Phylogeny of Cirsium Spp. in North America: Host Specificity Does Not Follow Phylogeny
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Pima County Plant List (2020) Common Name Exotic? Source
Pima County Plant List (2020) Common Name Exotic? Source McLaughlin, S. (1992); Van Abies concolor var. concolor White fir Devender, T. R. (2005) McLaughlin, S. (1992); Van Abies lasiocarpa var. arizonica Corkbark fir Devender, T. R. (2005) Abronia villosa Hariy sand verbena McLaughlin, S. (1992) McLaughlin, S. (1992); Van Abutilon abutiloides Shrubby Indian mallow Devender, T. R. (2005) Abutilon berlandieri Berlandier Indian mallow McLaughlin, S. (1992) Abutilon incanum Indian mallow McLaughlin, S. (1992) McLaughlin, S. (1992); Van Abutilon malacum Yellow Indian mallow Devender, T. R. (2005) Abutilon mollicomum Sonoran Indian mallow McLaughlin, S. (1992) Abutilon palmeri Palmer Indian mallow McLaughlin, S. (1992) Abutilon parishii Pima Indian mallow McLaughlin, S. (1992) McLaughlin, S. (1992); UA Abutilon parvulum Dwarf Indian mallow Herbarium; ASU Vascular Plant Herbarium Abutilon pringlei McLaughlin, S. (1992) McLaughlin, S. (1992); UA Abutilon reventum Yellow flower Indian mallow Herbarium; ASU Vascular Plant Herbarium McLaughlin, S. (1992); Van Acacia angustissima Whiteball acacia Devender, T. R. (2005); DBGH McLaughlin, S. (1992); Van Acacia constricta Whitethorn acacia Devender, T. R. (2005) McLaughlin, S. (1992); Van Acacia greggii Catclaw acacia Devender, T. R. (2005) Acacia millefolia Santa Rita acacia McLaughlin, S. (1992) McLaughlin, S. (1992); Van Acacia neovernicosa Chihuahuan whitethorn acacia Devender, T. R. (2005) McLaughlin, S. (1992); UA Acalypha lindheimeri Shrubby copperleaf Herbarium Acalypha neomexicana New Mexico copperleaf McLaughlin, S. (1992); DBGH Acalypha ostryaefolia McLaughlin, S. (1992) Acalypha pringlei McLaughlin, S. (1992) Acamptopappus McLaughlin, S. (1992); UA Rayless goldenhead sphaerocephalus Herbarium Acer glabrum Douglas maple McLaughlin, S. (1992); DBGH Acer grandidentatum Sugar maple McLaughlin, S. (1992); DBGH Acer negundo Ashleaf maple McLaughlin, S. -
Thistles of Colorado
Thistles of Colorado About This Guide Identification and Management Guide Many individuals, organizations and agencies from throughout the state (acknowledgements on inside back cover) contributed ideas, content, photos, plant descriptions, management information and printing support toward the completion of this guide. Mountain thistle (Cirsium scopulorum) growing above timberline Casey Cisneros, Tim D’Amato and the Larimer County Department of Natural Resources Weed District collected, compiled and edited information, content and photos for this guide. Produced by the We welcome your comments, corrections, suggestions, and high Larimer County quality photos. If you would like to contribute to future editions, please contact the Larimer County Weed District at 970-498- Weed District 5769 or email [email protected] or [email protected]. Front cover photo of Cirsium eatonii var. hesperium by Janis Huggins Partners in Land Stewardship 2nd Edition 1 2 Table of Contents Introduction 4 Introduction Native Thistles (Pages 6-20) Barneyby’s Thistle (Cirsium barnebyi) 6 Cainville Thistle (Cirsium clacareum) 6 Native thistles are dispersed broadly Eaton’s Thistle (Cirsium eatonii) 8 across many Colorado ecosystems. Individual species occupy niches from Elk or Meadow Thistle (Cirsium scariosum) 8 3,500 feet to above timberline. These Flodman’s Thistle (Cirsium flodmanii) 10 plants are valuable to pollinators, seed Fringed or Fish Lake Thistle (Cirsium 10 feeders, browsing wildlife and to the centaureae or C. clavatum var. beauty and diversity of our native plant americanum) communities. Some non-native species Mountain Thistle (Cirsium scopulorum) 12 have become an invasive threat to New Mexico Thistle (Cirsium 12 agriculture and natural areas. For this reason, native and non-native thistles neomexicanum) alike are often pulled, mowed, clipped or Ousterhout’s or Aspen Thistle (Cirsium 14 sprayed indiscriminately. -
Invasive Asteraceae Copy.Indd
Family Asteraceae Family: Asteraceae Spotted Knapweed Centaurea biebersteinii DC. Synonyms Acosta maculosa auct. non Holub, Centaurea maculosa auct. non Lam. Related Species Russian Knapweed Acroptilon repens (L.) DC. Description Spotted knapweed is a biennial to short-lived perennial plant. Seedling cotyledons are ovate, with the first leaves lance-shaped, undivided, and hairless. (Young seedlings can appear grass-like.) Stems grow 1 to 4 feet tall, and are many-branched, with a single flower at the end of each branch. Rosette leaves are indented or divided Old XID Services photo by Richard about half-way to the midrib. Stem leaves are alternate, pinnately divided, Spotted knapweed flower. and get increasingly smaller toward the tip of each branch. Flower heads are urn-shaped, up to 1 inch wide, and composed of pink, purple, or sometimes white disk flowers. A key characteristic of spotted knap- weed is the dark comb-like fringe on the tips of the bracts, found just below the flower petals. These dark-tipped bracts give this plant its “spotted” appearance. Russian knapweed is a creeping perennial plant that is extensively branched, with solitary urn-shaped pink or purple flower heads at the end of each branch. Similar in appearance to spotted knapweed, Russian knapweed can be distinguished by its slightly smaller flower heads, flower head bracts covered in light hairs, with papery tips, and scaly dark brown or black rhizomes, which have a burnt appearance. Family: Asteraceae Spotted Knapweed Leaves and stems of both spotted and Russian knapweeds are covered in fine hairs, giving the plants a grayish cast. -
The Case of Centaurea Stoebe (Spotted Knapweed)
Endophytic fungi as a biodiversity hotspot: the case of Centaurea stoebe (spotted knapweed) Alexey Shipunov Department of Forest Resources University of Idaho Spotted knapweed Spotted knapweed (Centaurea stoebe L., also known as C. maculosa, C. micrantha, C. biebersteinii) is a noxious, invasive plant which was introduced into North America from Eurasia in 1890s. Plant fungal endophytes • Grow inside plant, but do not cause any symptoms • Cryptic symbionts, inhabiting all plants • Play lots of different roles, include host tolerance to stressful conditions, plant defense, plant growth, and plant community biodiversity • One example of the economic importance of endophytes is taxol, well-known anticancer drug, which is not a product of Taxus brevifolia (yew) tree, but of its endophyte Taxomyces andreana Anamorphs and teleomorphs More than 1/3 of fungi do not normally express any sexual characters. They are anamorphs. Sometimes, some anamorphic fungi develop into sexual teleomorphs which have “more morphology” and can be properly classified. Before molecular era, all anamorphic fungi have been treated as Alternaria (anamorph, above), “Deuteromycota”. and Lewia (teleomorph, below) Most of knapweed endophytes are are the same organism. anamorphic ascomycetes. BLAST search usually reveals mixed lists of ana- and teleomorph names Pleomorphic fungi (with variable anamorph/teleomorph relationships) are one of the most painful problem for fungal taxonomy. The weakness of morphology From Jeewon et al. (2003), and Hu et al. (2007) Pestalotiopsis example: morphology chosen as the only identification tool leads to highly tangled molecular tree. “Identify, then sequence” does not work for novel isolates. Thus, the identification of fungi depends on either high level of expertise, or on proper barcoding. -
Musk Thistle
A Northern Arizona Homeowner’s Guide To Identifying and Managing MUSK THISTLE Common name(s): Musk thistle, nodding thistle Scientific name: Carduus nutans Family: Sunflower or Aster family (Asteraceae) Reasons for concern: This aggressive plant can quickly take over both disturbed and unattended areas, outcompeting native species, reducing native plant diversity and wildlife habitat, and forming huge monocultures. Some studies show that this thistle may have allelopathic (toxic) properties which prevent the growth of nearby plants. They are very difficult to eradicate. Classification: Non-native Musk thistle habit. Image credit: Max Licher, swbiodiversity.org/seinet Botanical description: Tall, sturdy, spiny plant with many branching stems. Leaves: Rosette leaves lance-shaped to oval, dark green with spiny edges that are silvery white to purplish, with spiny margins. Stem leaves dark green with light green midribs, alternate. Spiny wings from leaves extend down stem. Rosette and stem leaves coarsely lobed, usually 1 to 12 inches long and up to 8 inches wide. Upper leaves smaller. Stem(s): Stem has very spiny wings extending from leaves down stem. Stem stout, erect; covered with cobwebby hairs, matted hairs, or almost smooth. Many spreading branches. Stems up to 1 ½ to 6 feet or more. Flowers: Red-purple. Heads are single, at end of stem, solitary, and usually nodding. Flower heads supported by modified leaves called bracts, which are smooth, reddish-purple, pointed and sharp at tip. Outermost bracts bent backwards near middle. Blooms June through September. https://www.nazinvasiveplants.org Seeds: Seed heads topped by plume of feathery white hairs. One plant can produce 10,000 to 100,000 seeds. -
Literature Cited
Literature Cited Robert W. Kiger, Editor This is a consolidated list of all works cited in volumes 19, 20, and 21, whether as selected references, in text, or in nomenclatural contexts. In citations of articles, both here and in the taxonomic treatments, and also in nomenclatural citations, the titles of serials are rendered in the forms recommended in G. D. R. Bridson and E. R. Smith (1991). When those forms are abbre- viated, as most are, cross references to the corresponding full serial titles are interpolated here alphabetically by abbreviated form. In nomenclatural citations (only), book titles are rendered in the abbreviated forms recommended in F. A. Stafleu and R. S. Cowan (1976–1988) and F. A. Stafleu and E. A. Mennega (1992+). Here, those abbreviated forms are indicated parenthetically following the full citations of the corresponding works, and cross references to the full citations are interpolated in the list alphabetically by abbreviated form. Two or more works published in the same year by the same author or group of coauthors will be distinguished uniquely and consistently throughout all volumes of Flora of North America by lower-case letters (b, c, d, ...) suffixed to the date for the second and subsequent works in the set. The suffixes are assigned in order of editorial encounter and do not reflect chronological sequence of publication. The first work by any particular author or group from any given year carries the implicit date suffix “a”; thus, the sequence of explicit suffixes begins with “b”. Works missing from any suffixed sequence here are ones cited elsewhere in the Flora that are not pertinent in these volumes. -
Classical Biological Control of Nodding and Plumeless Thistles
Biological Control 21, 206–213 (2001) doi:10.1006/bcon.2001.0940, available online at http://www.idealibrary.com on Classical Biological Control of Nodding and Plumeless Thistles L. T. Kok Department of Entomology, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061-0319 Received March 15, 2001; accepted March 20, 2001; published online May 22, 2001 group. Both thistles are winter annuals or biennials. Nodding (musk) thistle (Carduus thoermeri Wein- Seeds produced in summer form rosettes which over- mann in the Carduus nutans L. group) and plumeless winter. The rosettes resume development in spring, thistle (Carduus acanthoides L.) are introduced nox- followed by stem elongation and flowering. Nodding ious weeds of Eurasian origin. Both weeds are prob- thistle was first recorded in 1853 at Harrisburg, Penn- lematic in pastures, rangelands, and croplands and sylvania (Stuckey and Forsyth, 1971) and has been along state highways in many parts of the United reported in 40 of the 48 contiguous states (Frick, 1978). States. The success of both species of thistles is largely Plumeless thistle first appeared in 1878 at Camden, due to their prolific seed production, seed longevity, New Jersey and in Ohio (Batra, 1978) and is found in competitive ability, and lack of natural enemies. Clas- sical biological control of nodding thistle in Virginia 19 states (Frick, 1978). The two thistle species often has been achieved with three exotic thistle herbivores, occupy the same habitats in the northeast, such as Rhinocyllus conicus Froelich (Coleoptera: Curculion- overgrazed pastures and disturbed roadsides, some- idae), Trichosirocalus horridus (Panzer) (Coleoptera: times occurring in mixed stands (Batra, 1978). -
Development of Biological Agents for Invasive Species Control 6
MD-13-SP009B4T Martin O’Malley, Governor Darrell B. Mobley, Acting Secretary Anthony G. Brown, Lt. Governor Melinda B. Peters, Administrator STATE HIGHWAY ADMINISTRATION RESEARCH REPORT DEVELOPMENT OF BENEFICIAL BIOLOGICAL AGENTS FOR INVASIVE SPECIES CONTROL ROBERT B. TRUMBULE MARYLAND DEPARTMENT OF AGRICULTURE SP009B4T FINAL REPORT May 2013 The contents of this report reflect the views of the author who is responsible for the facts and the accuracy of the data presented herein. The contents do not necessarily reflect the official views or policies of the Maryland State Highway Administration. This report does not constitute a standard, specification, or regulation. Technical Report Documentation Page 1. Report No. 2. Government Accession No. 3. Recipient's Catalog No. MD-13-SP009B4T 4. Title and Subtitle 5. Report Date May 2013 Development of Biological Agents for Invasive Species Control 6. Performing Organization Code 7. Author/s 8. Performing Organization Report No. Robert B. Trumbule 9. Performing Organization Name and Address 10. Work Unit No. Maryland Department of Agriculture 11. Contract or Grant No. 50 Harry S Truman Parkway. Annapolis, MD 21401 SP009B4T 12. Sponsoring Organization Name and Address 13. Type of Report and Period Covered Final Report Maryland State Highway Administration 14. Sponsoring Agency Code Office of Policy & Research 707 North Calvert Street (7120) STMD - MDOT/SHA Baltimore MD 21202 15. Supplementary Notes 16. Abstract Noxious and invasive weeds readily colonize disturbed areas and outcompete and displace native and other desirable vegetation. This can result in a loss of pollinators (i.e. animals such as birds, bees, and other insects that move pollen between plants making them very important to plant reproduction), wildlife food and nesting resources, and decrease biodiversity in general. -
Milk Thistle
Forest Health Technology Enterprise Team TECHNOLOGY TRANSFER Biological Control BIOLOGY AND BIOLOGICAL CONTROL OF EXOTIC T RU E T HISTL E S RACHEL WINSTON , RICH HANSEN , MA R K SCH W A R ZLÄNDE R , ER IC COO M BS , CA R OL BELL RANDALL , AND RODNEY LY M FHTET-2007-05 U.S. Department Forest September 2008 of Agriculture Service FHTET he Forest Health Technology Enterprise Team (FHTET) was created in 1995 Tby the Deputy Chief for State and Private Forestry, USDA, Forest Service, to develop and deliver technologies to protect and improve the health of American forests. This book was published by FHTET as part of the technology transfer series. http://www.fs.fed.us/foresthealth/technology/ On the cover: Italian thistle. Photo: ©Saint Mary’s College of California. The U.S. Department of Agriculture (USDA) prohibits discrimination in all its programs and activities on the basis of race, color, national origin, sex, religion, age, disability, political beliefs, sexual orientation, or marital or family status. (Not all prohibited bases apply to all programs.) Persons with disabilities who require alternative means for communication of program information (Braille, large print, audiotape, etc.) should contact USDA’s TARGET Center at 202-720-2600 (voice and TDD). To file a complaint of discrimination, write USDA, Director, Office of Civil Rights, Room 326-W, Whitten Building, 1400 Independence Avenue, SW, Washington, D.C. 20250-9410 or call 202-720-5964 (voice and TDD). USDA is an equal opportunity provider and employer. The use of trade, firm, or corporation names in this publication is for information only and does not constitute an endorsement by the U.S. -
Morphological and Biological Parameters of the Knapweed Nematode, Subanguina Picridis 1
154 Journal of Nematology, Volume 18, No. 2, April 1986 weeds. 43. Acroptilon (Centaurea) repens (L.) DC. Ca- repens (L.) DC., Russian Knapweed (Compositae). Pp. nadian Journal of Plant Science 60:993-1004. 105-110 in J. S. Kelleher and M. A. Hulme, eds. 19. Watson, A. K. 1986. Host range of, and plant Biological control programmes against insects and reaction to, Subanguina picridis. Journal of Nematol- weeds in Canada 1969-1980. Slough: Common- ogy 18:112-120. wealth Agriculture Bureaux. 20. Watson, A. K. 1986. Morphological and bio- 22. Watson, A. K., and J. D. Shorthouse. 1979. logical parameters of the knapweed nematode, Suban- Gall formation on Cirsium arvense by Ditylenchus dip- guina _picridis.Journal of Nematology 18:154-158. saci. Journal of Nematology 11:16-22. 21. Watson, A. K., and P. Harris. 1984. Acroptilon Journal of Nematology 18(2):154-158. 1986. © The Society of Nematologists 1986. Morphological and Biological Parameters of the Knapweed Nematode, Subanguina picridis 1 A. K. WATSON 2 Abstract: Specimens of the knapweed nematode Subanguina picridis (Kirjanova) Brzeski obtained from different host plants were highly variable in measurement and structure. This variability refutes the validity of six Subanguina species attacking plants in the Asteraceae. Key words: Acroptilon repens (Russian knapweed), host specificity, Subanguina picridis (knapweed nematode), taxonomy, variability. The gall forming nematode Subanguina MATERIALS AND METHODS picridis (Kirjanova, 1944) Brzeski, 1981, Galls were obtained from A. repens, Cen- syn.: Paranguina picridis (Kirjanova, 1944) taurea diffusa Lam., Cynara sco$ymus L., and Kirjanova & Ivanova, 1968, has been eval- Onopordum acanthium L. plants inoculated uated in Canada as a potential biological with S. -
Proceedings of the Fifth Biennial Conference of Research on The
Reframing the Grazing Debate: Evaluating Ecological Sustainability and Bioregional Food Production Matthew R. Loeser1 Thomas D. Sisk1 Timothy E. Crews2 Kurt Olsen1 Craig Moran1 and Christina Hudenko1 1Center for Environmental Sciences and Education Northern Arizona University PO Box 5694 Flagstaff, AZ 86011-5694 2Environmental Studies Program Prescott College 220 Grove Avenue Prescott, AZ 86301 Abstract. The semi-arid grasslands of the Colorado Plateau are productive, diverse, and extensive ecosystems. The majority of these ecosystems have been altered by human land use, primarily through the grazing of domestic livestock, yielding a plethora of environ- mental and social consequences that are tightly interconnected. From an agroecological perspective, untangling these issues requires both an understanding of the role of livestock grazing in bioregional food production and the effect of that grazing on ecological sustainability. To address the former, we discuss the importance of cattle ranching as a bioregional food source, including estimates of meat production and water use in Arizona. To address the latter, we present data from a long-term project addressing changes in native plant community composition, under a range of alternative livestock management strate- gies. Our study site near Flagstaff, AZ includes four different management treatments: (1) conventional low-intensity, long-duration grazing rotations; (2) high-intensity, short-dura- tion rotations; (3) very high-impact, very short-duration grazing (to simulate herd impact); and, (4) livestock exclosure. Preliminary results suggest belowground properties are re- sponding more quickly to grazing treatments than aboveground properties. Particular Email: Matthew R. Loeser, [email protected] 3 4 REFRAMING THE GRAZING DEBATE response variables, such as cyanobacteria and diatoms, show a marked short-term response to very high-impact, short-duration grazing, but long-term implications are as yet un- known. -
Integrated Noxious Weed Management Plan: US Air Force Academy and Farish Recreation Area, El Paso County, CO
Integrated Noxious Weed Management Plan US Air Force Academy and Farish Recreation Area August 2015 CNHP’s mission is to preserve the natural diversity of life by contributing the essential scientific foundation that leads to lasting conservation of Colorado's biological wealth. Colorado Natural Heritage Program Warner College of Natural Resources Colorado State University 1475 Campus Delivery Fort Collins, CO 80523 (970) 491-7331 Report Prepared for: United States Air Force Academy Department of Natural Resources Recommended Citation: Smith, P., S. S. Panjabi, and J. Handwerk. 2015. Integrated Noxious Weed Management Plan: US Air Force Academy and Farish Recreation Area, El Paso County, CO. Colorado Natural Heritage Program, Colorado State University, Fort Collins, Colorado. Front Cover: Documenting weeds at the US Air Force Academy. Photos courtesy of the Colorado Natural Heritage Program © Integrated Noxious Weed Management Plan US Air Force Academy and Farish Recreation Area El Paso County, CO Pam Smith, Susan Spackman Panjabi, and Jill Handwerk Colorado Natural Heritage Program Warner College of Natural Resources Colorado State University Fort Collins, Colorado 80523 August 2015 EXECUTIVE SUMMARY Various federal, state, and local laws, ordinances, orders, and policies require land managers to control noxious weeds. The purpose of this plan is to provide a guide to manage, in the most efficient and effective manner, the noxious weeds on the US Air Force Academy (Academy) and Farish Recreation Area (Farish) over the next 10 years (through 2025), in accordance with their respective integrated natural resources management plans. This plan pertains to the “natural” portions of the Academy and excludes highly developed areas, such as around buildings, recreation fields, and lawns.