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The effect of sublethal doses of Bacillus thuringiensis Berliner on Tuta absoluta (Meyrick) on resistant and susceptible tomato cultivars

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The effect of Bacillus thuringiensis (Bt) Berliner on the Tuta absoluta (Meyrick) on two resistant ('King Stone') and susceptible ('Rio Grande') tomato (Solanum lycopersicum L.) cultivars was studied under laboratory conditions. In the bioassay tests, the lethal concentration (LC 50 ) values of Bt were determined for the 2nd-and 3rd-instar larvae of T. absoluta on two cultivars. In another experiment, the effect of sublethal doses of Bt on 2nd-and 3rd-instar larvae on two susceptible and resistant cultivars was determined. Also, the nutritional indices and the enzyme content of larvae on two susceptible and resistant cultivars under the sublethal doses of Bt were investigated. All nutritional indices and the enzyme content of the treated larvae were significantly different compared to those of the control group. The lowest efficiency of the conversion of ingested food (7.82%), the efficiency of the conversion of digested food (4.34%), the relative consumption rate (22.29 mg mg −1 day −1 ), and the relative growth rate (1.16 mg mg −1 day −1 ) was determined for the resistant cultivar 'King Stone' at the LC 25 concentration of Bt. The lowest amount of α-amylase (0.98 nM min −1 mg −1 protein), protease (12.61 µM min −1 mg −1 protein), and lipase (0.182 nM min −1 mg −1 protein) and the highest amount of phenoloxidase (0.337 µM min −1 mg −1 protein) were determined for the resistant cultivar 'King Stone' at the LC 25 concentration of Bt. The results showed that the integration of Bt application and host plant resistance significantly increased the efficiency of Bt.

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  • Research Article
  • Cite Count Icon 75
  • 10.1139/b87-047
Peroxidase, polyphenoloxidase, and phenols in relation to resistance against Pseudomonas syringae pv. tomato in tomato plants
  • Feb 1, 1987
  • Canadian Journal of Botany
  • Y Bashan + 2 more

Peroxidase, polyphenoloxidase, and phenols were evaluated for their involvement in the resistance mechanism of tomato plants against Pseudomonas syringae pv. tomato (Okabe) Young, Dye & Wilkie. Healthy and infected leaf extracts of susceptible and resistant tomato cultivars were examined for their phenol content and activity of peroxidase and polyphenoloxidase. Peroxidase activity increased to a similar extent in infected mature and young leaves and in resistant and susceptible tomato cultivars. A positive correlation was found between the number of bacteria in the tissue and peroxidase activity in susceptible plants. Four different peroxidase isozymes were found in extracts from diseased plants, compared with only one in healthy plants. These facts indicated that peroxidase increases are not directly involved in the resistance mechanism of tomato plants. Significant positive correlations were found among resistance, polyphenoloxidase activity, and phenol accumulation in 20 different infected tomato cultivars, ranging from highly susceptible to highly resistant. Polyphenoloxidase activity and phenol accumulation were higher in inoculated, resistant cultivars than in inoculated susceptible ones. Inoculated resistant mature leaves showed both a higher polyphenoloxidase activity and a higher phenol content than younger susceptible leaves. A direct correlation was found between disease index, polyphenoloxidase activity, and phenol content in the tissue. Eight different polyphenoloxidase isozymes were found in susceptible diseased plants. Phenols extracted from inoculated resistant tomato plants inhibited pathogen growth. Our data suggest that the oxidative phenol system of tomato plants contributes to resistance to P. syringae pv. tomato.

  • Research Article
  • Cite Count Icon 3
  • 10.7235/hort.2013.12169
토마토 작물의 TYLCV 저항성 평가에 이용할 수 있는 감염성 클론 개발
  • Apr 30, 2013
  • Korean Journal of Horticultural Science and Technology
  • Seung Kook Choi + 5 more

국내에서 채집한 5종의 토마토황화잎말림바이러스(Tomato yellow leaf curl virus, TYLCV) 분리주들에 대하여 PCR법을 이용하여 염기서열을 결정하였다. 전체 유전체의 1.9배 복제수를 가지는 감염성 클론을 제작하기 위하여, PCR로 증폭된 TYLCV DNA를 식물형질전환용 벡터에 각각 도입시켰다. TYLCV 저항성 평가를 위하여 저항성 토마토 시판 품종과 육성 계통을 각각 TYLCV 분리주를 가지고 있는 Agrobacterium tumefaciens로 접종하였다. 감수성 품종인 'Super-sunroad' 품종은 접종 30일 후에 상엽에 황화, 위축 증상을 나타낸 반면, TYLCV에 대한 저항성유전자들로 알려진 Ty-1 또는 Ty-3 유전자를 포함하고 있는 TY12, GC9, GC171, GC173 등의 토마토 육성 계통은 전신 잎에 TYLCV 병징 발현이 없었으므로 이들 계통은 TYLCV 저항성으로 판별되었다. Agroinfiltration을 통한 접종 30일에 감수성 품종과 저항성 품종 간에 TYLCV 병징 차이가 뚜렷하였다. 특이적 프라이머들을 이용한 실시간 PCR법에 의해 TY12, GC9, GC171, GC173 육성 계통에서 TYLCV DNA가 검출되었지만, 저항성 계통에서 TYLCV DNA 축적 수준은 감수성 토마토 품종에서의 TYLCV DNA 축적 수준보다 매우 낮았다. 유사한 병징 세기 및 TYLCV DNA 축적 수준이 담배가루이를 통하여 감수성과 저항성 토마토 품종 및 육성 계통에 TYLCV를 감염시켰을 때에도 관찰되었다. Agroinfiltration 시 아그로박테리움의 농도는 토마토 품종의 TYLCV 저항성 반응에 영향을 미치지 않았다. 따라서 본 연구결과들은 agroinfiltration을 통한 TYLCV 접종이 담배가루이를 통한 TYLCV 감염처럼 효과적이며 TYLCV 저항성 토마토 육성 프로그램에 활용 가능하다는 것으로 보여주었다. Five isolates of Tomato yellow leaf curl virus (TYLCV) collected from various regions of Korea were amplified using PCR and determined the sequences of full-length genome, respectively. The PCR-amplified DNA of each TYLCV isolate was introduced into a binary vector to construct infectious clone containing 1.9 copies of the corresponding viral genome. Various cultivars and breeding lines of tomato were inoculated with Agrobacterium tumefaciens harboring infectious clone of each TYLCV isolate to assess resistance against TYLCV. Susceptible cultivar 'Super-sunread' revealed typical yellowing and narrowing of the upper leaves. In contrast, breeding linesTY12, GC9, GC171, and GC173, which contained the TY-1 and/or TY-3 genes that confer resistance against TYLCV in nature, were completely symptomless, suggesting that the lines were resistant to challenging TYLCV isolates. Symptoms of TYLCV in susceptible tomato cultivars are significantly different from those of TYLCV in the resistant tomato cultivars at 30 days after agroinfiltration. Although genomic DNAs of TYLCV were detected from the breeding lines TY12, GC9, GC171, and GC173 using real-time PCR analysis with specific primers, levels of TYLCV DNA accumulation in the resistant breeding lines were much lower than those of TYLCV DNA accumulation in susceptible tomato cultivars. Similar symptom severity and levels of TYLCV DNA accumulation were observed from TYLCV infections mediated by Bemisia tabaci in the resistant and susceptible tomato cultivars. Concentration of agrobacterium did not affect the response of tomato cultivars against TYLCV inoculation. Taken together, these results suggest that TYLCV inoculation via agroinfiltration is as effective as inoculation through Bemisia tabaci and is useful for breeding programs of TYLCV-resistant tomato.

  • Research Article
  • Cite Count Icon 13
  • 10.1163/187529273x00420
The Chemical Characteristics of Tomato Cultivars Resistant To Root-Knot Nematodes (Meloidogyne Spp.)
  • Jan 1, 1973
  • Nematologica
  • B Singh + 1 more

A study was undertaken of the pre-infection factors in root-knot nematode resistant tomato cultivars. Roots of tolerant, resistant, immune and susceptible tomato cultivars were analysed for dry matter, nitrogen, phosphorus, potassium, phenolics and amino acids. Results of these analyses showed that tolerant, resistant and immune tomato cultivars contained more dry matter than did susceptible cultivars. Phosphorus content was greater in susceptible cultivars. Number and kinds of free and bound amino acids were the same in resistant and susceptible cultivars. Phenolic content was found to be directly related to root-knot nematode resistance, being highest in immune cultivars and species, followed by resistant, tolerant and susceptible cultivars.

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  • Research Article
  • Cite Count Icon 29
  • 10.1186/s12870-016-0819-z
Comparative proteomic analysis provides novel insight into the interaction between resistant vs susceptible tomato cultivars and TYLCV infection
  • Jul 19, 2016
  • BMC Plant Biology
  • Ying Huang + 5 more

BackgroundTomato yellow leaf curl virus (TYLCV) is a member of the family Geminiviridae, genus Begomovirus. The virus is a widespread plant virus that causes important economic losses in tomatoes. Genetic engineering strategies have increasingly been adopted to improve the resistance of tomatoes to TYLCV.ResultsIn this study, a proteomic approach was used to investigate the molecular mechanisms involved in tomato leaf defense against TYLCV infection. Proteins extracted from leaves of resistant tomato cultivar ‘Zheza-301’ and susceptible cultivar ‘Jinpeng-1’ after TYLCV infection were analyzed using two-dimensional gel electrophoresis. Eighty-six differentially expressed proteins were identified and classified into seven groups based on their functions. For several of the proteins, including CDC48, CHI and HSC70, expression patterns measured using quantitative real-time PCR differed from the results of the proteomic analysis. A putative interaction network between tomato leaves and TYLCV infection provides us with important information about the cellular activities that are involved in the response to TYLCV infection.ConclusionsWe conducted a comparative proteomic study of TYLCV infection in resistant and susceptible tomato cultivars. The proteins identified in our work show a variety of functions and expression patterns in the process of tomato–TYLCV interaction, and these results contribute to our understanding of the mechanism underlying TYLCV resistance in tomatoes at the protein level.Electronic supplementary materialThe online version of this article (doi:10.1186/s12870-016-0819-z) contains supplementary material, which is available to authorized users.

  • Research Article
  • Cite Count Icon 19
  • 10.1007/s10725-013-9820-9
Effect of 28-homobrassinolide on susceptible and resistant cultivars of tomato after nematode inoculation
  • May 5, 2013
  • Plant Growth Regulation
  • Ravinderjit Kaur + 2 more

In vitro effects of 28-homobrassinolide (HBl) were evaluated on morphological and biochemical parameters of susceptible (Pusa Ruby) and resistant (PNR-7) cultivars of tomato, 5 days after nematode inoculation. In susceptible cultivar, nematode invasion reduced the plant growth while growth was enhanced after brassinosteroid treatment. In case of resistant plants, nematodes were not able to invade the roots and here also, pre-sowing treatment of seeds with HBl further enhanced the growth of plants. An increase in specific activities of antioxidative enzymes (catalase, ascorbate peroxidase, guaiacol peroxidase, glutathione reductase, glutathione peroxidase and superoxide dismutase) was observed in susceptible plants treated with HBl. In resistant cultivar, nematode inoculation increased the specific activities which were further enhanced with HBl treatment. The results obtained in the present study indicated the ameliorative effects on tomato varieties treated with HBl even after nematode stress. Thus, suggesting a possible role of HBl in lessening the oxidative stress generated during nematode invasion and boosting the resistance capacity of plants.

  • Research Article
  • Cite Count Icon 91
  • 10.1016/s0885-5765(05)80105-5
Comparative histology of resistant and susceptible tomato cultivars infected by Pseudomonas solanacearum
  • Feb 1, 1994
  • Physiological and Molecular Plant Pathology
  • V Grimault + 4 more

Comparative histology of resistant and susceptible tomato cultivars infected by Pseudomonas solanacearum

  • Research Article
  • Cite Count Icon 8
  • 10.3389/fpls.2025.1556928
Diversity and composition of soil microbial communities in the rhizospheres of late blight-resistant tomatoes after Phytophthora infestans inoculation.
  • Mar 7, 2025
  • Frontiers in plant science
  • Xinyan Zhou + 7 more

Late blight caused by the oomycete Phytophthora infestans poses a severe threat to global tomato (Solanum lycopersicum L.) production. While genetic resistance forms the cornerstone of disease control, the mechanisms underlying cultivar-specific resistance, particularly their interactions with rhizosphere microbiomes, remain poorly understood. To elucidate the mechanisms of tomato cultivar resistance to late blight and screen out antagonistic microorganisms against P. infestans, we investigated the microbial compositions in the rhizospheres of tomato cultivars with different late blight-resistance levels under both natural and P. infestans-inoculated conditions. Considerable differences in soil microbial diversity and composition of rhizospheres were found between late blight-resistant and -susceptible tomato cultivars. Under natural conditions, the resistant tomato cultivar exhibited higher bacterial diversity and lower fungal diversity than that of the susceptible cultivar. Additionally, after P. infestans inoculation, both the resistant and susceptible cultivars showed enrichment of microorganisms with potential antagonistic effects in the rhizospheres. Among them, bacterial genera, such as Pseudomonas, Azospirillum, and Acidovorax, and fungal genera, including Phoma, Arthrobotrys, Pseudallescheria, and Pseudolabrys, were enriched in the rhizospheres of the late blight-resistant tomato cultivar. In contrast, bacterial genera, including Flavobacterium, Pseudolabrys, and Burkholderia-Caballeronia-Paraburkholderia, and the Trichoderma fungal genus were enriched in the rhizospheres of the late blight-susceptible tomato cultivar. Simultaneously, the enrichment of pathogenic microorganisms, such as Neocosmospora and Plectosphaerella, was also detected in the rhizospheres of the susceptible tomato cultivar. Moreover, no enrichment of pathogenic microorganisms occurred in the late blight-resistant tomato cultivar after P. infestans inoculation. These findings suggest that these traits serve as effective defense mechanisms against pathogen invasion in resistant tomato cultivar. Overall, this study provides a comprehensive analysis of the rhizosphere microbial community structures in late blight-resistant and -susceptible tomato cultivars under natural conditions and their response following pathogen inoculation. Additionally, potential antagonistic microorganisms against late blight were also identified. The findings offer valuable insights for effective late blight management in tomatoes and contribute to the development of sustainable agricultural practices.

  • Research Article
  • Cite Count Icon 49
  • 10.1016/j.peptides.2009.06.005
Comparative proteomic analysis of bacterial wilt susceptible and resistant tomato cultivars
  • Jun 12, 2009
  • Peptides
  • Amber Afroz + 3 more

Comparative proteomic analysis of bacterial wilt susceptible and resistant tomato cultivars

  • Research Article
  • Cite Count Icon 36
  • 10.1094/phyto-07-13-0181-r
Responses of tomato genotypes to avirulent and Mi-virulent Meloidogyne javanica isolates occurring in Israel.
  • May 1, 2014
  • Phytopathology®
  • Ionit Iberkleid + 5 more

The behavior of naturally virulent Meloidogyne isolates toward the tomato resistance gene Mi in major tomato-growing areas in Israel was studied for the first time. Virulence of seven selected isolates was confirmed over three successive generations on resistant (Mi-carrying) and susceptible (non-Mi-carrying) tomato cultivars. Diagnostic markers verified the predominance of Meloidogyne javanica among virulent isolates selected on resistant tomato cultivars or rootstocks. To better understand the determinants of nematode selection on Mi-carrying plants, reproduction of Mi-avirulent and virulent isolates Mjav1 and Mjv2, respectively, measured as eggs per gram of root, on non-Mi-carrying, heterozygous (Mi/mi) and homozygous (Mi/Mi) genotypes was evaluated. Although no reproduction of Mjav1 was observed on Mi/Mi genotypes, some reproduction was consistently observed on Mi/mi plants; reproduction of Mjv2 on the homozygous and heterozygous genotypes was similar to that on susceptible cultivars, suggesting a limited quantitative effect of the Mi gene. Histological examination of giant cells induced by Mi-virulent versus avirulent isolates confirmed the high virulence of Mjv2 on Mi/mi and Mi/Mi genotypes, allowing the formation of well-developed giant-cell systems despite the Mi gene. Analysis of the plant defense response in tomato Mi/Mi, Mi/mi, and mi/mi genotypes to both avirulent and virulent isolates was investigated by quantitative real-time polymerase chain reaction. Although the jasmonate (JA)-signaling pathway was clearly upregulated by avirulent and virulent isolates on the susceptible (not carrying Mi) and heterozygous (Mi/mi) plants, no change in signaling was observed in the homozygous (Mi/Mi) resistant line following incompatible interaction with the avirulent isolate. Thus, similar to infection promoted by the avirulent isolate on the susceptible genotype, the Mi-virulent isolate induced the JA-dependent pathway, which might promote tomato susceptibility during the compatible interaction with the homozygous (Mi/Mi) resistant line. These results have important consequences for the management of Mi resistance genes for ensuring sustainable tomato farming.

  • Research Article
  • Cite Count Icon 64
  • 10.1007/bf02981327
Regulation of defense-related enzymes associated with bacterial spot resistance in Tomato
  • Apr 1, 2008
  • Phytoparasitica
  • R Kavitha + 1 more

Twenty tomato (Solanum lycopersicon) cultivars were screened for resistance against bacterial spot disease incited byXanthomonas axonopodis pv.vesicatoria under field conditions with and without pathogen infection. Screening was done by artificially inoculating aX. axonopodis pv.vesicatoria suspension to 4-week-old tomato seedlings and observing them for typical symptoms of the disease. Seedlings were categorized into highly resistant, resistant, susceptible and highly susceptible cultivars on the basis of disease incidence. Tomato cultivars were screened for defense-related enzymes, total phenols and lignin contents. The temporal patterns of all these enzymes were estimated with a moderately susceptible tomato cultivar. Native PAGE analysis of both peroxidase (POX) and polyphenol oxidase (PPO) was carried out for the time course of enzyme activities and also by selecting three different tomato cultivars, following infection with the pathogen. Based on the inducible amounts of these enzymes upon pathogen infection, the tomato cultivars were correlated with the disease incidence under field conditions. A significant (P≤0.05) correlation was observed between the degree of host resistance and the enzyme levels. In highly resistant tomato cultivars the enzyme levels, total phenols and lignin contents were increased in comparison with highly susceptible tomato cultivars. Isoform analysis of POX and PPO enzymes indicated a clear difference between resistant and susceptible tomato cultivars in the number of isoforms and also in the intensity of each isoform in the presence of pathogen infection. The possible regulation of defense-related enzymes in imparting host resistance is discussed.

  • Research Article
  • Cite Count Icon 16
  • 10.1007/s11274-016-2143-z
Characterization and evaluation of Bacillus amyloliquefaciens strain WF02 regarding its biocontrol activities and genetic responses against bacterial wilt in two different resistant tomato cultivars.
  • Sep 19, 2016
  • World Journal of Microbiology and Biotechnology
  • Chu-Ning Huang + 5 more

Bacillus amyloliquefaciens strain WF02, isolated from soil collected at Wufeng Mountain, Taiwan, has siderophore-producing ability and in vitro antagonistic activity against bacterial wilt pathogen. To determine the impact of plant genotype on biocontrol effectiveness, we treated soil with this strain before infecting susceptible (L390) and moderately resistant (Micro-Tom) tomato cultivars with Ralstonia solanacearum strain Pss4. We also compared the efficacy of this strain with that of commercial Bacillus subtilis strain Y1336. Strain WF02 provided longer lasting protection against R. solanacearum than did strain Y1336 and controlled the development of wilt in both cultivars. To elucidate the genetic responses in these plants under WF02 treatment, we analyzed the temporal expression of defense-related genes in leaves. The salicylic acid pathway-related genes phenylalanine ammonia-lyase and pathogenesis-related protein 1a were up-regulated in both cultivars, whereas expression of the jasmonic acid pathway-related gene lipoxygenase was only elevated in the susceptible tomato cultivar (L390). These results suggest that WF02 can provide protection against bacterial wilt in tomato cultivars with different levels of disease resistance via direct and indirect modes of action.

  • Research Article
  • Cite Count Icon 116
  • 10.1007/s10886-004-7948-9
ACQUIRED AND R-GENE-MEDIATED RESISTANCE AGAINST THE POTATO APHID IN TOMATO
  • Dec 1, 2004
  • Journal of Chemical Ecology
  • W C Cooper + 2 more

We examined the effects of three forms of host plant resistance in tomato, Lycopersicon esculentum, on the potato aphid, Macrosiphum euphorbiae. Mi-1.2, a resistance gene (R-gene) in tomato that deters aphid feeding, reduced the population growth of both potato aphid isolates tested, although it appeared to have a greater impact on isolate WU11 than on isolate WU12. The results suggest that there may be quantitative differences in virulence between these two aphid isolates. We also examined two distinct forms of acquired resistance in tomato, jasmonic acid (JA)-dependent and salicylic acid (SA)-dependent induced defenses. Exogenous foliar application of JA triggered expression of a JA-inducible proteinase inhibitor in tomato cultivars with and without Mi-1.2, although the effects of treatment on aphid performance differed between these cultivars. JA-treatment reduced aphid population growth on a susceptible tomato cultivar that lacks Mi-1.2, but did not significantly enhance or inhibit aphid control on a near-isogenic resistant tomato cultivar that carries this gene. Foliar application of an SA analog, benzothiadiazole (BTH), was used to induce SA-dependent defenses. BTH treatment reduced the population growth of both aphid isolates on a susceptible tomato cultivar, and also enhanced aphid control on a resistant cultivar. The results indicate that both SA- and JA-dependent acquired resistance in tomato have a direct negative effect on a phloem-feeding insect. Furthermore, this study demonstrates that acquired resistance and R-gene-mediated resistance can interact for enhanced suppression of insect herbivores.

  • Research Article
  • Cite Count Icon 103
  • 10.1094/phyto.1999.89.12.1233
Spatial-Temporal and Quantitative Analysis of Growth and EPS I Production by Ralstonia solanacearum in Resistant and Susceptible Tomato Cultivars
  • Dec 1, 1999
  • Phytopathology®
  • J A Mcgarvey + 2 more

One susceptible and two resistant cultivars of tomato were tested for differences in infection by Ralstonia solanacearum and for the subsequent multiplication, colonization, and production of the wilt-inducing virulence factor, exopolysaccharide I (EPS I). Bacterial ingress into the taproot was fastest in the susceptible cv. Marion, followed by the resistant cvs. L285 (fivefold slower) and Hawaii 7996 (15-fold slower). Once inside the taproot, R. solanacearum colonized, to some extent, almost all regions of the resistant and susceptible plants. However, colonization occurred sooner in the susceptible than in the resistant cultivars, as measured by viablecell counts of bacteria in the midstems. Rates of multiplication and maximum bacterial cell densities were also greater in the susceptible than in the resistant cultivars. Growth experiments utilizing xylem fluid from infected and uninfected plants indicated that neither antimicrobial activities nor reduced levels of growth-supporting nutrients in the xylem fluids were responsible for the reduced bacterial multiplication in the resistant cultivars. Quantification of EPS I in the infected plants, using an enzyme-linked immunosorbent assay, revealed that the bacterial populations in the susceptible cultivar produced greater amounts of EPS I per plant than those in the resistant cultivars. Immunofluorescence microscopy using antibodies against either EPS I or R. solanacearum cells revealed that bacteria and EPS I were distributed throughout the vascular bundles and intercellular spaces of the pith in the susceptible cultivar, whereas in the resistant cultivars, bacteria and EPS I were restricted to the vascular tissues.

  • Research Article
  • Cite Count Icon 115
  • 10.1186/s12870-019-1784-0
Salicylic acid-induced differential resistance to the Tomato yellow leaf curl virus among resistant and susceptible tomato cultivars
  • May 2, 2019
  • BMC Plant Biology
  • Tong Li + 4 more

BackgroundIn higher plants, salicylic acid (SA) plays important roles in inducing resistance to biotic and abiotic stresses. Tomato yellow leaf curl virus (TYLCV) causes a highly devastating viral disease in plants, particularly in tomato. However, the roles of SA in inducing tomato plant resistance to TYLCV remain unclear.ResultsIn this study, we investigated whether the exogenous application of SA can improve the resistance of tomato plants to TYLCV in two tomato cultivars, resistant ‘Zhefen-702’ and susceptible ‘Jinpeng-1’. The impacts of SA on the accumulation of ascorbic acid (AsA) and biosynthetic gene expression, the activity of some important reactive oxygen species (ROS)-scavenging enzymes, and the expression patterns of stress-related genes were also determined. Results indicated that SA can effectively regulate the accumulation of AsA, especially in ‘Jinpeng-1’. Similarly, the expression patterns of most of the AsA biosynthetic genes showed a negative relationship with AsA accumulation in the resistant and susceptible tomato cultivars. In the two tomato cultivars, the activities of ascorbate peroxidase (APX) and peroxidase (POD) in the SA + TYLCV treated plants were increased during the experiment period except at 14 days (APX in ‘Jinpeng-1’ was also at 4 days) post infected (dpi) with TYLCV. Simultaneously, the activity of SOD was reduced in ‘Jinpeng-1’ and increased in ‘Zhefen-702’ after treatment with SA + TYLCV. SA can substantially induce the expression of ROS-scavenging genes at different extents. From 2 to 10 dpi, the virus content in the SA + TYLCV treated plants was remarkably lower than those in the TYLCV treated plants in ‘Jinpeng-1’and Zhefen-702’.ConclusionsThe above results suggest that SA can enhance tomato plant resistance by modulating the expression of genes encoding for ROS-scavenging players, altering the activity of resistance-related enzymes, and inducing the expression of pathogenesis-related genes to produce systemic acquired resistance. Simultaneously, these results confirm that SA is a resistance-inducing factor against TYLCV infection that can be effectively applied in tomato plants.

  • Research Article
  • Cite Count Icon 65
  • 10.3835/plantgenome2015.09.0082
AP2/ERF Transcription Factors Involved in Response to Tomato Yellow Leaf Curly Virus in Tomato.
  • Jul 1, 2016
  • The Plant Genome
  • Ying Huang + 7 more

Tomato yellow leaf curly virus (TYLCV), transmitted by the whitefly (), causes leaf curling and yellowing, plant dwarfism, and growth inhibition in tomato ( L.). The APETALA2 (AP2) and ethylene response factor (ERF) transcription factor (TF) family, the largest plant-specific TF family, was identified to function in plant development and pathogen defense. Our study aimed to analyze the mechanism underlying the function of ERF (SlERF) TFs in response to TYLCV infection and improve useful information to increase the resistance to TYLCV in tomato. A total of 22 tomato AP2/ERF TFs in response to TYLCV were identified according to transcriptome database. Five ERF-B3 TFs were identified in cultivars Hongbeibei (highly resistant), Zheza-301, Zhefen-702 (both resistant), Jinpeng-1, and Xianke-6 (both susceptible). Interaction network indicated that SlERF TFs could interact with mitogen-activated protein kinase (MAPK). Expression profiles of five ERF-B3 genes (, , , , and ) were detected by quantitative real-time-polymerase chain reaction (qRT-PCR) after TYLCV infection in five tomato cultivars. expression was upregulated in five tomato cultivars. The expressions of three genes (, , and ) were upregulated in Zheza-301 and Zhefen-702. and expressions were downregulated in Hongbeibei and Xianke-6, respectively. Yeast one-hybrid showed that the GCC-box binding ability of ERF-B3 TFs differed in resistant and susceptible tomato cultivars. Expression profiles were related to the GCC-box binding ability of SlERF TFs in resistant and susceptible tomato cultivars. The defense mechanism underlying the tomato's response to TYLCV involved a complicated network, which provided important information for us in breeding and genetic analysis.

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