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js-wsj-grid-card-author ds2-5-body-md ds2-5-body-link" data-author-id="32591503" href="https://independent.academia.edu/JaneWard3"><img alt="Profile image of Jane Ward" class="ds-work-card--author-avatar" src="//a.academia-assets.com/images/s65_no_pic.png" />Jane Ward</a></div><div class="ds-work-card--detail"><p class="ds-work-card--detail ds2-5-body-sm">1998, Lipid - Fett</p></div><div class="ds-work-card--button-container"><button class="ds2-5-button js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;continue-reading-button--work-card&quot;,&quot;attachmentId&quot;:45436066,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;workUrl&quot;:&quot;https://www.academia.edu/13356902/Jasmonic_acid_biosynthesis_signal_transduction_gene_expression&quot;}">See full PDF</button><button class="ds2-5-button ds2-5-button--secondary js-swp-download-button" 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class="ds-related-work--container js-wsj-grid-card" data-collection-position="0" data-entity-id="70802629" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/70802629/Jasmonates_News_on_Occurrence_Biosynthesis_Metabolism_and_Action_of_an_Ancient_Group_of_Signaling_Compounds">Jasmonates: News on Occurrence, Biosynthesis, Metabolism and Action of an Ancient Group of Signaling Compounds</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="38239374" href="https://independent.academia.edu/ClausWasternack">Claus Wasternack</a></div><p class="ds-related-work--metadata ds2-5-body-xs">International Journal of Molecular Sciences</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Jasmonates: News on Occurrence, Biosynthesis, Metabolism and Action of an Ancient Group of Signaling Compounds&quot;,&quot;attachmentId&quot;:80398813,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/70802629/Jasmonates_News_on_Occurrence_Biosynthesis_Metabolism_and_Action_of_an_Ancient_Group_of_Signaling_Compounds&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/70802629/Jasmonates_News_on_Occurrence_Biosynthesis_Metabolism_and_Action_of_an_Ancient_Group_of_Signaling_Compounds"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="1" data-entity-id="58003783" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/58003783/Jasmonates_an_update_on_biosynthesis_signal_transduction_and_action_in_plant_stress_response_growth_and_development">Jasmonates: an update on biosynthesis, signal transduction and action in plant stress response, growth and development</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="38239374" href="https://independent.academia.edu/ClausWasternack">Claus Wasternack</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Annals of Botany, 2007</p><p class="ds-related-work--abstract ds2-5-body-sm">Background Jasmonates are ubiquitously occurring lipid-derived compounds with signal functions in plant responses to abiotic and biotic stresses, as well as in plant growth and development. Jasmonic acid and its various metabolites are members of the oxylipin family. Many of ...</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Jasmonates: an update on biosynthesis, signal transduction and action in plant stress response, growth and development&quot;,&quot;attachmentId&quot;:72626240,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/58003783/Jasmonates_an_update_on_biosynthesis_signal_transduction_and_action_in_plant_stress_response_growth_and_development&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/58003783/Jasmonates_an_update_on_biosynthesis_signal_transduction_and_action_in_plant_stress_response_growth_and_development"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="2" data-entity-id="18242520" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/18242520/A_rapid_wound_signal_activates_the_systemic_synthesis_of_bioactive_jasmonates_in_Arabidopsis">A rapid wound signal activates the systemic synthesis of bioactive jasmonates in Arabidopsis</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="38226156" href="https://independent.academia.edu/GreggHowe">Gregg Howe</a></div><p class="ds-related-work--metadata ds2-5-body-xs">The Plant Journal, 2009</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;A rapid wound signal activates the systemic synthesis of bioactive jasmonates in Arabidopsis&quot;,&quot;attachmentId&quot;:39951385,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/18242520/A_rapid_wound_signal_activates_the_systemic_synthesis_of_bioactive_jasmonates_in_Arabidopsis&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/18242520/A_rapid_wound_signal_activates_the_systemic_synthesis_of_bioactive_jasmonates_in_Arabidopsis"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="3" data-entity-id="16600821" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/16600821/Jasmonate_signaling_in_plant_development_and_defense_response_to_multiple_a_biotic_stresses">Jasmonate signaling in plant development and defense response to multiple (a)biotic stresses</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="35926301" href="https://independent.academia.edu/AngeloSantino">Angelo Santino</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Plant Cell Reports, 2013</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Jasmonate signaling in plant development and defense response to multiple (a)biotic stresses&quot;,&quot;attachmentId&quot;:40040266,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/16600821/Jasmonate_signaling_in_plant_development_and_defense_response_to_multiple_a_biotic_stresses&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/16600821/Jasmonate_signaling_in_plant_development_and_defense_response_to_multiple_a_biotic_stresses"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="4" data-entity-id="33274565" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/33274565/A_chloroplast_lipoxygenase_is_required_for_wound_induced_jasmonic_acid_accumulation_in_Arabidopsis">A chloroplast lipoxygenase is required for wound-induced jasmonic acid accumulation in Arabidopsis</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="64977449" href="https://independent.academia.edu/JohnMullet">John Mullet</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Proceedings of the National Academy of Sciences, 1995</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;A chloroplast lipoxygenase is required for wound-induced jasmonic acid accumulation in Arabidopsis&quot;,&quot;attachmentId&quot;:53342951,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/33274565/A_chloroplast_lipoxygenase_is_required_for_wound_induced_jasmonic_acid_accumulation_in_Arabidopsis&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/33274565/A_chloroplast_lipoxygenase_is_required_for_wound_induced_jasmonic_acid_accumulation_in_Arabidopsis"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="5" data-entity-id="58940979" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/58940979/Role_of_beta_oxidation_in_jasmonate_biosynthesis_and_systemic_wound_signaling_in_tomato">Role of beta-oxidation in jasmonate biosynthesis and systemic wound signaling in tomato</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="52294145" href="https://independent.academia.edu/HoweGregg">Gregg Howe</a></div><p class="ds-related-work--metadata ds2-5-body-xs">The Plant cell, 2005</p><p class="ds-related-work--abstract ds2-5-body-sm">Jasmonic acid (JA) is a lipid-derived signal that regulates plant defense responses to biotic stress. Here, we report the characterization of a JA-deficient mutant of tomato (Lycopersicon esculentum) that lacks local and systemic expression of defensive proteinase inhibitors (PIs) in response to wounding. Map-based cloning studies demonstrated that this phenotype results from loss of function of an acyl-CoA oxidase (ACX1A) that catalyzes the first step in the peroxisomal beta-oxidation stage of JA biosynthesis. Recombinant ACX1A exhibited a preference for C12 and C14 straight-chain acyl-CoAs and also was active in the metabolism of C18 cyclopentanoid-CoA precursors of JA. The overall growth, development, and reproduction of acx1 plants were similar to wild-type plants. However, the mutant was compromised in its defense against tobacco hornworm (Manduca sexta) attack. Grafting experiments showed that loss of ACX1A function disrupts the production of the transmissible signal for wound...</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Role of beta-oxidation in jasmonate biosynthesis and systemic wound signaling in tomato&quot;,&quot;attachmentId&quot;:73107688,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/58940979/Role_of_beta_oxidation_in_jasmonate_biosynthesis_and_systemic_wound_signaling_in_tomato&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/58940979/Role_of_beta_oxidation_in_jasmonate_biosynthesis_and_systemic_wound_signaling_in_tomato"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="6" data-entity-id="73938369" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/73938369/Jasmonic_Acid_Signaling_Pathway_in_Response_to_Abiotic_Stresses_in_Plants">Jasmonic Acid Signaling Pathway in Response to Abiotic Stresses in Plants</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="12628952" href="https://independent.academia.edu/SarafatAli">Sarafat Ali</a></div><p class="ds-related-work--metadata ds2-5-body-xs">International Journal of Molecular Sciences</p><p class="ds-related-work--abstract ds2-5-body-sm">Plants as immovable organisms sense the stressors in their environment and respond to them by means of dedicated stress response pathways. In response to stress, jasmonates (jasmonic acid, its precursors and derivatives), a class of polyunsaturated fatty acid-derived phytohormones, play crucial roles in several biotic and abiotic stresses. As the major immunity hormone, jasmonates participate in numerous signal transduction pathways, including those of gene networks, regulatory proteins, signaling intermediates, and proteins, enzymes, and molecules that act to protect cells from the toxic effects of abiotic stresses. As cellular hubs for integrating informational cues from the environment, jasmonates play significant roles in alleviating salt stress, drought stress, heavy metal toxicity, micronutrient toxicity, freezing stress, ozone stress, CO2 stress, and light stress. Besides these, jasmonates are involved in several developmental and physiological processes throughout the plant ...</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Jasmonic Acid Signaling Pathway in Response to Abiotic Stresses in Plants&quot;,&quot;attachmentId&quot;:82273825,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/73938369/Jasmonic_Acid_Signaling_Pathway_in_Response_to_Abiotic_Stresses_in_Plants&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/73938369/Jasmonic_Acid_Signaling_Pathway_in_Response_to_Abiotic_Stresses_in_Plants"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="7" data-entity-id="39145318" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/39145318/Defense_Induced_by_Jasmonic_Acid_A_Review">Defense Induced by Jasmonic Acid: A Review</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="29509417" href="https://independent.academia.edu/LeelaBhatt">Leela Bhatt</a></div><p class="ds-related-work--metadata ds2-5-body-xs">International Journal of Current Microbiology and Applied Sciences, 2017</p><p class="ds-related-work--abstract ds2-5-body-sm">A number of novel JA derivatives have been synthesized, isolated, and characterized. A clearer picture of jasmonate biosynthesis and functions has emerged that in many respects resembles the synthesis and functions of prostaglandins and leukotrienes in mammalians. Jasmonates are produced from a-linolenic acid from lipids of damaged plant membranes. The biosynthesis of these signalling compounds can be triggered through the activation of cell membrane receptors by pathogens, peptide signals, or wounding. These jasmonates are widely distributed in plants and affect a various processes, including fruit ripening, production of viable pollen, root growth, and plant responses to wounding, abiotic stress, infections, and insects. Many of these new compounds have potent biological activity, promising that novel types of pharmacological agents possessing new mechanisms of action could soon become available. All these effects of JA are indirect, due to the wellstudied induction of the biosynthesis of secondary compounds like anthocyanins, glucosinolates, terpenoids, or phenolics via transcription factors such as the Myb, Myc, and ORCA families. JA and its derivatives is widely use in daliy life as medicinal, cosmetic, and flavoring uses and other applications in agriculture systems. During the last 20 years, the many of research and inventions have showed that JA, (þ)-7-iso-JA and MJ have anticancer activity against various cancers (e.g., prostate, lymphoid, breast, blood, skin cancers, etc.).</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Defense Induced by Jasmonic Acid: A Review&quot;,&quot;attachmentId&quot;:59268804,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/39145318/Defense_Induced_by_Jasmonic_Acid_A_Review&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/39145318/Defense_Induced_by_Jasmonic_Acid_A_Review"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="8" data-entity-id="85470536" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/85470536/Role_of_b_Oxidation_in_Jasmonate_Biosynthesis_and_Systemic_Wound_Signaling_in_Tomato_W">Role of b-Oxidation in Jasmonate Biosynthesis and Systemic Wound Signaling in Tomato W</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="57395744" href="https://independent.academia.edu/JVrebalov">J. Vrebalov</a></div><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Role of b-Oxidation in Jasmonate Biosynthesis and Systemic Wound Signaling in Tomato W&quot;,&quot;attachmentId&quot;:90159080,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/85470536/Role_of_b_Oxidation_in_Jasmonate_Biosynthesis_and_Systemic_Wound_Signaling_in_Tomato_W&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/85470536/Role_of_b_Oxidation_in_Jasmonate_Biosynthesis_and_Systemic_Wound_Signaling_in_Tomato_W"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div><div class="ds-related-work--container js-wsj-grid-card" data-collection-position="9" data-entity-id="18242531" data-sort-order="default"><a class="ds-related-work--title js-wsj-grid-card-title ds2-5-body-md ds2-5-body-link" href="https://www.academia.edu/18242531/Role_of_Oxidation_in_Jasmonate_Biosynthesis_and_Systemic_Wound_Signaling_in_Tomato">Role of  Oxidation in Jasmonate Biosynthesis and Systemic Wound Signaling in Tomato</a><div class="ds-related-work--metadata"><a class="js-wsj-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="38226156" href="https://independent.academia.edu/GreggHowe">Gregg Howe</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Plant Cell, 2005</p><p class="ds-related-work--abstract ds2-5-body-sm">Jasmonic acid (JA) is a lipid-derived signal that regulates plant defense responses to biotic stress. Here, we report the characterization of a JA-deficient mutant of tomato (Lycopersicon esculentum) that lacks local and systemic expression of defensive proteinase inhibitors (PIs) in response to wounding. Map-based cloning studies demonstrated that this phenotype results from loss of function of an acyl-CoA oxidase (ACX1A)</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Role of  Oxidation in Jasmonate Biosynthesis and Systemic Wound Signaling in Tomato&quot;,&quot;attachmentId&quot;:39951339,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/18242531/Role_of_Oxidation_in_Jasmonate_Biosynthesis_and_Systemic_Wound_Signaling_in_Tomato&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-wsj-grid-card-view-pdf" href="https://www.academia.edu/18242531/Role_of_Oxidation_in_Jasmonate_Biosynthesis_and_Systemic_Wound_Signaling_in_Tomato"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" style="font-size: 18px" translate="no">chevron_right</span></a></div></div></div></div><div class="ds-sticky-ctas--wrapper js-loswp-sticky-ctas hidden"><div class="ds-sticky-ctas--grid-container"><div class="ds-sticky-ctas--container"><button class="ds2-5-button js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;continue-reading-button--sticky-ctas&quot;,&quot;attachmentId&quot;:45436066,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;workUrl&quot;:null}">See full PDF</button><button class="ds2-5-button ds2-5-button--secondary js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;download-pdf-button--sticky-ctas&quot;,&quot;attachmentId&quot;:45436066,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;workUrl&quot;:null}"><span class="material-symbols-outlined" style="font-size: 20px" translate="no">download</span>Download PDF</button></div></div></div><div class="ds-below-fold--grid-container"><div class="ds-work--container js-loswp-embedded-document"><div class="attachment_preview" data-attachment="Attachment_45436066" style="display: none"><div class="js-scribd-document-container"><div class="scribd--document-loading js-scribd-document-loader" style="display: block;"><img alt="Loading..." src="//a.academia-assets.com/images/loaders/paper-load.gif" /><p>Loading Preview</p></div></div><div style="text-align: center;"><div class="scribd--no-preview-alert js-preview-unavailable"><p>Sorry, preview is currently unavailable. 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class="ds-related-work--metadata"><a class="js-related-work-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="59269098" href="https://independent.academia.edu/HildebrandD">David Hildebrand</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Plant molecular biology, 1999</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Overexpression of a cytoplasm-localized allene oxide synthase promotes the wound-induced accumulation of jasmonic acid in transgenic 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data-author-id="230067298" href="https://independent.academia.edu/ThanhTamHo8">Thanh Tam Ho</a></div><p class="ds-related-work--metadata ds2-5-body-xs">International Journal of Molecular Sciences, 2020</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Methyl Jasmonate Induced Oxidative Stress and Accumulation of Secondary Metabolites in Plant Cell and Organ Cultures&quot;,&quot;attachmentId&quot;:102757050,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/102504800/Methyl_Jasmonate_Induced_Oxidative_Stress_and_Accumulation_of_Secondary_Metabolites_in_Plant_Cell_and_Organ_Cultures&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download 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jasmonate-induced defense responses in grapevine cell cultures</a><div class="ds-related-work--metadata"><a class="js-related-work-grid-card-author ds2-5-body-sm ds2-5-body-link" data-author-id="36680098" href="https://independent.academia.edu/St%C3%A9phanieCluzet">Stéphanie Cluzet</a></div><p class="ds-related-work--metadata ds2-5-body-xs">Journal of Plant Physiology, 2009</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Implication of signaling pathways involving calcium, phosphorylation and active oxygen species in methyl jasmonate-induced defense responses in grapevine cell 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ds2-5-body-link" data-author-id="38357688" href="https://independent.academia.edu/BauerPetra">Petra Bauer</a></div><p class="ds-related-work--metadata ds2-5-body-xs">THE PLANT CELL ONLINE, 2003</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;The Tomato Suppressor of prosystemin-mediated responses2 Gene Encodes a Fatty Acid Desaturase Required for the Biosynthesis of Jasmonic Acid and the Production of a Systemic Wound Signal for Defense Gene 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ds2-5-body-xs">2016</p><div class="ds-related-work--ctas"><button class="ds2-5-text-link ds2-5-text-link--inline js-swp-download-button" data-signup-modal="{&quot;location&quot;:&quot;wsj-grid-card-download-pdf-modal&quot;,&quot;work_title&quot;:&quot;Jasmonates: Multifunctional Roles in Stress Tolerance&quot;,&quot;attachmentId&quot;:66090512,&quot;attachmentType&quot;:&quot;pdf&quot;,&quot;work_url&quot;:&quot;https://www.academia.edu/45605545/Jasmonates_Multifunctional_Roles_in_Stress_Tolerance&quot;,&quot;alternativeTracking&quot;:true}"><span class="material-symbols-outlined" style="font-size: 18px" translate="no">download</span><span class="ds2-5-text-link__content">Download free PDF</span></button><a class="ds2-5-text-link ds2-5-text-link--inline js-related-work-grid-card-view-pdf" href="https://www.academia.edu/45605545/Jasmonates_Multifunctional_Roles_in_Stress_Tolerance"><span class="ds2-5-text-link__content">View PDF</span><span class="material-symbols-outlined" 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