Ozone-induced biochemical and molecular changes in vitis vinifera leaves and responses to botrytis cinerea infections

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SUMMARY

    The production peaks of these ROS in Bc- /O3 + leaves could be entirely ascribable to the plant metabolism (e_g, a transient oxidative burst; O2 - extent dynamics in relation to the sequence of treatments (e_g, accumulation of. A single pulse of O3 induced an early synthesis of Et (at 6 and 12 h FET) followed by the production of JA and SA (at 24 (only JA) and 48 h FET), where (i) Et and SA signaling triggered ROS production (e_g, accumulation of H2 O2 and. In Bc+ /O3 - leaves, the expression of some genes is . . .

     

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