Analysis of the DXS Pan-Gene Family Reveals Evolutionary Conservation and Regulatory Divergence Underpinning Terpenoid Metabolism in Lauraceae. [PDF]
Fu C, Tao S, Wen S, Wang X.
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Extroparvum occidentale gen. et sp. nov. and the Cretaceous diversification of Lauraceae. [PDF]
Tang KK, Matsunaga KKS, Atkinson BA.
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Two regions, two lineages: Untangling two centuries of confusion between Machilus glaucescens and M. macranthus (Lauraceae) through integrative taxonomy. [PDF]
Malakar N, Gudasalamani R, Rengaian G.
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A new species of <i>Ocotea</i> (Lauraceae) from Espírito Santo, Brazil. [PDF]
Santos LS, de Moraes PLR.
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Este trabalho apresenta um estudo taxonômico da família Lauraceae no estado da Bahia, Brasil. Foram encontrados nos seguintes herbários: A, ALCB, AWH, B, BAH, BC, BHCB, BM, BR, C, CAS, CEN, CEPEC, CM, CNS, COAH, COI, COL, CVRD, E, ESA, F, FI, G, G–DC, GB,
Ribeiro, Henrique Lauand [UNESP]
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Balanced polymorphism in a floral transcription factor underlies the ancient rhythm of daily sex alternation in avocado. [PDF]
Groh JS +10 more
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Structural characteristics of the Phoebe hui chloroplast genome and phylogenetic analyses of Phoebe plants. [PDF]
Zhang L +12 more
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<i>Cinnamomum fasciculatum</i> (Lauraceae), a new species from Guangdong, China. [PDF]
Deng SW +4 more
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Response mechanism of anthocyanins accumulation in young leaves of dominant tree species in different successional stages of subtropical forests to environmental temperature changes. [PDF]
Lin W +6 more
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The Metabolome of the <i>Ocotea</i> spp.: From Biosynthetic Aspects to Bioactive Chemical Scaffolds by Integrating the Genus Chemical Database (<i>Ocotea</i>DB). [PDF]
Katchborian-Neto A +13 more
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