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54. POnTE Project Deliverable 9.1: Practical solution for management and containment of Xylella fastidiosa

57. Functional characterization of OsMADS18, a member of the AP1/SQUA subfamily of MADS box genes (1) [w]

62. Simultaneous LC--MS/MS determination of reference pharmaceuticals as a method for the characterization of the Caco-2 cell monolayer absorption properties

71. The plant oncogene rolD stimulates flowering in transgenic tobacco plants

75. Free-radical cyclization in the synthesis of a 1-aza-5-silabicyclo(5.2.0)nonan-9-one, a silicon-containing beta-lactam

79. Additional file 2: of Jasmonate promotes auxin-induced adventitious rooting in dark-grown Arabidopsis thaliana seedlings and stem thin cell layers by a cross-talk with ethylene signalling and a modulation of xylogenesis

80. Additional file 3: of Jasmonate promotes auxin-induced adventitious rooting in dark-grown Arabidopsis thaliana seedlings and stem thin cell layers by a cross-talk with ethylene signalling and a modulation of xylogenesis

81. The auxin indole-3-butyric acid controls adventitious rooting in Arabidopsis thaliana thin cell layers by its conversion into indole-3-acetic acid and nitric oxide production

86. Dual morphogenic role of 1,3-di(benzo[d]oxazol-5-yl)urea: xylogenesis enhancer or adventitious rooting adjuvant in carob and pine microcuttings

89. IBA induces adventitious rooting in Arabidopsis thaliana thin cell layers by conversion into IAA, involving nitric oxide formation, IAA transport, and IAA biosynthesis

90. Arabidopsis root formation is altered by cadmium and arsenic

92. An efficient synthesis of 2-(halogenomethyl)penems

96. Cadmium and arsenic affect adventitious root formation and the definition of the quiescent centre in Arabidopsis thaliana (L.) Heynh plantlets

99. FAD8, lip and osmotin are cold-acclimation genes in Olea europaea L

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