Building meaningful collaboration in conservation genetics and genomics

IF 2 3区 环境科学与生态学 Q2 BIODIVERSITY CONSERVATION Conservation Genetics Pub Date : 2024-09-10 DOI:10.1007/s10592-024-01636-4
Robyn E. Shaw, Brittany Brockett, Jennifer C. Pierson, Stephen D. Sarre, Paula Doyle, Hannah B. Cliff, Mark D. B. Eldridge, Kimberly A. Miller, Kym Ottewell, Marissa L. Parrott, Maurizio Rossetto, Paul Sunnucks, Sam C. Banks, Margaret Byrne, Bridget L. Campbell, Caroline Chong, Emilie J. Ens, Paul A. Ferraro, Catherine E. Grueber, Peter A. Harrison, Carolyn Hogg, Marlee Hutton, Emily Roycroft, Will Sowersby, Karajarri Rangers, Kiwirrkurra Rangers, Ngurrara Rangers, Nyangumarta Rangers, Ngururrpa Rangers, Linda E. Neaves
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Abstract

Genetic diversity is the foundation of biodiversity, and preserving it is therefore fundamental to conservation practice. However, global conservation efforts face significant challenges integrating genetic and genomic approaches into applied management and policy. As collaborative partnerships are increasingly recognized as key components of successful conservation efforts, we explore their role and relevance in the Australian context, by engaging with key entities from across the conservation sector, including academia, botanic gardens, herbaria, seed banks, governmental/non-governmental organisations, private industry, museums, Traditional Owners, Indigenous rangers, and zoos and aquaria. By combining perspectives from these entities with comprehensive literature review, we identified five guiding principles for conservation genetic and genomic research and explored the different elements of, and approaches to, collaboration. Our reflections suggest that there is a substantial overlap in research interests across the Australian conservation sector, and our findings show that collaboration is increasing. We discuss approaches to building collaborative partnerships, the reciprocal benefits of collaborating, and some remaining challenges associated with data generation, data collection, and cross-cultural considerations. We emphasise the need for long-term national resourcing for sample and data storage and consistency in collecting, generating and reporting genetic data. While informed by the Australian experience, our goal is to support researchers and practitioners to foster meaningful collaborations that achieve measurable management outcomes in conservation genetics and genomics, both in Australia and globally.

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在保护遗传学和基因组学领域开展有意义的合作
遗传多样性是生物多样性的基础,因此保护遗传多样性是保护工作的根本。然而,全球保护工作在将基因和基因组学方法融入应用管理和政策方面面临着巨大挑战。随着人们越来越认识到合作伙伴关系是成功保护工作的关键组成部分,我们通过与来自整个保护领域的关键实体(包括学术界、植物园、标本馆、种子库、政府/非政府组织、私营企业、博物馆、传统所有者、土著护林员以及动物园和水族馆)进行接触,探讨了它们在澳大利亚的作用和相关性。通过将这些实体的观点与全面的文献综述相结合,我们确定了保护基因和基因组研究的五项指导原则,并探讨了合作的不同要素和方法。我们的思考表明,澳大利亚保护领域的研究兴趣存在大量重叠,我们的研究结果表明,合作正在不断增加。我们讨论了建立合作伙伴关系的方法、合作的互惠互利以及与数据生成、数据收集和跨文化考虑相关的一些剩余挑战。我们强调,样本和数据存储需要长期的国家资源,基因数据的收集、生成和报告也需要保持一致。在借鉴澳大利亚经验的同时,我们的目标是支持研究人员和从业人员促进有意义的合作,从而在澳大利亚和全球的保护遗传学和基因组学领域取得可衡量的管理成果。
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来源期刊
Conservation Genetics
Conservation Genetics 环境科学-生物多样性保护
CiteScore
3.80
自引率
4.50%
发文量
58
审稿时长
1 months
期刊介绍: Conservation Genetics promotes the conservation of biodiversity by providing a forum for data and ideas, aiding the further development of this area of study. Contributions include work from the disciplines of population genetics, molecular ecology, molecular biology, evolutionary biology, systematics, forensics, and others. The focus is on genetic and evolutionary applications to problems of conservation, reflecting the diversity of concerns relevant to conservation biology. Studies are based on up-to-date technologies, including genomic methodologies. The journal publishes original research papers, short communications, review papers and perspectives.
期刊最新文献
Genetic differentiation and diversity do not explain variation in heterosis or inbreeding depression: empirical evidence from a long-lived iteroparous plant Population genomics and mitochondrial DNA reveal cryptic diversity in North American Spring Cavefishes (Amblyopsidae, Forbesichthys) Building meaningful collaboration in conservation genetics and genomics Correction: Population structure and connectivity in Indo-Pacific deep-sea mussels of the Bathymodiolus septemdierum complex The structure and connectivity of an archipelagic population of black bears
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