Orchid conservation: from theory to practice
Сохранение орхидей: от теории к практике
2020-05-07
SCID: 54.1/vs3e298z
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conservation translocationgenetic mixingmycorrhizal associationsorchid conservationpollination specialization
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Abstract (AI)
BACKGROUND: Given the exceptional diversity of orchids (26 000+ species), improving strategies for the conservation of orchids will benefit a vast number of taxa. Furthermore, with rapidly increasing numbers of endangered orchids and low success rates in orchid conservation translocation programmes worldwide, it is evident that our progress in understanding the biology of orchids is not yet translating into widespread effective conservation. SCOPE: We highlight unusual aspects of the reproductive biology of orchids that can have important consequences for conservation programmes, such as specialization of pollination systems, low fruit set but high seed production, and the potential for long-distance seed dispersal. Further, we discuss the importance of their reliance on mycorrhizal fungi for germination, including quantifying the incidence of specialized versus generalized mycorrhizal associations in orchids. In light of leading conservation theory and the biology of orchids, we provide recommendations for improving population management and translocation programmes. CONCLUSIONS: Major gains in orchid conservation can be achieved by incorporating knowledge of ecological interactions, for both generalist and specialist species. For example, habitat management can be tailored to maintain pollinator populations and conservation translocation sites selected based on confirmed availability of pollinators. Similarly, use of efficacious mycorrhizal fungi in propagation will increase the value of ex situ collections and likely increase the success of conservation translocations. Given the low genetic differentiation between populations of many orchids, experimental genetic mixing is an option to increase fitness of small populations, although caution is needed where cytotypes or floral ecotypes are present. Combining demographic data and field experiments will provide knowledge to enhance management and translocation success. Finally, high per-fruit fecundity means that orchids offer powerful but overlooked opportunities to propagate plants for experiments aimed at improving conservation outcomes. Given the predictions of ongoing environmental change, experimental approaches also offer effective ways to build more resilient populations.
Key Findings
1
Combining demographic data and field experiments enhances management decisions and translocation success.
2
Habitat management should maintain pollinator populations and translocation sites should be selected based on confirmed pollinator availability to improve success.
3
High per-fruit fecundity allows efficient propagation for experiments to improve conservation outcomes and build resilience under environmental change.
4
Low genetic differentiation between many orchid populations makes experimental genetic mixing a viable option to increase small-population fitness, with caution for cytotypes or floral ecotypes.
5
Orchid conservation can benefit a vast number of taxa due to orchids' exceptional diversity (26,000+ species).
6
Orchids' reliance on mycorrhizal fungi for germination is critical; incidence of specialized versus generalized fungal associations affects conservation strategies.
7
Unusual reproductive traits—specialized pollination, low fruit set, high seed production, potential long-distance seed dispersal—have important conservation consequences.
8
Using efficacious mycorrhizal fungi in propagation increases the value of ex situ collections and likely improves translocation success.
Research Object
Orchid species and populations (Orchidaceae) targeted for conservation and translocation
Research Subject
Conservation biology aspects affecting success of orchid management and translocation programmes, including reproductive biology (pollination specialization, fruit/seed production, dispersal), mycorrhizal associations for germination, genetic mixing, habitat and pollinator management, propagation and demographic/experimental approaches to improve conservation outcomes
Publication Details
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2020-05-07
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