Biological Control of Tropical Weeds Using Arthropods: Clidemia hirta (L.) D. Don (Melastomataceae)
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[1] Marli A. Ranal,et al. Micorrizas arbusculares em plantas medicinais cultivadas na Universidade Estadual de Maringá , 2008 .
[2] I. Schiavini,et al. Comparison between canopy trees and arboreal lower strata of urban semideciduous seasonal forest in Araguari - MG , 2006 .
[3] Denise Garcia de Santana,et al. How and why to measure the germination process , 2006 .
[4] M. Ranal,et al. Germinable soil seed bank of a gallery forest in Brazilian Cerrado , 2006, Plant Ecology.
[5] C. Mendes-Rodrigues,et al. Polyembryony and apomixis in Eriotheca pubescens (Malvaceae - Bombacoideae). , 2005, Plant biology.
[6] S. DeWalt,et al. Genetic variation of introduced Hawaiian and native Costa Rican populations of an invasive tropical shrub, Clidemia hirta (Melastomataceae). , 2004, American journal of botany.
[7] Renato Goldenberg,et al. Studies on the reproductive biology ofMelastomataceae in “cerrado” vegetation , 1998, Plant Systematics and Evolution.
[8] J. Denslow,et al. Biomass allocation, growth, and photosynthesis of genotypes from native and introduced ranges of the tropical shrub Clidemia hirta , 2004, Oecologia.
[9] P. Oliveira,et al. RAPD Evidence for Apomixis and Clonal Populations in Eriotheca (Bombacaceae) , 2003 .
[10] Sandra Graciele Pereira-Diniz. Ecofisiologia da germinação de sementes de Clidemia hirta (L.) D. Don (Melastomataceae) , 2003 .
[11] R. Romero,et al. Melastomataceae do Parque Nacional da Serra da Canastra, Minas Gerais, Brasil , 2002 .
[12] J. Carman. Asynchronous expression of duplicate genes in angiosperms may cause apomixis, bispory, tetraspory, and polyembryony , 1997 .