Using phenological monitoring in situ and historical records to determine environmental triggers for emergence and anthesis in the rare orchid Platanthera praeclara Sheviak & Bowles

Platanthera praeclara (western prairie fringed orchid (WPFO)) is a rare terrestrial perennial orchid found in wet to mesic prairies in the central Great Plains of the United States. Although much is known about this species, conservation efforts are hindered because the specific factors that contrib...

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Main Authors: Biederman Lori A, Anderson Derek, Sather Nancy, Pearson John, Beckman Judy, Prekker Jeanne
Format: Article
Language:English
Published: Elsevier 2018-10-01
Series:Global Ecology and Conservation
Online Access:http://www.sciencedirect.com/science/article/pii/S2351989418302555
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spelling doaj-a5e157855f864729be5cc297b8094b0a2020-11-25T00:46:27ZengElsevierGlobal Ecology and Conservation2351-98942018-10-0116Using phenological monitoring in situ and historical records to determine environmental triggers for emergence and anthesis in the rare orchid Platanthera praeclara Sheviak & BowlesBiederman Lori A0Anderson Derek1Sather Nancy2Pearson John3Beckman Judy4Prekker Jeanne5Department of Ecology, Evolution and Organismal Biology, Iowa State University, Ames IA 50011, USA; Corresponding author.Minnesota Biological Survey, Minnesota Department of Natural Resources, 500 Lafayette Road, St. Paul, MN 55155, USAMinnesota Biological Survey, Minnesota Department of Natural Resources, 500 Lafayette Road, St. Paul, MN 55155, USAIowa Department of Natural Resources, 502 E. 9th Street, Des Moines, IA 50319, USAMinnesota Biological Survey, Minnesota Department of Natural Resources, 500 Lafayette Road, St. Paul, MN 55155, USAMinnesota Biological Survey, Minnesota Department of Natural Resources, 500 Lafayette Road, St. Paul, MN 55155, USAPlatanthera praeclara (western prairie fringed orchid (WPFO)) is a rare terrestrial perennial orchid found in wet to mesic prairies in the central Great Plains of the United States. Although much is known about this species, conservation efforts are hindered because the specific factors that contribute to its emergence and anthesis are unknown. We used long-term monitoring data from three sites in the central part of WPFO's range to determine which environmental variables contribute to the plant's emergence and anthesis. We then compared our anthesis model to 110 years of herbarium and iNaturalist.org records over WPFO's entire range. From our monitoring data, we found that accumulated growing degree days (GDD, 0 °C baseline and no maximum temperature) best explained plant emergence (199.05), while anthesis was best explained by GDD accumulation (1561.8), adequate precipitation, and the passage of the summer solstice. In our historical data set, anthesis occurred post-solstice in 95% of the records, which suggests that the strongest driver of anthesis in WPFO is day length. Understanding those conditions that contribute to WPFO phenology is critical for its conservation, and management, such as prescribed fire, which should be avoided during active growth periods. Although WPFO evolution occurred in a variable climate, it appears to have a fixed anthesis trigger, day length, which increases its vulnerability to climate change. WPFO is also sensitive to drought conditions, which are expected to increase in the future. Therefore, intervention may be necessary to ensure the species' long-term viability. Keywords: Tallgrass prairie, Climate change, Great plains north America, Museum collections, iNaturalist.orghttp://www.sciencedirect.com/science/article/pii/S2351989418302555
collection DOAJ
language English
format Article
sources DOAJ
author Biederman Lori A
Anderson Derek
Sather Nancy
Pearson John
Beckman Judy
Prekker Jeanne
spellingShingle Biederman Lori A
Anderson Derek
Sather Nancy
Pearson John
Beckman Judy
Prekker Jeanne
Using phenological monitoring in situ and historical records to determine environmental triggers for emergence and anthesis in the rare orchid Platanthera praeclara Sheviak & Bowles
Global Ecology and Conservation
author_facet Biederman Lori A
Anderson Derek
Sather Nancy
Pearson John
Beckman Judy
Prekker Jeanne
author_sort Biederman Lori A
title Using phenological monitoring in situ and historical records to determine environmental triggers for emergence and anthesis in the rare orchid Platanthera praeclara Sheviak & Bowles
title_short Using phenological monitoring in situ and historical records to determine environmental triggers for emergence and anthesis in the rare orchid Platanthera praeclara Sheviak & Bowles
title_full Using phenological monitoring in situ and historical records to determine environmental triggers for emergence and anthesis in the rare orchid Platanthera praeclara Sheviak & Bowles
title_fullStr Using phenological monitoring in situ and historical records to determine environmental triggers for emergence and anthesis in the rare orchid Platanthera praeclara Sheviak & Bowles
title_full_unstemmed Using phenological monitoring in situ and historical records to determine environmental triggers for emergence and anthesis in the rare orchid Platanthera praeclara Sheviak & Bowles
title_sort using phenological monitoring in situ and historical records to determine environmental triggers for emergence and anthesis in the rare orchid platanthera praeclara sheviak & bowles
publisher Elsevier
series Global Ecology and Conservation
issn 2351-9894
publishDate 2018-10-01
description Platanthera praeclara (western prairie fringed orchid (WPFO)) is a rare terrestrial perennial orchid found in wet to mesic prairies in the central Great Plains of the United States. Although much is known about this species, conservation efforts are hindered because the specific factors that contribute to its emergence and anthesis are unknown. We used long-term monitoring data from three sites in the central part of WPFO's range to determine which environmental variables contribute to the plant's emergence and anthesis. We then compared our anthesis model to 110 years of herbarium and iNaturalist.org records over WPFO's entire range. From our monitoring data, we found that accumulated growing degree days (GDD, 0 °C baseline and no maximum temperature) best explained plant emergence (199.05), while anthesis was best explained by GDD accumulation (1561.8), adequate precipitation, and the passage of the summer solstice. In our historical data set, anthesis occurred post-solstice in 95% of the records, which suggests that the strongest driver of anthesis in WPFO is day length. Understanding those conditions that contribute to WPFO phenology is critical for its conservation, and management, such as prescribed fire, which should be avoided during active growth periods. Although WPFO evolution occurred in a variable climate, it appears to have a fixed anthesis trigger, day length, which increases its vulnerability to climate change. WPFO is also sensitive to drought conditions, which are expected to increase in the future. Therefore, intervention may be necessary to ensure the species' long-term viability. Keywords: Tallgrass prairie, Climate change, Great plains north America, Museum collections, iNaturalist.org
url http://www.sciencedirect.com/science/article/pii/S2351989418302555
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