Proposed Authorized Plant List by Family
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A Numerical Taxonomy of the Genus Rosularia (Dc.) Stapf from Pakistan and Kashmir
Pak. J. Bot., 44(1): 349-354, 2012. A NUMERICAL TAXONOMY OF THE GENUS ROSULARIA (DC.) STAPF FROM PAKISTAN AND KASHMIR GHULAM RASOOL SARWAR* AND MUHAMMAD QAISER Centre for Plant Conservation, University of Karachi, Karachi-75270, Pakistan Federal Urdu University of Arts, Science and Technology, Gulshan-e-Iqbal, Karachi, Pakistan Abstract Numerical analysis of the taxa belonging to the genus Rosularia (DC.) Stapf was carried out to find out their phenetic relationship. Data from different disciplines viz. general, pollen and seed morphology, chemistry and distribution pattern were used. As a result of cluster analysis two distinct groups are formed. Out of which one group consists of R. sedoides (Decne.) H. Ohba and R. alpestris A. Boriss. while other group comprises R. adenotricha (Wall. ex Edgew.) Jansson ssp. adenotricha , R. adenotricha ssp. chitralica, G.R. Sarwar, R. rosulata (Edgew.) H. Ohba and R. viguieri (Raym.-Hamet ex Frod.) G.R. Sarwar. Distribution maps of all the taxa, along with key to the taxa are also presented. Introduction studied the genus Rosularia and indicated that the genus is polyphyletic. Mayuzumi & Ohba (2004) analyzed the Rosularia is a small genus composed of 28 species, relationships within the genus Rosularia. According to distributed in arid or semiarid regions ranging from N. different workers Rosularia is polyphyletic. Africa to C. Asia through E. Mediterranean (Mabberley, There are no reports on numerical studies of 2008). Some of the taxa of Rosularia are in general Crassulaceae except the genus Sedum from Pakistan cultivation and several have great appeal due to their (Sarwar & Qaiser, 2011). The primary aim of this study is extraordinarily regular rosettes on the leaf colouring in to analyze diagnostic value of morphological characters in various seasons. -
Natalie Cusimano 2,11 , Josef Bogner 3 , Simon J. Mayo 4 , Peter C. Boyce 5 , Sin Y. Wong 6 , Michael Hesse 7 , Wilbert L. A. He
American Journal of Botany 98(4): 1–15. 2011. R ELATIONSHIPS WITHIN THE ARACEAE: COMPARISON OF 1 MORPHOLOGICAL PATTERNS WITH MOLECULAR PHYLOGENIES 2,11 3 4 5 Natalie Cusimano , Josef Bogner , Simon J. Mayo , Peter C. Boyce , 6 7 8 Sin Y. Wong , Michael Hesse , Wilbert L. A. Hetterscheid , Richard C. Keating 9 , and Jim C. French 10 2 Department of Biology, LMU Munich, D-80638 Munich, Germany; 3 Augsburger Str. 43a, D-86368, Gersthofen, Germany; 4 Royal Botanic Gardens Kew, Richmond, Surrey, TW9 3AE, U.K.; 5 BRT Research Associate, Forest Herbarium (BKF), The Offi ce of Forest and Plant Conservation Research, National Park, Wildlife and Plant Conservation Department, 61 Phahonyothin Road, Chatuchak, Bangkok 10900, Thailand; 6 Department of Plant Science and Environmental Ecology, Faculty of Resource Science and Technology, Universiti Malaysia Sarawak 94300 Samarahan, Sarawak, Malaysia; 7 Department of Structural and Functional Botany, University of Vienna, 1030 Vienna, Austria; 8 Von Gimborn Arboretum, Velperengh 13, 3941 BZ Doorn, Netherlands; 9 Missouri Botanical Garden, P.O. Box 299, St. Louis, Missouri 63166-0299, USA; and 10 188 San Jose Court, San Luis Obispo, California 93405, USA • Premise of the study: The fi rst family-wide molecular phylogeny of the Araceae, a family of about 3800 published species in 120 genera, became available in 1995, followed by a cladistic analysis of morpho-anatomical data in 1997. The most recent and comprehensive family-wide molecular phylogeny was published in 2008 and included species from 102 genera. We reanalyzed the molecular data with a more complete genus sampling and compared the resulting phylogeny with morphological and ana- tomical data, with a view to contributing to a new formal classifi cation of the Araceae. -
Appendix Color Plates of Solanales Species
Appendix Color Plates of Solanales Species The first half of the color plates (Plates 1–8) shows a selection of phytochemically prominent solanaceous species, the second half (Plates 9–16) a selection of convol- vulaceous counterparts. The scientific name of the species in bold (for authorities see text and tables) may be followed (in brackets) by a frequently used though invalid synonym and/or a common name if existent. The next information refers to the habitus, origin/natural distribution, and – if applicable – cultivation. If more than one photograph is shown for a certain species there will be explanations for each of them. Finally, section numbers of the phytochemical Chapters 3–8 are given, where the respective species are discussed. The individually combined occurrence of sec- ondary metabolites from different structural classes characterizes every species. However, it has to be remembered that a small number of citations does not neces- sarily indicate a poorer secondary metabolism in a respective species compared with others; this may just be due to less studies being carried out. Solanaceae Plate 1a Anthocercis littorea (yellow tailflower): erect or rarely sprawling shrub (to 3 m); W- and SW-Australia; Sects. 3.1 / 3.4 Plate 1b, c Atropa belladonna (deadly nightshade): erect herbaceous perennial plant (to 1.5 m); Europe to central Asia (naturalized: N-USA; cultivated as a medicinal plant); b fruiting twig; c flowers, unripe (green) and ripe (black) berries; Sects. 3.1 / 3.3.2 / 3.4 / 3.5 / 6.5.2 / 7.5.1 / 7.7.2 / 7.7.4.3 Plate 1d Brugmansia versicolor (angel’s trumpet): shrub or small tree (to 5 m); tropical parts of Ecuador west of the Andes (cultivated as an ornamental in tropical and subtropical regions); Sect. -
February, 2021
CENTRAL COAST CACTUS February 2021 & SUCCULENT SOCIETY ON THE DRY SIDE In This Issue: Speaker for Meeting Garden Tip from Loring Woody Minnich Brag Plants Plant of the Month Business Members Announcements Board Members NEXT ZOOM MEETING: Sunday, February 14th, 2:00 pm Watch for your e-mail invite! Wendell S. (Woody) Minnich 2021 Woody, as he is commonly known, grew up in the Mojave Desert and has had an attraction to desert plants and animals since the early 1950’s. He has been involved with the cactus and succulent world for over 52 years, as a grower, field explorer, club and organization leader, writer, photographer, lecturer and presenter. Having been a speaker all over the world, Woody is most often associated with giving presen- tations on his field work from the places he has traveled, such as: Argentina, Australia, Bolivia, Brazil, Chile, Madagascar, Mexico, Namibia, New Zealand, Peru, Socotra, South Africa, the United States and Yemen. To date, this makes 128 major trips. He is also recognized for having operated the nursery Cactus Data Plants since 1975. Woody’s show quality plants were often considered one of the stan- dards for staging and horticultural achievement. His favorite genera include: Adenium, Ariocarpus, Astrophytum, Copiapoa, Cyphostemma, Fouquieria, Gymnocalycium, Lithops, Mammillaria, Melo- cactus, Pachypodium, Turbinicarpus, Uebelmannia, and Pachycauls in general. He has published numerous articles and reviews in various journals (CSSA) and his photography is featured in many books including; “The Copiapoa” by Schulz, “The Mammillaria Handbook” by Pil- beam, “The Cactus Lexicon” By Hunt and Charles, as well as many others. -
Patterns of Plant Diversity and Endemism in Namibia
View metadata, citation and similar papers at core.ac.uk brought to you by CORE provided by Stellenbosch University SUNScholar Repository Bothalia 36,2: 175-189(2006) Patterns of plant diversity and endemism in Namibia P. CRAVEN* and P VORSTER** Keywords: Namibia, phytogeography, plant endemism ABSTRACT Species richness, endemism and areas that are rich in both species and endemic species were assessed and mapped for Namibia. High species diversity corresponds with zones where species overlap. These are particularly obvious where there are altitudinal variations and in high-lying areas. The endemic flora o f Namibia is rich and diverse. An estimated 16% of the total plant species in Namibia are endemic to the country. Endemics are in a wide variety o f families and sixteen genera are endemic. Factors that increase the likelihood o f endemism are mountains, hot deserts, diversity o f substrates and microclimates. The distribution of plants endemic to Namibia was arranged in three different ways. Firstly, based on a grid count with the phytogeographic value of the species being equal, overall endemism was mapped. Secondly, range restricted plant species were mapped individually and those with congruent distribution patterns were combined. Thirdly, localities that are important for very range-restricted species were identified. The resulting maps of endemism and diversity were compared and found to correspond in many localities. When overall endemism is compared with overall diversity, rich localities may consist o f endemic species with wide ranges. The other methods identify important localities with their own distinctive complement of species. INTRODUCTION (1994). It was based on distributional data per magiste rial district following Merxmiiller (1966-1972), as well Species diversity was traditionally measured by count as other literature. -
Plethora of Plants - Collections of the Botanical Garden, Faculty of Science, University of Zagreb (2): Glasshouse Succulents
NAT. CROAT. VOL. 27 No 2 407-420* ZAGREB December 31, 2018 professional paper/stručni članak – museum collections/muzejske zbirke DOI 10.20302/NC.2018.27.28 PLETHORA OF PLANTS - COLLECTIONS OF THE BOTANICAL GARDEN, FACULTY OF SCIENCE, UNIVERSITY OF ZAGREB (2): GLASSHOUSE SUCCULENTS Dubravka Sandev, Darko Mihelj & Sanja Kovačić Botanical Garden, Department of Biology, Faculty of Science, University of Zagreb, Marulićev trg 9a, HR-10000 Zagreb, Croatia (e-mail: [email protected]) Sandev, D., Mihelj, D. & Kovačić, S.: Plethora of plants – collections of the Botanical Garden, Faculty of Science, University of Zagreb (2): Glasshouse succulents. Nat. Croat. Vol. 27, No. 2, 407- 420*, 2018, Zagreb. In this paper, the plant lists of glasshouse succulents grown in the Botanical Garden from 1895 to 2017 are studied. Synonymy, nomenclature and origin of plant material were sorted. The lists of species grown in the last 122 years are constructed in such a way as to show that throughout that period at least 1423 taxa of succulent plants from 254 genera and 17 families inhabited the Garden’s cold glass- house collection. Key words: Zagreb Botanical Garden, Faculty of Science, historic plant collections, succulent col- lection Sandev, D., Mihelj, D. & Kovačić, S.: Obilje bilja – zbirke Botaničkoga vrta Prirodoslovno- matematičkog fakulteta Sveučilišta u Zagrebu (2): Stakleničke mesnatice. Nat. Croat. Vol. 27, No. 2, 407-420*, 2018, Zagreb. U ovom članku sastavljeni su popisi stakleničkih mesnatica uzgajanih u Botaničkom vrtu zagrebačkog Prirodoslovno-matematičkog fakulteta između 1895. i 2017. Uređena je sinonimka i no- menklatura te istraženo podrijetlo biljnog materijala. Rezultati pokazuju kako je tijekom 122 godine kroz zbirku mesnatica hladnog staklenika prošlo najmanje 1423 svojti iz 254 rodova i 17 porodica. -
BANKING on NEW BASKETS Are Your Customers a Little Tired of Standard Hanging Basket Crops? Here's How to Grow Nine Interesting Alternatives
BANKING ON NEW BASKETS Are your customers a little tired of standard hanging basket crops? Here's how to grow nine interesting alternatives. by Terri Woods Stannan and James E. Faust, University ofTennessee Recently, many new vegetatively Four plants per 10-inch basket finished propagated species of plants have in six weeks, while three plugs per bas been introduced in our industry, ket finished in seven weeks. Two several of which are suitable for plugs per 10-inch basket produced a hanging baskets. But there is very lopsided, lower quality product, but little cultural information about these baskets would likely be accept these plants available to growers. able to mass merchandisers. So, last spring at the University of Tennessee we developed produc Flowers were not heat tolerant, but tion schedules for nine species in these plants will be great for impulse 10-inch hanging baskets. The purchases during the spring. plants used were bacopa, bidens, brachycome, helichyrsum, Helichrysum. Helichrysum lysimachia, pentas, scaevola, Cauliflower basket planted by Paul Thomas bracteatum "Golden Beauty" is a streptocarpella, and streptosolen. strawflower that produces many long- Rarely will one production schedule meet the needs of all grow lasting, golden-yellow flowers, but unlike other strawflowers, it ers. So, we chose to look at the main two variables in hanging has a low-growing, spreading habit. We suggest using two or three basket production: the number of plants per pot and the number of plugs per 10-inch basket to finish in 7 or 8 weeks. No pinching is pinches per basket. We wanted to provide options that allow required. -
Browallia Mionei (Solanaceae) Una Nueva Especie Del Norte Del Perú
Arnaldoa 24 (2): 413 - 424, 2017 ISSN: 1815-8242 (edición impresa) http://doi.org/10.22497/arnaldoa.242.24201 ISSN: 2413-3299 (edición online) Browallia mionei (Solanaceae) una nueva especie del Norte del Perú Browallia mionei (Solanaceae) a new species from Northern Peru Segundo Leiva González Herbario Antenor Orrego (HAO), Museo de Historia Natural, Universidad Privada Antenor Orrego, Casilla Postal 1075, Trujillo, PERÚ. [email protected]/[email protected] Flor Tantalean Evangelista Museo de Historia Natural, Escuela de Ingeniería Agrónoma, Universidad Privada Antenor Orrego, Av. América Sur 3145, Urb. Monserrate, Trujillo, PERÚ. [email protected]/[email protected] 24 (2): Julio - Diciembre, 2017 413 Este es un artículo de acceso abierto bajo la licencia CC BY-NC 4.0: https://creativecommons.org/licenses/by-nc/4.0/ Leiva & Tantalean: Browallia mionei (Solanaceae) una nueva especie del Norte del Perú Recibido: 8-IX-2017; aceptado: 28-X-2017; publicado online: 30-XI-2017; publicado impreso: 15-XII-2017 Resumen Se describe e ilustra en detalle Browallia mionei S. Leiva & Tantalean (Solanaceae), una nueva especie del norte del Perú. Browallia mionei es propia del km 49½-54 de la carretera Moro-Pamparomás, distrito Pamparomás, prov. Huaylas, región Ancash, Perú, entre los 9º05´22,0-9º05´29,7” S y 78º04´19,8-78º05´02,3” W, y entre los 1279-1377 m de elevación. Se caracteriza principalmente por la disposición de las flores en racimos, el indumento de sus órganos florales, estilo incluso, corola amarilla externamente y cremosa interiormente, 22-28 mm (entre el lóbulo mayor y los dos lóbulos inferiores) y 20-22 mm (entre los dos lóbulos laterales) de diámetro del limbo en la antésis, cápsula obcónica erecta, lasiocarpa, rodeada por una cobertura de pelos eglandulares transparentes rígidos la mitad distal, 6-6,3 mm de largo por 3,5-4 mm de diámetro. -
2Do(). '!Phe . Famuy . Are Generally Con§Picu Mono
Rev. Bio\. Trop., 46(3):493-513, 1998 Current. floristk and phytogeographk knowledge of Mexican Bromeliaceae Adolfo Espejo Serna yAna Rosa López-Ferrari1 I Herbario Metropolitano, Depart¡unento de Biología,C.B.S., Universidad Autónoma Metropolitana, Unidad Jztapalapa, Apartado Postal 55,535,09340 México, D. F.,Fax 7244688, e-m<'lil: [email protected] Rece.ived 6-XI-1997. Corrected 28-V-1998. Accepted 19-VI-1998. Abstract: A current floristicand phytogeographic knowledge of native Mexican Bromeliaceae is presented. There are 22 genera of Brorlleliaceae recorded from the country Iha! ¡nelude 326 species. The genus Ursulaea with 2 species is endemic to Mexico, wbíle Hechtiawith 48 oC its 50 specíesbas its principal centerof diversity in the country. 7illandsia (175 spp), Hechtia (48 spp) and Pitcairnia (46 spp) are tbe genera with tbe greatest number of species. We present a comparative análysisof Mexican Bromeliaceae with tbat of other American regions that buve recently published accounts Cor the Family, .particularlythe Mesomerican area,Venezu¡:la, Ecuador, and tbeGuianas.Our results ledus to the cOI1e1usiontbat alltbese floras sbould be considered as distinct. We obse,rve a progressive decre¡¡¡se ofthe Simpson index value related wit� tbe remoteness of the Mexican area. A general análysisof tlrpspeCies numbers of Mexican bromeliad genera shows adistinct preference oftbespeci es forconiferousand oakfo,rests'; folÍowed by t�opical caduci ' folious forests. There is also significan! r¡:presentation of tbe family ifi'o ther vegetation types such as doud forests and tropical perennifolious forests. Generally Mel\ican Bromeliacea¡: speeies hav¡: scárceand sparse populationsandin manyc ases they inbabit diffs,bluffs and scaIJÍs in restrlcted areas,Col1cerning tbe. -
Epilist 1.0: a Global Checklist of Vascular Epiphytes
Zurich Open Repository and Archive University of Zurich Main Library Strickhofstrasse 39 CH-8057 Zurich www.zora.uzh.ch Year: 2021 EpiList 1.0: a global checklist of vascular epiphytes Zotz, Gerhard ; Weigelt, Patrick ; Kessler, Michael ; Kreft, Holger ; Taylor, Amanda Abstract: Epiphytes make up roughly 10% of all vascular plant species globally and play important functional roles, especially in tropical forests. However, to date, there is no comprehensive list of vas- cular epiphyte species. Here, we present EpiList 1.0, the first global list of vascular epiphytes based on standardized definitions and taxonomy. We include obligate epiphytes, facultative epiphytes, and hemiepiphytes, as the latter share the vulnerable epiphytic stage as juveniles. Based on 978 references, the checklist includes >31,000 species of 79 plant families. Species names were standardized against World Flora Online for seed plants and against the World Ferns database for lycophytes and ferns. In cases of species missing from these databases, we used other databases (mostly World Checklist of Selected Plant Families). For all species, author names and IDs for World Flora Online entries are provided to facilitate the alignment with other plant databases, and to avoid ambiguities. EpiList 1.0 will be a rich source for synthetic studies in ecology, biogeography, and evolutionary biology as it offers, for the first time, a species‐level overview over all currently known vascular epiphytes. At the same time, the list represents work in progress: species descriptions of epiphytic taxa are ongoing and published life form information in floristic inventories and trait and distribution databases is often incomplete and sometimes evenwrong. -
History and Current Status of Systematic Research with Araceae
HISTORY AND CURRENT STATUS OF SYSTEMATIC RESEARCH WITH ARACEAE Thomas B. Croat Missouri Botanical Garden P. O. Box 299 St. Louis, MO 63166 U.S.A. Note: This paper, originally published in Aroideana Vol. 21, pp. 26–145 in 1998, is periodically updated onto the IAS web page with current additions. Any mistakes, proposed changes, or new publications that deal with the systematics of Araceae should be brought to my attention. Mail to me at the address listed above, or e-mail me at [email protected]. Last revised November 2004 INTRODUCTION The history of systematic work with Araceae has been previously covered by Nicolson (1987b), and was the subject of a chapter in the Genera of Araceae by Mayo, Bogner & Boyce (1997) and in Curtis's Botanical Magazine new series (Mayo et al., 1995). In addition to covering many of the principal players in the field of aroid research, Nicolson's paper dealt with the evolution of family concepts and gave a comparison of the then current modern systems of classification. The papers by Mayo, Bogner and Boyce were more comprehensive in scope than that of Nicolson, but still did not cover in great detail many of the participants in Araceae research. In contrast, this paper will cover all systematic and floristic work that deals with Araceae, which is known to me. It will not, in general, deal with agronomic papers on Araceae such as the rich literature on taro and its cultivation, nor will it deal with smaller papers of a technical nature or those dealing with pollination biology. -
Bromeliaceae
Bromeliaceae VOLUME XLI - No. 2 - MARCH/APRIL 2007 The Bromeliad Society of Queensland Inc. P. O. Box 565, Fortitude Valley Queensland, Australia 4006, Home Page www.bromsqueensland.com OFFICERS PRESIDENT Olive Trevor (07) 3351 1203 VICE PRESIDENT Barry Kable PAST PRESIDENT Bob Reilly (07) 3870 8029 SECRETARY Vacant TREASURER Glenn Bernoth (07) 4661 3 634 BROMELIACEAE EDITOR Ross Stenhouse SHOW ORGANISER Bob Cross COMMITTEE David Rees, Paul Dunstan, Ann McBur- nie, Arnold James,Viv Duncan MEMBERSHIP SECRETARY Roy Pugh (07) 3263 5057 SEED BANK CO-ORDINATOR Doug Parkinson (07) 5497 5220 AUDITOR Anna Harris Accounting Services SALES AREA STEWARD Pat Barlow FIELD DAY CO-ORDINATOR Nancy Kickbusch LIBRARIAN Evelyn Rees ASSISTANT SHOW ORGANISER Phil Beard SUPPER STEWARDS Nev Ryan, Barry Genn PLANT SALES Nancy Kickbusch (Convenor) N. Poole (Steward) COMPETITION STEWARDS Dorothy Cutcliffe, Alan Phythian CHIEF COMPETITION STEWARD Jenny Cakurs HOSTESS Gwen Parkinson BSQ WEBMASTER Ross Stenhouse LIFE MEMBERS Grace Goode OAM Peter Paroz, Michael O’Dea Editor’s Email Address: [email protected] The Bromeliad Society of Queensland Inc. gives permission to all Bromeliad Societies to re- print articles in their journals provided proper acknowledgement is given to the original author and the Bromeliaceae, and no contrary direction is published in Bromeliaceae. This permission does not apply to any other person or organisation without the prior permission of the author. Opinions expressed in this publication are those of the individual contributor and may not neces- sarily reflect the opinions of the Bromeliad Society of Queensland or of the Editor Authors are responsible for the accuracy of the information in their articles.