引:306
作者
Smith, C. Michael [1 ]
Boyko, Elena V. [1 ]
机构
[1] Kansas State Univ, Dept Entomol, Manhattan, KS 66506 USA
关键词
elicitation; plant arthropod defense signaling; allelochemicals; pathways; antioxidants; plant structural defense; homeostasis;
D O I
10.1111/j.1570-7458.2006.00503.x
中图分类号
Q96 [昆虫学];
学科分类号
摘要
Plant genes participating in the recognition of aphid herbivory in concert with plant genes involved in defense against herbivores mediate plant resistance to aphids. Several such genes involved in plant disease and nematode resistance have been characterized in detail, but their existence has only recently begun to be determined for arthropod resistance. Hundreds of different genes are typically involved and the disruption of plant cell wall tissues during aphid feeding has been shown to induce defense responses in Arabidopsis, Triticum, Sorghum, and Nicotiana species. Mi-1.2, a tomato gene for resistance to the potato aphid, Macrosiphum euphorbiae (Thomas), is a member of the nucleotide-binding site and leucine-rich region Class II family of disease, nematode, and arthropod resistance genes. Recent studies into the differential expression of Pto- and Pti1-like kinase genes in wheat plants resistant to the Russian wheat aphid, Diuraphis noxia (Mordvilko), provide evidence of the involvement of the Pto class of resistance genes in arthropod resistance. An analysis of available data suggests that aphid feeding may trigger multiple signaling pathways in plants. Early signaling includes gene-for-gene recognition and defense signaling in aphid-resistant plants, and recognition of aphid-inflicted cell damage in both resistant and susceptible plants. Furthermore, signaling is mediated by several compounds, including jasmonic acid, salicylic acid, ethylene, abscisic acid, giberellic acid, nitric oxide, and auxin. These signals lead to the development of direct chemical defenses against aphids and general stress-related responses that are well characterized for a number of abiotic and biotic stresses. In spite of major plant taxonomic differences, similarities exist in the types of plant genes expressed in response to feeding by different species of aphids. However, numerous differences in plant signaling and defense responses unique to specific aphid-plant interactions have been identified and warrant further investigation.
引用
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页码:1 / 16
页数:16
相关论文
共 108 条
[21]   GENE AMPLIFICATION AND INSECTICIDE RESISTANCE [J].
DEVONSHIRE, AL ;
FIELD, LM .
ANNUAL REVIEW OF ENTOMOLOGY, 1991, 36 :1-23
[22]   Systemic response to aphid infestation by Myzus persicae in the phloem of Apium graveolens [J].
Divol, F ;
Vilaine, F ;
Thibivilliers, S ;
Amselem, J ;
Palauqui, JC ;
Kusiak, C ;
Dinant, S .
PLANT MOLECULAR BIOLOGY, 2005, 57 (04) :517-540
[23]   Downstream divergence of the ethylene signaling pathway for harpin-stimulated Arabidopsis growth and insect defense [J].
Dong, HP ;
Peng, JL ;
Bao, ZL ;
Meng, XD ;
Bonasera, JM ;
Chen, GY ;
Beer, SV ;
Dong, HS .
PLANT PHYSIOLOGY, 2004, 136 (03) :3628-3638
[24]   Constitutive activation of jasmonate signaling in an Arabidopsis mutant correlates with enhanced resistance to Erysiphe cichoracearum, Pseudomonas syringae, and Myzus persicae [J].
Ellis, C ;
Karafyllidis, L ;
Turner, JG .
MOLECULAR PLANT-MICROBE INTERACTIONS, 2002, 15 (10) :1025-1030
[25]   Signal interactions in pathogen and insect attack:: expression of lipoxygenase, proteinase inhibitor II, and pathogenesis-related protein P4 in the tomato, Lycopersicon esculentum [J].
Fidantsef, AL ;
Stout, MJ ;
Thaler, JS ;
Duffey, SS ;
Bostock, RM .
PHYSIOLOGICAL AND MOLECULAR PLANT PATHOLOGY, 1999, 54 (3-4) :97-114
[26]   Aphid infestation induces PR-proteins differently in barley susceptible or resistant to the birdcherry-oat aphid (Rhopalosiphum padi) [J].
Forslund, K ;
Pettersson, J ;
Bryngelsson, T ;
Jonsson, L .
PHYSIOLOGIA PLANTARUM, 2000, 110 (04) :496-502
[27]   Plant resistance towards insect herbivores: a dynamic interaction [J].
Gatehouse, JA .
NEW PHYTOLOGIST, 2002, 156 (02) :145-169
[28]   METHYL SALICYLATE AND (-)-(1R,5S)-MYRTENAL ARE PLANT-DERIVED REPELLENTS FOR BLACK BEAN APHID, APHIS-FABAE SCOP (HOMOPTERA, APHIDIDAE) [J].
HARDIE, J ;
ISAACS, R ;
PICKETT, JA ;
WADHAMS, LJ ;
WOODCOCK, CM .
JOURNAL OF CHEMICAL ECOLOGY, 1994, 20 (11) :2847-2855
[29]  
Havlickova H, 1996, Z PFLANZENK PFLANZEN, V103, P535
[30]  
Havlickova H, 1998, Z PFLANZENK PFLANZEN, V105, P140