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Richards, Jennifer
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Scholarly & Creative Works
selected scholarly works & creative activities
Article
2020
Fire effects on growth of the invasive exotic fern
Lygodium microphyllum
and implications for management
.
MANAGEMENT OF BIOLOGICAL INVASIONS
. 11:541-559.
Full Text via DOI:
10.3391/mbi.2020.11.3.13
Web of Science:
000566792800013
2020
Effects of salinity on sawgrass
(Cladium jamaicense
Crantz) seed germination
.
AQUATIC BOTANY
. 166.
Full Text via DOI:
10.1016/j.aquabot.2020.103277
Web of Science:
000568884900006
2020
A common-mesocosm experiment recreates sawgrass (
Cladium jamaicense
) phenotypes from Everglades marl prairies and peat marshes
.
AMERICAN JOURNAL OF BOTANY
. 107:56-65.
Full Text via DOI:
10.1002/ajb2.1411
Web of Science:
000504901300001
2019
Phosphorus alleviation of salinity stress: effects of saltwater intrusion on an Everglades freshwater peat marsh
.
ECOLOGY
. 100.
Full Text via DOI:
10.1002/ecy.2672
Web of Science:
000477642200009
2019
Application of genomic tools to avocado (
Persea
americana
) breeding: SNP discovery for genotyping and germplasm characterization
.
Scientia Horticulturae
. 246:1-11.
Full Text via DOI:
10.1016/j.scienta.2018.10.011
Web of Science:
000456762700001
2018
Declines in Plant Productivity Drive Carbon Loss from Brackish Coastal Wetland Mesocosms Exposed to Saltwater Intrusion
.
ESTUARIES AND COASTS
. 41:2147-2158.
Full Text via DOI:
10.1007/s12237-018-0438-z
Web of Science:
000448508400001
2018
Salinity pulses interact with seasonal dry-down to increase ecosystem carbon loss in marshes of the Florida Everglades
.
ECOLOGICAL APPLICATIONS
. 28:2092-2108.
Full Text via DOI:
10.1002/eap.1798
Web of Science:
000451913200013
2018
Germination and juvenile growth of the clonal palm, Acoelorrhaphe wrightii, under different water and light treatments: a mesocosm study
.
Feddes Repertorium
. 129:92-104.
Full Text via DOI:
10.1002/fedr.201700010
2018
Morphology and architecture of the threatened Florida palm Acoelorrhaphe wrightii (Arecaceae: Coryphoideae)
.
CANDOLLEA
. 73:49-59.
Full Text via DOI:
10.15553/c2018v731a5
Web of Science:
000436156600005
2018
Tracing the Uptake, Transport, and Fate of Mercury in Sawgrass (
Cladium jamaicense
) in the Florida Everglades Using a Multi-isotope Technique
.
ENVIRONMENTAL SCIENCE & TECHNOLOGY
. 52:3384-3391.
Full Text via DOI:
10.1021/acs.est.7b04150
Web of Science:
000428219900011
2018
Using Bi-Seasonal WorldView-2 Multi-Spectral Data and Supervised Random Forest Classification to Map Coastal Plant Communities in Everglades National Park
.
SENSORS
. 18.
Full Text via DOI:
10.3390/s18030829
Web of Science:
000428805300150
2017
Halophytes can salinize soil when competing with glycophytes, intensifying effects of sea level rise in coastal communities
.
OECOLOGIA
. 184:729-737.
Full Text via DOI:
10.1007/s00442-017-3896-2
Web of Science:
000405603100013
2017
Tropical China Plant Diversity, Ecology and Conservation - a Glimpse at the Current State
.
The Botanical Review
. 83:1-4.
Full Text via DOI:
10.1007/s12229-017-9180-7
Web of Science:
000399243400001
2016
The Effects of Heat on Spore Viability of
Lygodium microphyllum
and Implications for Fire Management
.
SOUTHEASTERN NATURALIST
. 15:40-50.
Full Text via DOI:
10.1656/058.015.sp804
Web of Science:
000402164800005
2015
Vegetation and soil response to hydrology in a re-created Everglades
.
HYDROBIOLOGIA
. 757:167-183.
Full Text via DOI:
10.1007/s10750-015-2249-6
Web of Science:
000358653700014
2015
Pigment-Based Chemotaxonomy and its Application to Everglades Periphyton
Full Text via DOI:
10.1201/b18253-17
2015
Quantitative Comparison of Plant Community Hydrology Using Large-Extent, Long-Term Data
.
Wetlands
. 35:81-93.
Full Text via DOI:
10.1007/s13157-014-0594-2
Web of Science:
000348235100008
2015
Phenology of fruit development and abortion in sawgrass,
Cladium jamaicense
, and its consequences for seed bank viability
.
AQUATIC BOTANY
. 120:212-221.
Full Text via DOI:
10.1016/j.aquabot.2014.07.005
Web of Science:
000347756100009
2013
Investigating Uptake and Translocation of Mercury Species by Sawgrass (
Cladium jamaicense
) Using a Stable Isotope Tracer Technique
.
ENVIRONMENTAL SCIENCE & TECHNOLOGY
. 47:9678-9684.
Full Text via DOI:
10.1021/es400546s
Web of Science:
000330094700016
2013
INTEGRATED CARBON BUDGET MODELS FOR THE EVERGLADES TERRESTRIAL-COASTAL-OCEANIC GRADIENT Current Status and Needs for Inter-Site Comparisons
.
Oceanography
. 26:98-107.
Full Text via DOI:
10.5670/oceanog.2013.51
Web of Science:
000323808600015
2013
Using hydrologic suitability for native Everglades slough vegetation to assess Everglades restoration scenarios
.
Ecological Indicators
. 24:294-304.
Full Text via DOI:
10.1016/j.ecolind.2012.06.011
Web of Science:
000311059900035
2012
INTERRELATIONSHIPS OF PETIOLAR AIR CANAL ARCHITECTURE, WATER DEPTH, AND CONVECTIVE AIR FLOW IN
NYMPHAEA ODORATA
(NYMPHAEACEAE)
.
AMERICAN JOURNAL OF BOTANY
. 99:1903-1909.
Full Text via DOI:
10.3732/ajb.1200269
Web of Science:
000312951600014
2012
Germination and early growth of
Nymphaea odorata
at different water depths
.
AQUATIC BOTANY
. 98:12-19.
Full Text via DOI:
10.1016/j.aquabot.2011.12.003
Web of Science:
000302930300002
2011
Experimental determination of effects of water depth on
Nymphaea odorata
growth, morphology and biomass allocation
.
AQUATIC BOTANY
. 95:9-16.
Full Text via DOI:
10.1016/j.aquabot.2011.03.002
Web of Science:
000291904900002
2010
MODELING NYMPHOIDES ARCHITECTURE: A MORPHOLOGICAL ANALYSIS OF NYMPHOIDES AQUATICA (MENYANTHACEAE)
.
AMERICAN JOURNAL OF BOTANY
. 97:1761-1771.
Full Text via DOI:
10.3732/ajb.1000242
Web of Science:
000283645500008
2009
A conceptual ecological model to facilitate understanding the role of invasive species in large-scale ecosystem restoration
.
Ecological Indicators
. 9:S150-S160.
Full Text via DOI:
10.1016/j.ecolind.2008.06.007
Web of Science:
000268156900014
2009
Invasive exotic plant indicators for ecosystem restoration: An example from the Everglades restoration program
.
Ecological Indicators
. 9:S29-S36.
Full Text via DOI:
10.1016/j.ecolind.2008.08.006
Web of Science:
000268156900004
2009
δ
13
C, δ
15
N, carbon, nitrogen and phosphorus as indicators of plant ecophysiology and organic matter pathways in Everglades deep slough, Florida, USA
.
AQUATIC BOTANY
. 91:157-165.
Full Text via DOI:
10.1016/j.aquabot.2009.04.003
Web of Science:
000270119700006
2009
Spatial Variability in Mercury Cycling and Relevant Biogeochemical Controls in the Florida Everglades
.
ENVIRONMENTAL SCIENCE & TECHNOLOGY
. 43:4361-4366.
Full Text via DOI:
10.1021/es803665c
Web of Science:
000266968500024
2009
Variation in southern Florida and Bahamian Aletris (Nartheciaceae): morphology, phenology, and putative hybridization
.
JOURNAL OF THE TORREY BOTANICAL SOCIETY
. 136:192-202.
Full Text via DOI:
10.3159/08-RA-028.1
Web of Science:
000268690100004
2008
Distribution of total and methylmercury in different ecosystem compartments in the Everglades: Implications for mercury bioaccumulation
.
ENVIRONMENTAL POLLUTION
. 153:257-265.
Full Text via DOI:
10.1016/j.envpol.2007.08.030
Web of Science:
000255931000001
2008
Mercury mass budget estimates and cycling seasonality in the Florida everglades
.
ENVIRONMENTAL SCIENCE & TECHNOLOGY
. 42:1954-1960.
Full Text via DOI:
10.1021/es7022994
Web of Science:
000253947700027
2006
Comparative study of periphyton community structure in long and short-hydroperiod Everglades marshes
.
HYDROBIOLOGIA
. 569:195-207.
Full Text via DOI:
10.1007/s10750-006-0132-1
Web of Science:
000240576200015
2006
Flower or spikelet?: Understanding the morphology and development of reproductive structures in
Exocarya
(Cyperaceae, Mapanioideae, Chrysitricheae)
.
AMERICAN JOURNAL OF BOTANY
. 93:1241-1250.
Full Text via DOI:
10.3732/ajb.93.9.1241
Web of Science:
000241097800003
2006
An architectural model for
Eleocharis
: Morphology and development of
Eleocharis cellulosa
(Cyperaceae)
.
AMERICAN JOURNAL OF BOTANY
. 93:707-715.
Full Text via DOI:
10.3732/ajb.93.5.707
Web of Science:
000237374400004
2005
Effects of desiccation duration on the community structure and nutrient retention of short and long-hydroperiod Everglades periphyton mats
.
AQUATIC BOTANY
. 82:99-112.
Full Text via DOI:
10.1016/j.aquabot.2005.02.012
Web of Science:
000230323500004
2005
Floral phenology and compatibility of sawgrass,
Cladium jamaicense
(Cyperaceae)
.
AMERICAN JOURNAL OF BOTANY
. 92:736-743.
Full Text via DOI:
10.3732/ajb.92.4.736
Web of Science:
000228126800019
2004
Morphological plasticity of
Sagittaria lancifolia
in response to phosphorus
.
AQUATIC BOTANY
. 80:53-67.
Full Text via DOI:
10.1016/j.aquabot.2004.07.004
Web of Science:
000224132800006
2004
Phosphorus in periphyton mats provides the best metric for detecting low-level P enrichment in an oligotrophic wetland
.
WATER RESEARCH
. 38:507-516.
Full Text via DOI:
10.1016/j.watres.2003.10.020
Web of Science:
000188364500002
2003
Responses to a fluctuating environment:: effects of water depth on growth and biomass allocation in
Eleocharis cellulosa
Torr. (Cyperaceae)
.
Botany
. 81:964-975.
Full Text via DOI:
10.1139/B03-091
Web of Science:
000186049300008
2002
Flower and spikelet morphology in sawgrass,
Cladium jamaicense
Crantz (Cyperaceae)
.
ANNALS OF BOTANY
. 90:361-367.
Full Text via DOI:
10.1093/aob/mcf197
Web of Science:
000177969700007
2002
Short-term changes in phosphorus storage in an oligotrophic Everglades wetland ecosystem receiving experimental nutrient enrichment
.
BIOGEOCHEMISTRY
. 59:239-267.
Full Text via DOI:
10.1023/A:1016090009874
Web of Science:
000177143200001
2002
“To see … Heaven in a Wild Flower….”: Teaching botany in the 21st century
.
AMERICAN JOURNAL OF BOTANY
. 89:172-176.
Full Text via DOI:
10.3732/ajb.89.1.172
2001
Genotypic diversity and clonal structure of everglades sawgrass,
Cladium jamaicense
(Cyperaceae)
.
INTERNATIONAL JOURNAL OF PLANT SCIENCES
. 162:1327-1335.
Full Text via DOI:
10.1086/323476
Web of Science:
000171501900016
2001
Genetic diversity of everglades sawgrass,
Cladium jamaicense
(Cyperaceae)
.
INTERNATIONAL JOURNAL OF PLANT SCIENCES
. 162:817-825.
Full Text via DOI:
10.1086/320775
Web of Science:
000169094400013
2001
Bladder function in
Utricularia purpurea
(Lentibulariaceae): Is carnivory important?
.
AMERICAN JOURNAL OF BOTANY
. 88:170-176.
Full Text via DOI:
10.2307/2657137
Web of Science:
000166503700017
1993
PROTANDRY, INCOMPATIBILITY, AND SECONDARY POLLEN PRESENTATION IN CEPHALANTHUS OCCIDENTALS (RUBIACEAE)
.
AMERICAN JOURNAL OF BOTANY
. 80:395-404.
Full Text via DOI:
10.1002/j.1537-2197.1993.tb13818.x
1993
PROTANDRY, INCOMPATIBILITY, AND SECONDARY POLLEN PRESENTATION IN CEPHALANTHUS-OCCIDENTALIS (RUBIACEAE)
.
AMERICAN JOURNAL OF BOTANY
. 80:395-404.
Full Text via DOI:
10.2307/2445386
Web of Science:
A1993KY26200006
1993
FLORAL VARIATION AND DISTYLY IN GUETTARDA SCABRA (RUBIACEAE)
.
AMERICAN JOURNAL OF BOTANY
. 80:31-40.
Full Text via DOI:
10.1002/j.1537-2197.1993.tb13764.x
1993
FLORAL VARIATION AND DISTYLY IN GUETTARDA-SCABRA (RUBIACEAE)
.
AMERICAN JOURNAL OF BOTANY
. 80:31-40.
Full Text via DOI:
10.2307/2445117
Web of Science:
A1993KK57900004
1987
DEVELOPMENT OF TRISTYLY IN PONTEDERIA CORDATA (PONTEDERIACEAE). I. MATURE FLORAL STRUCTURE AND PATTERNS OF RELATIVE GROWTH OF REPRODUCTIVE ORGANS
.
AMERICAN JOURNAL OF BOTANY
. 74:1831-1841.
Full Text via DOI:
10.1002/j.1537-2197.1987.tb08785.x
1987
DEVELOPMENT OF TRISTYLY IN PONTEDERIA-CORDATA (PONTEDERIACEAE) .1. MATURE FLORAL STRUCTURE AND PATTERNS OF RELATIVE GROWTH OF REPRODUCTIVE-ORGANS
.
AMERICAN JOURNAL OF BOTANY
. 74:1831-1841.
Full Text via DOI:
10.2307/2443965
Web of Science:
A1987L731100007
1986
LIGHT EFFECTS ON LEAF MORPHOLOGY IN WATER HYACINTH (EICHHORNIA CRASSIPES)
.
AMERICAN JOURNAL OF BOTANY
. 73:1741-1747.
Full Text via DOI:
10.1002/j.1537-2197.1986.tb09705.x
1986
LIGHT EFFECTS ON LEAF MORPHOLOGY IN WATER HYACINTH (EICHHORNIA-CRASSIPES)
.
AMERICAN JOURNAL OF BOTANY
. 73:1741-1747.
Full Text via DOI:
10.2307/2444240
Web of Science:
A1986F412100010
1984
THE DEVELOPMENTAL BASIS OF TRISTYLY IN EICHHORNIA PANICULATA (PONTEDERIACEAE)
.
AMERICAN JOURNAL OF BOTANY
. 71:1347-1363.
Full Text via DOI:
10.1002/j.1537-2197.1984.tb11992.x
1984
THE DEVELOPMENTAL BASIS OF TRISTYLY IN EICHHORNIA-PANICULATA (PONTEDERIACEAE)
.
AMERICAN JOURNAL OF BOTANY
. 71:1347-1363.
Full Text via DOI:
10.2307/2443702
Web of Science:
A1984AAX3500005
1983
HETEROBLASTIC DEVELOPMENT IN THE WATER HYACINTH EICHHORNIA-CRASSIPES SOLMS
.
BOTANICAL GAZETTE
. 144:247-259.
Full Text via DOI:
10.1086/337370
Web of Science:
A1983RG06200014
An architectural model for the bladderwort
Utricularia gibba
(Lentibulariaceae)
.
JOURNAL OF THE TORREY BOTANICAL SOCIETY
. 139:137-148.
Full Text via DOI:
10.3159/TORREY-D-11-00088.1
Web of Science:
000307259500004
Cascading ecological effects of low-level phosphorus enrichment in the Florida everglades
.
JOURNAL OF ENVIRONMENTAL QUALITY
. 34:717-723.
Full Text via DOI:
10.2134/jeq2005.0717
Web of Science:
000228014800035
Plant Decomposition in Wetlands: Effects of Hydrologic Variation in a Re-Created Everglades
.
JOURNAL OF ENVIRONMENTAL QUALITY
. 42:562-572.
Full Text via DOI:
10.2134/jeq2012.0201
Web of Science:
000315942600029
Book Chapter
2015
Detecting calcareous periphyton mats in the greater everglades using passive remote sensing methods
. 350-372.
Full Text via DOI:
10.1201/b18253
1992
The Development of Heterostyly
. 85-127.
Full Text via DOI:
10.1007/978-3-642-86656-2_4
Conference
2006
Periphyton responses to eutrophication in the Florida Everglades: Cross-system patterns of structural and compositional change
.
LIMNOLOGY AND OCEANOGRAPHY
. 617-630.
Full Text via DOI:
10.4319/lo.2006.51.1_part_2.0617
Web of Science:
000241296700022
Letter
2008
Comment on "Estimating Ecological Thresholds for Phosphorus in the Everglades"
.
ENVIRONMENTAL SCIENCE & TECHNOLOGY
. 6770-6771.
Full Text via DOI:
10.1021/es800347t
Web of Science:
000258883300074
Review
2019
Typha
(Cattail) Invasion in North American Wetlands: Biology, Regional Problems, Impacts, Ecosystem Services, and Management
.
Wetlands
. 645-684.
Full Text via DOI:
10.1007/s13157-019-01174-7
Web of Science:
000485037400001
2019
Review of Vegetative Branching in the Palms (Arecaceae)
.
The Botanical Review
. 40-77.
Full Text via DOI:
10.1007/s12229-018-9200-2
Web of Science:
000464902100002
1988
THE ROLE OF CO2 UPTAKE BY ROOTS AND CAM IN ACQUISITION OF INORGANIC C BY PLANTS OF THE ISOETID LIFE-FORM - A REVIEW, WITH NEW DATA ON ERIOCAULON-DECANGULARE L
.
NEW PHYTOLOGIST
. 125-148.
Full Text via DOI:
10.1111/j.1469-8137.1988.tb03690.x
Web of Science:
A1988M234400001
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https://orcid.org/0000-0002-7751-4339
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