Dergi makalesi Açık Erişim
Çelekli, Abuzer;
Zariç, Özgür Eren
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<subfield code="a"><p>Herbaria collections&mdash;systematic repositories where plant specimens are preserved&mdash;are transitioning from traditional taxonomic tools into fundamental resources in ecological research. This comprehensive review summarizes multidisciplinary applications of herbaria collections in monitoring biodiversity and conservation. The review evaluates the historical and contemporary importance of herbaria specimens in documenting changes in species distribution, population dynamics, and community composition, elucidating their roles in understanding the effects of climate change and human intervention. Moreover, it examines how herbaria collections contribute to large- scale temporal and spatial biodiversity analyses, predictive modeling, and conservation planning in the context of advancements in digitization and molecular techniques. This review underscores the integration of herbaria data into mainstream ecological research and policy decisions, advocating for modernizing herbarium techniques and the innovative use of collections. It aims to foster a deeper understanding of complex environmental systems and inform targeted conservation strategies by revealing the multifaceted uses and expectations of herbaria in ecological studies. Thus, it contributes to the broader scientific discussion on sustainable biodiversity management and highlights the relationship between herbaria and ecological studies.</p></subfield>
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<subfield code="x">DeSalle, R., & Amato, G. (2004). The expansion of conservation genetics. Nature Reviews Genetics, 5(9), 702–712. https://doi. org/10.1038/nrg1425</subfield>
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<subfield code="x">Hulme, P. E. (2020). Plant invasions in New Zealand: global lessons in prevention, eradication and control. Biological Invasions, 22(5), 1539–1562. https://doi.org/10.1007/s10530-020-02224-6</subfield>
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<subfield code="x">Lavoie, C. (2013). Biological collections in an ever changing world: Herbaria as tools for biogeographical and environmental studies. Perspectives in Plant Ecology, Evolution and Systematics, 15(1), 68–76. https://doi.org/10.1016/j.ppees.2012.10.002</subfield>
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</datafield>
<datafield tag="999" ind1="C" ind2="5">
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</datafield>
<datafield tag="999" ind1="C" ind2="5">
<subfield code="x">Nualart, N., Ibáñez, N., Soriano, I., & López-Pujol, J. (2017). Assessing the Relevance of Herbarium Collections as Tools for Conservation Biology. Botanical Review, 83(3), 303–325. https:// doi.org/10.1007/s12229-017-9188-z</subfield>
</datafield>
<datafield tag="999" ind1="C" ind2="5">
<subfield code="x">Papini, A., Mosti, S., & Santosuosso, U. (2013). Tracking the origin of the invading Caulerpa (Caulerpales, Chlorophyta) with geographic profiling, a criminological technique for a killer alga. Biological Invasions, 15, 1613–1621.</subfield>
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<datafield tag="999" ind1="C" ind2="5">
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</datafield>
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</datafield>
<datafield tag="999" ind1="C" ind2="5">
<subfield code="x">Santosuosso, U., & Papini, A. (2018). Geo-Profiling: beyond the Current Limits. A Preliminary Study of Mathematical Methods to Improve the Monitoring of Invasive Species. Russian Journal of Ecology, 49(4), 362–370. https://doi.org/10.1134/ S1067413618040112</subfield>
</datafield>
<datafield tag="999" ind1="C" ind2="5">
<subfield code="x">Schmidt, M., Kreft, H., Thiombiano, A., & Zizka, G. (2005). Herbarium collections and field data-based plant diversity maps for Burkina Faso. Diversity and Distributions, 11(6), 509–516. https://doi. org/10.1111/j.1366-9516.2005.00185.x</subfield>
</datafield>
<datafield tag="999" ind1="C" ind2="5">
<subfield code="x">Soltis, P. S. (2017). Digitization of herbaria enables novel research. American Journal of Botany, 104(9), 1281–1284. https://doi. org/10.3732/ajb.1700281</subfield>
</datafield>
<datafield tag="999" ind1="C" ind2="5">
<subfield code="x">Stevenson, M. D., Rossmo, D. K., Knell, R. J., & Le Comber, S. C. (2012). Geographic profiling as a novel spatial tool for targeting the control of invasive species. Ecography, 35(8), 704–715. https://doi.org/10.1111/j.1600-0587.2011.07292.x</subfield>
</datafield>
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<subfield code="x">Thiers, B. M., Tulig, M. C., & Watson, K. A. (2016). Digitization of The New York Botanical Garden Herbarium. Brittonia, 68(3), 324– 333. https://doi.org/10.1007/s12228-016-9423-7</subfield>
</datafield>
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