Indução e seleção de linhagens celulares de Eucalyptus urophylla para tolerância aos estresses hídrico e térmico [PDF]
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Exploring the genetic basis of heterosis in eucalypt growth based on transcriptome analysis. [PDF]
Su Z +5 more
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Variation of wood stiffness and genetic control within eucalyptus hybrid stems from clonal plantations in Brazil [PDF]
Chaix, Gilles +4 more
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Wide Distribution of Teratosphaeria epicoccoides and T. destructans Associated with Diseased Eucalyptus Leaves in Plantations in Southern China. [PDF]
Chen B, Wu W, Chen S.
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Oxidative Stress and Negative Consequences on Photosystem II Occasioned by Lead Stress Are Mitigated by 24-Epibrassinolide and Dopamine in Tomato Plants. [PDF]
Prestes LR +7 more
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The hybrid Eucalyptus UP99 (E. urophylla x E. pellita) and UP95 (E. urophylla x E. pellita) were recognized as a high economic value species according to Decision 65/QĐ-BNN-LN on January 11th in 2013. However, it is very difficult to the famer in identifying these species by morphological observation.
Bui Thi Mai Huong +2 more
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Biolistic transformation of Eucalyptus grandis x E. urophylla callus
Australian Journal of Plant Physiology, 2002A procedure for genetic transformation of the hybrid Eucalyptus grandis × E. urophylla using particle bombardment is described. Cotyledon- and hypocotyl-derived calli growing on SP medium supplemented with 2 m thidiazuron or on MS modified (MSM) medium supplemented with 10 m 2,4-dichlorophenoxyacetic acid (2,4-D) and 2.5 m ...
Laudete Maria, Sartoretto +2 more
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Abstract The phenolic composition of Eucalyptus grandis , Eucalyptus urograndis ( E. grandis × E. urophylla ) and Eucalyptus maidenii bark is reported for the first time. High performance liquid chromatography–electrospray ionization mass spectrometry (HPLC–ESI-MS) and tandem mass spectrometry (MS n ) analysis of the methanol:water (50:50 ...
Sónia A O Santos +2 more
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Micropropagation of Eucalyptus grandis × E. urophylla AEC 224 clone
Journal of Forestry Research, 2016Genetic transformation systems require protocols that allow regenerating transgenic plants from transformed tissues. This study aimed to establish a protocol for indirect organogenesis in leaf explants of a Eucalyptus grandis × E. urophylla AEC 224 clone. During callogenesis stage, several concentrations of NAA and then NAA or 2,4-D combined with TDZ
Cassiana de Oliveira +5 more
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