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Effects of Different Simulated Management Intensities on The Genetic Diversity of a Heart-of-palm Tree Natural Population (Euterpe edulis Martius)

References ANDRÉ, T., M. R. LEMES, J. GROGAN and R. GRIBEL (2008): Post-logging loss of genetic diversity in a mahogany (Swietenia macrophylla King, Meliaceae) population in Brazilian Amazonia. Forest Ecology and Management 255: 340-345. ALFENAS, A. C. (1998): Eletroforese de isoenzimas e proteínas afins: fundamentos e aplicações em plantas e microorganismos. Viçosa: UFV. BERGMANN, F., H. R. GREGORIOUS and J. B. LARSEN (1990): Levels of genetic variation in European silver fir (Abies alba) - are they related to

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Variance components and parent–offspring cor- relations of growth traits vary among the initial planting spacings in Zelkova serrata

Zelkova serrata Makino and the management of Zelkova forest. Hardwood Research 4: 39-47 (in Japanese with English summary) Hashizume H (1988) On the characteristics of growth and wood quality and breeding in Zelkova serrata. Forest Tree Breeding 147: 1-5 (in Japanese with English summary) Hashizume H, Kuroi D, Yasui Y (1991) On the stand structure and certain characteristics of middle-aged Zelkova serrata forests. Hardwood Research 6: 59- 77 (in Japanese with English summary) Hayashi S, Sakai K (1972) Competition in relation to growth of trees in

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Diagnosis and management of complications of chronic lymphocytic leukemia/small lymphocytic lymphoma

complications for CLL appear to be increased by regimens including idelalisib. Combination therapy clinical trials including idelalisib were halted by the Federal Drug Administration and European Drug Agency because of concerns for excess toxicity including increased rates of PJP and CMV infections [ 29 ]. There are limited data on the effect of duvelisib and umbralisib on risk of infection in CLL patients. Management Management of infection in CLL patients requires education of patients and care givers to respond rapidly to evidence of infection, appropriate

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Maintaining genetic variation in breeding populations of Radiata pine in New Zealand

) Complementing inbreed­ing coefficient information with status number: implications for structuring breeding populations. NZJFS 27(3): 255-271. Jayawickrama KJS, Carson MJ (2000) A breeding strategy for the New Zealand Radiata Pine Breeding Cooperative. Silvae Genetica 49, 2. Jayawickrama KJS, Carson MJ (2000) A breeding strategy for the New ZealanRa­diata Pine Breeding Cooperative. Silvae Genetica 49, 2. Jefferson PA (2016) The breeding management plan. RPBC report Nov. 2016 Kumar S, (2006) Correlation between

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Participation Rates of Freshwater Recreational Fisheries in the Counties of Croatia

in recreational fisheries in England and Wales. Fisheries Management and Ecology 17, 93–105. Arlinghaus, R., Bork, M., Fladung, E. (2008): Understanding the heterogeneity of recreational anglers across an urban-rural gradient in a metropolitan area (Berlin, Germany), with implications for fisheries management. Fisheries Research, 92, 53-62. Arlinghaus, R., Tillner, R., Bork, M. (2015): Explaining participation rates in recreational fishing across industrialised countries. Fisheries Management and Ecology, 22, 45–55. Burkett, E. M., Winkler, R. L

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Growth performance of hybrid poplar clones on two agricultural sites with and without early irrigation and fertilization

responses to irrigation and fertilization are not explained by shifts in allocation. Forest Ecology and Management 208(1-3):137-152. https://doi.org/10.1016/j.foreco.2004.11.022 Dickmann D, Nguyen PV, Pregitzer KS (1996) Effects of irrigation and coppicing on above-ground growth, physiology, and fine-root dynamics of two field- grown hybrid poplar clones. Forest Ecology and Management 80:163-174. https://doi.org/10.1016/0378-1127(95)03611-3 Dobos R, Sinclair H Jr, Robotham M (2012) User Guide for the National Commodity Crop Productivity Index (NCCPI) Version

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Isolation and characterization of polymorphic microsatellite loci for Pistacia chinensis Bunge (Anacardiaceae)

potential for bioenergy development in China. Environmental Management 46: 579-589. https://doi.org/10.1007/s00267-010-9443-0 Ozden-Tokatli Y, Akdemir H, Tilkat E, Onay A (2010) Current status and conservation of Pistacia germplasm. Biotechnology Advances 28: 130-141. https://doi.org/10.1016/j.biotechadv.2009.10.006 Renner SS, Ricklefs RE (1995) Dioecy and its correlates in the flowering plants. American Journal of Botany 82: 596-606. https://doi.org/10.1002/j.1537-2197.1995.tb11504.x Rousset F (2008) GENEPOP’007: A complete re-implementation of the

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Impact of fertility variation on genetic diversity and phenotypic traits in second generation seed production areas and clonal seed orchards of Eucalyptus camaldulensis

sufficient to estimate the quality of seed crops from a Eucalyptus grandis open-pollinated seed orchard? consequences for seed collections. New For 33: 41-52. https://doi.org/10.1007/s11056-006-9012-9 Chaix G, Vigneron P, Razafimaharo V, Hamon S (2010) Improved management of Malagasy Eucalyptus grandis seed orchards using microsatellites and paternity assessment. J Trop For Sci 22(3): 271–280. Cornelius JP, Clement CR, Weber JC, Sotelo-Montes C, van Leeuwen J, Ugarte-Guerra LJ, Ricse-Tembladera A, Arevalo-Lopez L (2006). The trade-off between genetic gain

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Short note: Development of a new set of SNP markers to measure genetic diversity and genetic differentiation of Mongolian oak (Quercus mon­golica Fisch. ex Ledeb.) in the Far East of Russia

://doi.org/10.1093/forestry/cpy020 Buschbom J, Yanbaev Y, Degen B (2011) Efficient Long-Distance Gene Flow into an Isolated Relict Oak Stand. J. Hered. 102(4):464-472 https://doi.org/10.1093/jhered/esr023 Carabeo M, Simeone MC, Cherubini M, Mattia C, Chiocchini F, Bertini L, Caruso C, La Mantia T, Villani F, Mattioni C (2017) Estimating the genetic diversity and structure of Quercus trojana Webb populations in Italy by SSRs: implications for management and conservation. Can. J. For. Res. 47(3):331-339 https://doi.org/10.1139/cjfr-2016-0311 Chaves CL, Degen

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Genetic evaluation of Cryptomeria japonica breeding materials for male-sterile trees

) Genetic management of seed orchards based on information revealed by molecular markers. Journal of the Japanese Forestry Society 87:161–169 (in Japanese with English summary). https://doi.org/10.4005/jjfs.87.161 Moriguchi Y, Tani N, Itoo S, Kanechira F, Tanaka K, Yomogida H, Taira H, Tsumura Y (2005b) Gene flow and mating system in five Cryptomeria japonica D. Don seed orchards as revealed by analysis of microsatellite markers. Tree Genetics and Genomes 1:174–183. https://doi.org/10.1007/s11295-005-0023-z Moriguchi Y, Totsuka S, Iwai J, Matsumoto A, Ueno

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