Origin Inspection Programs (Food and Agricultural Code, Section 6404)
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An Environmental History of the Middle Rio Grande Basin
United States Department of From the Rio to the Sierra: Agriculture Forest Service An Environmental History of Rocky Mountain Research Station the Middle Rio Grande Basin Fort Collins, Colorado 80526 General Technical Report RMRS-GTR-5 Dan Scurlock i Scurlock, Dan. 1998. From the rio to the sierra: An environmental history of the Middle Rio Grande Basin. General Technical Report RMRS-GTR-5. Fort Collins, CO: U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station. 440 p. Abstract Various human groups have greatly affected the processes and evolution of Middle Rio Grande Basin ecosystems, especially riparian zones, from A.D. 1540 to the present. Overgrazing, clear-cutting, irrigation farming, fire suppression, intensive hunting, and introduction of exotic plants have combined with droughts and floods to bring about environmental and associated cultural changes in the Basin. As a result of these changes, public laws were passed and agencies created to rectify or mitigate various environmental problems in the region. Although restoration and remedial programs have improved the overall “health” of Basin ecosystems, most old and new environmental problems persist. Keywords: environmental impact, environmental history, historic climate, historic fauna, historic flora, Rio Grande Publisher’s Note The opinions and recommendations expressed in this report are those of the author and do not necessarily reflect the views of the USDA Forest Service. Mention of trade names does not constitute endorsement or recommendation for use by the Federal Government. The author withheld diacritical marks from the Spanish words in text for consistency with English punctuation. Publisher Rocky Mountain Research Station Fort Collins, Colorado May 1998 You may order additional copies of this publication by sending your mailing information in label form through one of the following media. -
Approved Plant List 10/04/12
FLORIDA The best time to plant a tree is 20 years ago, the second best time to plant a tree is today. City of Sunrise Approved Plant List 10/04/12 Appendix A 10/4/12 APPROVED PLANT LIST FOR SINGLE FAMILY HOMES SG xx Slow Growing “xx” = minimum height in Small Mature tree height of less than 20 feet at time of planting feet OH Trees adjacent to overhead power lines Medium Mature tree height of between 21 – 40 feet U Trees within Utility Easements Large Mature tree height greater than 41 N Not acceptable for use as a replacement feet * Native Florida Species Varies Mature tree height depends on variety Mature size information based on Betrock’s Florida Landscape Plants Published 2001 GROUP “A” TREES Common Name Botanical Name Uses Mature Tree Size Avocado Persea Americana L Bahama Strongbark Bourreria orata * U, SG 6 S Bald Cypress Taxodium distichum * L Black Olive Shady Bucida buceras ‘Shady Lady’ L Lady Black Olive Bucida buceras L Brazil Beautyleaf Calophyllum brasiliense L Blolly Guapira discolor* M Bridalveil Tree Caesalpinia granadillo M Bulnesia Bulnesia arboria M Cinnecord Acacia choriophylla * U, SG 6 S Group ‘A’ Plant List for Single Family Homes Common Name Botanical Name Uses Mature Tree Size Citrus: Lemon, Citrus spp. OH S (except orange, Lime ect. Grapefruit) Citrus: Grapefruit Citrus paradisi M Trees Copperpod Peltophorum pterocarpum L Fiddlewood Citharexylum fruticosum * U, SG 8 S Floss Silk Tree Chorisia speciosa L Golden – Shower Cassia fistula L Green Buttonwood Conocarpus erectus * L Gumbo Limbo Bursera simaruba * L -
Guide to the Flora of the Carolinas, Virginia, and Georgia, Working Draft of 17 March 2004 -- LILIACEAE
Guide to the Flora of the Carolinas, Virginia, and Georgia, Working Draft of 17 March 2004 -- LILIACEAE LILIACEAE de Jussieu 1789 (Lily Family) (also see AGAVACEAE, ALLIACEAE, ALSTROEMERIACEAE, AMARYLLIDACEAE, ASPARAGACEAE, COLCHICACEAE, HEMEROCALLIDACEAE, HOSTACEAE, HYACINTHACEAE, HYPOXIDACEAE, MELANTHIACEAE, NARTHECIACEAE, RUSCACEAE, SMILACACEAE, THEMIDACEAE, TOFIELDIACEAE) As here interpreted narrowly, the Liliaceae constitutes about 11 genera and 550 species, of the Northern Hemisphere. There has been much recent investigation and re-interpretation of evidence regarding the upper-level taxonomy of the Liliales, with strong suggestions that the broad Liliaceae recognized by Cronquist (1981) is artificial and polyphyletic. Cronquist (1993) himself concurs, at least to a degree: "we still await a comprehensive reorganization of the lilies into several families more comparable to other recognized families of angiosperms." Dahlgren & Clifford (1982) and Dahlgren, Clifford, & Yeo (1985) synthesized an early phase in the modern revolution of monocot taxonomy. Since then, additional research, especially molecular (Duvall et al. 1993, Chase et al. 1993, Bogler & Simpson 1995, and many others), has strongly validated the general lines (and many details) of Dahlgren's arrangement. The most recent synthesis (Kubitzki 1998a) is followed as the basis for familial and generic taxonomy of the lilies and their relatives (see summary below). References: Angiosperm Phylogeny Group (1998, 2003); Tamura in Kubitzki (1998a). Our “liliaceous” genera (members of orders placed in the Lilianae) are therefore divided as shown below, largely following Kubitzki (1998a) and some more recent molecular analyses. ALISMATALES TOFIELDIACEAE: Pleea, Tofieldia. LILIALES ALSTROEMERIACEAE: Alstroemeria COLCHICACEAE: Colchicum, Uvularia. LILIACEAE: Clintonia, Erythronium, Lilium, Medeola, Prosartes, Streptopus, Tricyrtis, Tulipa. MELANTHIACEAE: Amianthium, Anticlea, Chamaelirium, Helonias, Melanthium, Schoenocaulon, Stenanthium, Veratrum, Toxicoscordion, Trillium, Xerophyllum, Zigadenus. -
Brachyta (Fasciobrachyta) Petriccionei, a New Longhorn Beetle Species from Central Italy (Coleoptera: Cerambycidae)
Fragmenta entomologica, 51 (1): 97-101 (2019) eISSN: 2284-4880 (online version) pISSN: 0429-288X (print version) Research article Submitted: May 25th, 2019 - Accepted: May 28th, 2019 - Published: May 31st, 2019 Brachyta (Fasciobrachyta) petriccionei, a new Longhorn beetle species from Central Italy (Coleoptera: Cerambycidae) Pierpaolo RAPUZZI 1, Marco A. BOLOGNA 2,*, Riccardo POLONI 3 1 Via Cialla 48, 33040 Prepotto (UD), Italy - [email protected] 2 Dipartimento di Scienze, Università Roma Tre - Viale G. Marconi 446, 00146 Roma, Italy - [email protected] 3 Via P. Togliatti 16, 41043 Formigine (MO), Italy - [email protected] * Corresponding author Abstract In this paper we describe a new species of Cerambycidae of the Genus Brachyta, Subgenus Fasciobrachyta, close to Brachyta balcanica (Hampe, 1870). The new species, very likely associated as larvae with roots of Paeonia officinalis, was collected in the Majella National Park (Abruzzo, Italy) and its phylogenetic position clearly reveals a Transadriatic origin. Key words: New species, Paeonia, Apennines, Biogeography, Conservation. urn:lsid:zoobank.org:pub:ED6463F5-E60A-4F35-A6DA-AD3F4A6C13D0 Introduction biogeographic relationships with the Balkan peninsula. Gridelli (1950) well defined the presence in these moun- The genus Brachyta Fairmaire, 1865 is represented in tains of species with trans-Adriatic distribution, sharing a the Italian Fauna by a single species, B. interrogationis disjunct distribution in the lands of both sides of Adriatic (Linné, 1758), a Euro-Asiatic element with discontinuous Sea originated by dispersion during old marine regressions range and distributed in the Alps (Sama & Rapuzzi 2011). and afterwards separated by vicariance events. Gridelli In May 2018, Bruno Petriccione photographed an un- (1950) distinguished two categories of species with trans- expected Brachyta on flowers of Paeonia officinalis Lin- Adriatic distribution: (a) those that have crossed the Adri- né, 1753 in the Majella National Park, Central Italy. -
その4. 大型植物化石 半田久美子・植村和彦 Part 4.Plant Macrofossils
そ の4. 大 型 植 物 化 石 半田久美子・植村和彦 Part 4. Plant Macrofossils Kumiko Hand a and Kazuhiko Uemura 化石リスト(List of Fossils): 162 p ~207 p 化石産地図(Map of Fossil Localities): 208 p ~218 p 化石産出地点番号索引(lndex of Fossil Localities): 219 p ~223 p 文献(Literatures): 224 p ~225 p 化石リスト 化石産出地点番号索引 産出化石 番号 Caldesia tertiaria 273 産出化石 番号 Catlicarpa sp. 256 Abies firma 236,245.254,263,266,272,273,274 Camellia protojaponica 99 Abies homolepis 245,262 Camellia sasanqua 273 Abies sp. 254,256,261,264 Carex rhynchophysa 244 Abies veitchii 263,272 Carex sp. 196,254,255,256 Acanthopanax sp. 266 Carpinus grandis 228 Acer diabolicum 272 Carpinus heigunensis 229 Acer ezoanum 273 Carpinus japonica 227 Acer miyabei 274 Carpinus miocenica 81,88,117,126,131,157 Acer mono 256 Carpinus sp. 26,34,39,52,115.143,179,209,217,218.219, Acer nordenskioeldi 54.211.212.215.216.254 220,221,222,223,237,256 Acer pictum 26,42 Carpinus subcordata 196,228 Acer prototrifidium 211,212,215,216 Carpinus subyedoensis 229 Acer rotundatum 229 Carya miocathayensis 72 Acer rubrum var. pyc 89 Caryophyllaceae gen. indet. 255 Acer rufinerve 254 Castanea crenata 54 Acer sp. 29,34,60,72,81,88,93,126,131,137,138,145, Castanea Kubinyi 28.30.34.38.50 172,177,179,180,181,185,188,194,228,229, Castanea miocrenata 65.81,93,122,138 243,256,272 Castanea miomollissima 56,59,65.74,79,81.87.90,93,95,104,107,118, Acer subpictum 54,75,76,86,93,115,132 124,126,131,132,157.159.162,164 Acer trilobatum 53 Castanea sp. -
May 15, 2016 Passing Peony and Iris Plants on from Generation to Generation Annette Meyer Heisdorffer Daviess County Extension Agent for Horticulture
May 15, 2016 Passing Peony and Iris Plants on from Generation to Generation Annette Meyer Heisdorffer Daviess County Extension Agent for Horticulture After lunch on Mother’s Day, my mom and I surveyed her garden, especially the peonies. We both agreed that I needed to propagate her peonies and plant them in my garden. These are special, because I remember them growing in my grandmother’s garden. Peonies are commonly passed down from generation to generation. My goal is to someday share them with my twins. Our discussion included the irises, which are another heritage plant. Both plants are blooming beautifully in May and are spectacular in the garden. Information about these two plants will be provided in this article. Peony (Paeonia officinalis, Paeonia lactiflora, and hybrids) is a herbaceous perennial, which means at the end of the growing season it will die back to the ground. However, the plant returns year after year. Peonies grow best in full sun and well-drained soil. There are tree peonies (Paeonia suffruticosa) which have a woody stem, but those are not as common and require different growing conditions. The tree peony will not be discussed here. According to Dr. Rick Durham, Extension Specialist for Consumer Horticulture, peonies can be found in landscapes across Kentucky. Peonies have a long life span and are commonly grown in the garden. When planting the root, make sure it is not too deep. The eyes or bud should be just below the surface of the soil. If it is planted too deeply, the plants won't bloom. -
Mcgrath State Beach Plants 2/14/2005 7:53 PM Vascular Plants of Mcgrath State Beach, Ventura County, California by David L
Vascular Plants of McGrath State Beach, Ventura County, California By David L. Magney Scientific Name Common Name Habit Family Abronia maritima Red Sand-verbena PH Nyctaginaceae Abronia umbellata Beach Sand-verbena PH Nyctaginaceae Allenrolfea occidentalis Iodinebush S Chenopodiaceae Amaranthus albus * Prostrate Pigweed AH Amaranthaceae Amblyopappus pusillus Dwarf Coastweed PH Asteraceae Ambrosia chamissonis Beach-bur S Asteraceae Ambrosia psilostachya Western Ragweed PH Asteraceae Amsinckia spectabilis var. spectabilis Seaside Fiddleneck AH Boraginaceae Anagallis arvensis * Scarlet Pimpernel AH Primulaceae Anemopsis californica Yerba Mansa PH Saururaceae Apium graveolens * Wild Celery PH Apiaceae Artemisia biennis Biennial Wormwood BH Asteraceae Artemisia californica California Sagebrush S Asteraceae Artemisia douglasiana Douglas' Sagewort PH Asteraceae Artemisia dracunculus Wormwood PH Asteraceae Artemisia tridentata ssp. tridentata Big Sagebrush S Asteraceae Arundo donax * Giant Reed PG Poaceae Aster subulatus var. ligulatus Annual Water Aster AH Asteraceae Astragalus pycnostachyus ssp. lanosissimus Ventura Marsh Milkvetch PH Fabaceae Atriplex californica California Saltbush PH Chenopodiaceae Atriplex lentiformis ssp. breweri Big Saltbush S Chenopodiaceae Atriplex patula ssp. hastata Arrowleaf Saltbush AH Chenopodiaceae Atriplex patula Spear Saltbush AH Chenopodiaceae Atriplex semibaccata Australian Saltbush PH Chenopodiaceae Atriplex triangularis Spearscale AH Chenopodiaceae Avena barbata * Slender Oat AG Poaceae Avena fatua * Wild -
Conserving Plant Diversity in Europe: Outcomes, Criticisms and Perspectives of the Habitats Directive Application in Italy
Biodivers Conserv DOI 10.1007/s10531-016-1244-1 ORIGINAL PAPER Conserving plant diversity in Europe: outcomes, criticisms and perspectives of the Habitats Directive application in Italy 1 2 3 4 G. Fenu • G. Bacchetta • V. Giacanelli • D. Gargano • 5 6 2 C. Montagnani • S. Orsenigo • D. Cogoni • 7 8 9 2 G. Rossi • F. Conti • A. Santangelo • M. S. Pinna • 8 10 11 1 F. Bartolucci • G. Domina • G. Oriolo • C. Blasi • 12 7 3 P. Genovesi • T. Abeli • S. Ercole Received: 13 June 2016 / Revised: 11 October 2016 / Accepted: 21 October 2016 Ó Springer Science+Business Media Dordrecht 2016 Abstract Habitat Directive is the core strategy of nature conservation in Europe aiming at halting biodiversity loss. In this study the results of the third Italian assessment regarding the conservation status (CS) of plants listed in the Habitat Directive (Flora of community interest—FCI) was presented. Data was collected from several sources related to plant distribution, population data, habitats and pressures. Following the official European procedure, all parameters were evaluated and combined to give the CS of each taxon in each biogeographical region of presence. A comparison between the recent Italian IUCN Communicated by Daniel Sanchez Mata. This article belongs to the Topical Collection: Biodiversity protection and reserves. & S. Orsenigo [email protected] 1 Dipartimento di Biologia Ambientale, ‘Sapienza’ Universita` di Roma, P.le A. Moro 5, 00185 Rome, Italy 2 Centro Conservazione Biodiversita` (CCB), Dipartimento di Scienze della Vita e dell’Ambiente, Universita` degli Studi di Cagliari, Viale S. Ignazio da Laconi 11-13, 09123 Cagliari, Italy 3 Dipartimento Difesa della Natura, Istituto Superiore per la Protezione e la Ricerca Ambientale, via Vitaliano Brancati 60, 00144 Rome, Italy 4 Dipartimento di Biologia, Ecologia e Scienze della Terra, Universita` della Calabria, Via P. -
Winter 2004.Pmd
The Lady-Slipper, 19:4 / Winter 2004 1 The Lady-Slipper Kentucky Native Plant Society Number 19:4 Winter 2004 A Message from the President: It’s Membership Winter is upon us. I hope everyone had some opportunity to experience the colors of Fall and now some of us will turn our attention to winter botany. While I was unable to Renewal Time! attend, I understand that our Fall meeting at Shakertown Kentucky Native Plant Society with Dr. Bill Bryant from Thomas More College as the guest EMBERSHIP ORM speaker was a great success. M F Our Native Plant Certification program was relatively successful this Fall. Plant taxonomy failed to meet Name(s) ____________________________________ because the NKU’s Community Education Bulletin was Address ____________________________________ mailed too late for anyone to sign up for the course. The woody plants course did, however, have a successful run. City, State, Zip ______________________________ This coming Spring, we will be offering Basic Plant Taxonomy, Plant Communities and Spring Wildflowers of KY County __________________________________ Central Kentucky. Tel.: (home) ______________________________ You will see in this issue that we are promoting “Chinquapin” the newsletter of the Southern Appalachian (work) ______________________________ Botanical Society (SABS). SABS is an organization E-mail _______________________________ largely made up of professional botanists and produces a quarterly scholarly journal. The newsletter “Chinquapin” o Add me to the e-mail list for time-critical native plant news has more of a general interest approach much like our o Include my contact info in any future KNPS Member Directory newsletter but on a regional scale. In this issue we have Membership Categories: provided subscription information on page 7. -
National List of Vascular Plant Species That Occur in Wetlands 1996
National List of Vascular Plant Species that Occur in Wetlands: 1996 National Summary Indicator by Region and Subregion Scientific Name/ North North Central South Inter- National Subregion Northeast Southeast Central Plains Plains Plains Southwest mountain Northwest California Alaska Caribbean Hawaii Indicator Range Abies amabilis (Dougl. ex Loud.) Dougl. ex Forbes FACU FACU UPL UPL,FACU Abies balsamea (L.) P. Mill. FAC FACW FAC,FACW Abies concolor (Gord. & Glend.) Lindl. ex Hildebr. NI NI NI NI NI UPL UPL Abies fraseri (Pursh) Poir. FACU FACU FACU Abies grandis (Dougl. ex D. Don) Lindl. FACU-* NI FACU-* Abies lasiocarpa (Hook.) Nutt. NI NI FACU+ FACU- FACU FAC UPL UPL,FAC Abies magnifica A. Murr. NI UPL NI FACU UPL,FACU Abildgaardia ovata (Burm. f.) Kral FACW+ FAC+ FAC+,FACW+ Abutilon theophrasti Medik. UPL FACU- FACU- UPL UPL UPL UPL UPL NI NI UPL,FACU- Acacia choriophylla Benth. FAC* FAC* Acacia farnesiana (L.) Willd. FACU NI NI* NI NI FACU Acacia greggii Gray UPL UPL FACU FACU UPL,FACU Acacia macracantha Humb. & Bonpl. ex Willd. NI FAC FAC Acacia minuta ssp. minuta (M.E. Jones) Beauchamp FACU FACU Acaena exigua Gray OBL OBL Acalypha bisetosa Bertol. ex Spreng. FACW FACW Acalypha virginica L. FACU- FACU- FAC- FACU- FACU- FACU* FACU-,FAC- Acalypha virginica var. rhomboidea (Raf.) Cooperrider FACU- FAC- FACU FACU- FACU- FACU* FACU-,FAC- Acanthocereus tetragonus (L.) Humm. FAC* NI NI FAC* Acanthomintha ilicifolia (Gray) Gray FAC* FAC* Acanthus ebracteatus Vahl OBL OBL Acer circinatum Pursh FAC- FAC NI FAC-,FAC Acer glabrum Torr. FAC FAC FAC FACU FACU* FAC FACU FACU*,FAC Acer grandidentatum Nutt. -
Original Research Article Effect of Fertilization on Yield and NPK
1 Original Research Article 2 Effect of fertilization on yield and NPK contents 3 in red ginger 4 65 7 ABSTRACT 8 Aim: The aim of the research was to evaluate the effect of NPK fertilization on red ginger yield and nutrient content of mature plants. Study design: 16 treatments were defined from N, P and K combinations, with three replications in complete random blocks. The experimental unit was one cluster with stems. Place and Duration of Study: The study was conducted from February 2012 to January 2013 on a 10-years-old commercial plantation. The plantation is located at 18° 17’ 43.49’’ NL and 93° 12’ 28.68’’ WL in Comalcalco, Tabasco, Mexico. Methodology: Each 15 days along a year were recorded variables for the cluster, and for commercial stems and flowers. Then one plant per experimental unit was separated into flower, leaf, stem and rhizome to analyze NPK. With the data, an analysis of variance, means comparison (Tukey, P ≤ 0.05), and Pearson correlation were performed. Results: With the doses of 216-00-00 kg NPK ha-1, the plants developed the largest stem (2.17 cm) and flower (6.33 cm) diameters and the highest dry commercial (28.89 g) and total (199.3 g) biomass. The highest fresh weight of the non-commercial biomass (383.2 g) was found in plants fertilized with 322-04-90, but this value was statistically equal to that obtained with the doses 216-00-00 (335.81 g). The NPK content found in red ginger leaf, stem, flower and rhizome satisfied the requirements established for P, but not for N and K. -
Red Palm Mite, Raoiella Indica Hirst (Arachnida: Acari: Tenuipalpidae)1 Marjorie A
EENY-397 Red Palm Mite, Raoiella indica Hirst (Arachnida: Acari: Tenuipalpidae)1 Marjorie A. Hoy, Jorge Peña, and Ru Nguyen2 Introduction Description and Life Cycle The red palm mite, Raoiella indica Hirst, a pest of several Mites in the family Tenuipalpidae are commonly called important ornamental and fruit-producing palm species, “false spider mites” and are all plant feeders. However, has invaded the Western Hemisphere and is in the process only a few species of tenuipalpids in a few genera are of of colonizing islands in the Caribbean, as well as other areas economic importance. The tenuipalpids have stylet-like on the mainland. mouthparts (a stylophore) similar to that of spider mites (Tetranychidae). The mouthparts are long, U-shaped, with Distribution whiplike chelicerae that are used for piercing plant tissues. Tenuipalpids feed by inserting their chelicerae into plant Until recently, the red palm mite was found in India, Egypt, tissue and removing the cell contents. These mites are small Israel, Mauritius, Reunion, Sudan, Iran, Oman, Pakistan, and flat and usually feed on the under surface of leaves. and the United Arab Emirates. However, in 2004, this pest They are slow moving and do not produce silk, as do many was detected in Martinique, Dominica, Guadeloupe, St. tetranychid (spider mite) species. Martin, Saint Lucia, Trinidad, and Tobago in the Caribbean. In November 2006, this pest was found in Puerto Rico. Adults: Females of Raoiella indica average 245 microns (0.01 inches) long and 182 microns (0.007 inches) wide, are In 2007, the red palm mite was discovered in Florida. As of oval and reddish in color.