Search Results - "The Lox"

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  1. Marker-free PLRV resistant potato mediated by Cre-loxP excision and RNAi by Orbegozo, Jeanette P., Solorzano, Dennis, Cuéllar, Wilmer Jose, Bartolini, Maria Lupe, Ghislain, M., Kreuze, Jan F.

    Published 2016
    “…Accordingly, it is proposed to modify the Cre-loxP vector by reducing the 1 kb size of the region between nptII, loxP, and the LB.…”
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    Journal Article
  2. Self-excision of the antibiotic resistance gene npII using a heat inducible Cre-loxP system from transgenic potato by Cuéllar, Wilmer Jose, Gaudin, A., Solorzano, D., Casas, A., Nopo, L., Chudalayandi, P., Medrano, G., Kreuze, Jan F., Ghislain, M.

    Published 2006
    “…The excision of the nptII gene conferring resistance to kanamycin has been achieved here using a gene construct based on a heat-inducible cre gene producing a recombinase that eliminates cre and nptII genes flanked by two loxP sites. First-generation regenerants with the Cre- loxP system were obtained by selection on kanamycin media. …”
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    Journal Article
  3. Lipoxygenase activation in peanut seed cultivars resistant and susceptible to Aspergillus parasiticus colonization by Muller, Virginia, Amé, María Valeria, Carrari, Fernando, Gieco, Jorge Omar, Asis, Ramón

    Published 2019
    “…Our findings suggest that this mechanism is under transcriptional control of previously identified (LOX 2 and LOX 3) and novel (LOX 4 and LOX 5) LOX genes. …”
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    Artículo
  4. Volatile compounds released by maize grains and silks in response to infection by Fusarium verticillioides and its association with pathogen resistance by Fauguel, Carolina Maria, Campos Bermudez, Valeria Alina, Iglesias, Juliana, Fernandez, Mariana, Farroni, Abel Eduardo, Andreo, Carlos Santiago, Presello, Daniel Alberto

    Published 2017
    “…Real-time PCR from several lipoxygenase transcripts revealed that levels of gene expression depended on the genotype and the inoculation level and suggested that F. verticillioides could use compounds from the 9-LOX pathway to promote infection in grains. On the other hand, volatiles produced by the 13-LOX pathway were more important in moderately resistant genotypes and could be associated to field resistance. …”
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    Artículo
  5. Involvement of the Redox System in Chilling Injury and Its Alleviation by 1-Methylcyclopropene in 'Rojo Brillante' Persimmon by Novillo, Pedro, Salvador, Alejandra, Navarro, Pilar, Besada, Cristina

    Published 2017
    “…Our results showed that during cold store, both control and 1-MCP treated fruit underwent gradual oxidative stress (accumulation of H2O2, increment in APX, CAT, LOX, and slight increase in SOD activity) but no CI was manifested. …”
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    Artículo
  6. Distribution of alleles related to grain weight and quality in Moroccan and North American wheat landraces and cultivars by Chegdali, Youssef, Ouabbou, Hassan, Essamadi, Abdelkhalid, Sahri, Ali, Núñez Ríos, Claudia, Dreisigacker, Susanne, Guzmán García, Carlos

    Published 2022
    “…Unfavorable alleles, namely Psy1-B1a (Psy1-B1), Psy-B1a or b (Psy-B1), Lox-B1a (Lox-B1), Hap- 4A-C (TaCwi-4A), TaGS5-A1a (TaGS5-A1), TaTGW6-b (TGW6-4A), Hap-L (TaSus2), and TaTGW6-A1b (TGW6), were most frequent or even omniprevalent in all genotypes. …”
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    Journal Article
  7. Plant defensive mechanisms against insect pests by Markgren, Joel

    Published 2012
    “…The results showed that the Spodoptera generalist is greatly affected by the plant`s defensive system, while the Plutella insect is not. A qPCR analysis of LOX 2 gene expression was conducted to examine the defensive strategy of plants against attacks by Plutella, which showed that all plants except one activated their inducible defenses. …”
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    First cycle, G2E
  8. Differential gene expression in East African highland bananas (Musa spp.): interactions between nonpathogenic Fusarium V5w2 and Radopholus similis by Paparu, P., Dubois, T., Coyne, Danny L., Viljoen, Altus

    Published 2013
    “…Endophyte colonization primed the expression of b-1,3-glucan synthase and Coronatine insensitive 1 (COI1) in the susceptible cultivar, and that of COI1 and Lipoxygenase (LOX) in the tolerant.We isolate and identify for the first time genes involved in the interaction between endophytic non-pathogenic F. oxysporum and banana.…”
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    Journal Article
  9. Different metabolic and genetic responses in citrus may explain relative susceptibility to Tetranychus urticae by Agut, Blas, Gamir, Jordi, Jaques, Josep A., Hurtado-Ruiz, Mónica A., Flors, Victor

    Published 2017
    “…Moreover, treatments with the LOX inhibitor Phenidone abolished the enhanced tolerance of sour orange. …”
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    Artículo
  10. Tetranychus urticae-triggered responses promote genotype-dependent conspecific repellence or attractiveness in citrus by Agut, Blas, Gamir, Jordi, Jaques, Josep A., Flors, Victor

    Published 2017
    “…HIPVs released from sour orange plants following T.urticae infestation induce resistance in Cleopatra mandarin plants, thereby reducing oviposition rates and stimulating the oxylipin biosynthetic gene lipoxygenase2 (LOX2). Cleopatra HIPVs do not affect the response to T.urticae of these rootstocks. …”
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    Artículo
  11. Enterohemorrhagic Escherichia coli O157:H7 antigens produced in transgenic lettuce effective as an oral vaccine in mice by Su, Yun‑Lin, Larzabal, Mariano, Song, Huan, Cheng, Tianfang, Wang, Yufang, Smith, Libia Yael, Cataldi, Angel Adrian, Ow, David W.

    Published 2023
    “…The ability to upgrade the transgenic lettuce by stacking additional antigen genes or replacing older genes with newer versions would also be possible through the combined use of Bxb-att and Cre-lox recombination systems.…”
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    Artículo
  12. Role of Brassinosteroids in plant growth promotion and stress tolerance during priming mediated by beneficial bacteria by Parra Pachon, Oscar Javier

    Published 2011
    “…In order to understand the role of BR in JA signaling pTRV-JAR1 and pTRV-LOX2 constructs were developed and virus induced gene silencing were performed on Col-0 and BR mutants bak1 and det2. …”
    L3
  13. Systemic resistance in citrus to Tetranychus urticae induced by conspecifics is transmitted by grafting and mediated by mobile amino acids by Agut, Blas, Gamir, Jordi, Jaques, Josep A., Flors, Victor

    Published 2020
    “…Glu perception in the shoots induced the JA pathway, which primed LOX-2 gene expression when citrus plants were exposed to a second infestation. …”
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    Artículo
  14. Physiological and molecular insights into adaptive responses of Vigna marina to drought stress by Liu, Yiming, Wang, Zhibo, Liu, Guodao, Shen, Wenhao, Lohani, Neeta, Wang, Peng, Ye, Xiuxu, Atieno, Mary, Dao Thi, Hang, Nghia, Nguyen Khoi, Hu, An, Yan, Linling, Huan, Hengfu

    Published 2025
    “…WGCNA identified 22 gene modules in Vm and 10 in Vu, each showing positive or negative associations with drought tolerance based on their correlation with physiological traits. Key DEHGs like LEA3, LOX4, SODC, and a cluster of XTH genes were found in these modules, highlighting distinct molecular responses to drought between the two species. …”
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    Journal Article
  15. La respuesta de los cítricos a Tetranychus urticae by Cruz-Miralles, Joaquín, Cabedo-López, Marc, Agut, Blas, Peris, D., Flors, Victor, Jaques, Josep A.

    Published 2020
    “…Por último se realizaron análisis de expresión génica para determinar qué genes están involucrados en la respuesta defensiva de los cítricos y, en especial, el papel que desempeñan las proteinas LOX" (Lipoxigenasas) involucradas en la producción del ácido jasmónico. …”
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    Ficha
  16. Metoder som minskar bildning av teratom vid in vivo transplantation av inducerade pluripotenta celler by de Haan, Therese

    Published 2013
    “…Genom användning av Cre/LoxP och PiggyBac transposoner har man kunnat plocka bort transkriptionsfaktorerna efter det att omprogrammeringen har skett. …”
    M2
  17. Seed biopriming with Trichoderma strains isolated from tree bark improves plant growth, antioxidative defense system in rice and enhance straw degradation capacity by Swain, Harekrushna, Adak, Totan, Mukherjee, Arup K., Sarangi, Sarmistha, Samal, Pankajini, Khandual, Ansuman, Jena, Rupalin, Bhattacharyya, Pratap, Naik, Soumendra K., Mehetre, Sayaji T., Baite, Mathew S., Kumar M, Sunil, Zaidi, Najam Waris

    Published 2021
    “…The expression of the aforementioned enzymes were confirmed by the expression of corresponding defense genes like PAL (andgt;3-fold), DEFENSIN (andgt;1-fold), POX (andgt;1.5-fold), LOX (andgt;1-fold), and PR-3 (andgt;2-fold) as compared to the non-treated control plants. …”
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    Journal Article

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