Clerodendrum Thomsoniae (Glory-Bower, Yasmine Tomsone) a Twining Shruby Climer Or Vine

Total Page:16

File Type:pdf, Size:1020Kb

Clerodendrum Thomsoniae (Glory-Bower, Yasmine Tomsone) a Twining Shruby Climer Or Vine Clerodendrum thomsoniae (Glory-Bower, Yasmine tomsone) A twining shruby climer or vine. Leaves are ovate, glossy and deep green. Flowers are showy with white calyx and red corolla. The fruit is drupe. Very attractive vine which in warm location persist all year around. It needs support to trail on Landscape Information French Name: Clérodendron grimpant, Clérodendron de Thomson Pronounciation: cler-oh-DEN-drum TOM-son- ee-ee Plant Type: Vine Origin: West-Africa, Heat Zones: 9, 10, 11, 12 Hardiness Zones: 10, 11, 12 Uses: Indoor, Container Size/Shape Growth Rate: Moderate Tree Shape: Spreading Canopy Symmetry: Irregular Canopy Density: Open Canopy Texture: Medium Height at Maturity: 1.5 to 3 m Spread at Maturity: 1.5 to 3 meters Time to Ultimate Height: 5 to 10 Years Plant Image Clerodendrum thomsoniae (Glory-Bower, Yasmine tomsone) Botanical Description Foliage Leaf Arrangement: Alternate Leaf Venation: Pinnate Leaf Persistance: Evergreen Leaf Type: Simple Leaf Blade: 5 - 10 cm Leaf Shape: Ovate Leaf Margins: Entire Leaf Textures: Rough Leaf Scent: Unpleasant Color(changing season): Green Flower Flower Image Flower Showiness: True Flower Size Range: 7 - 10 Flower Type: Raceme Flower Sexuality: Monoecious (Bisexual) Flower Scent: Unpleasant Flower Color: White Seasons: Fall, Year Round Trunk Trunk Susceptibility to Breakage: Generally resists breakage Number of Trunks: Multi-Trunked Trunk Esthetic Values: Not Showy Fruit Fruit Showiness: False Fruit Size Range: 0 - 1.5 Seasons: Fall, Year Round Clerodendrum thomsoniae (Glory-Bower, Yasmine tomsone) Horticulture Management Tolerance Frost Tolerant: No Heat Tolerant: No Drought Tolerant: No Salt Tolerance: Moderate Requirements Soil Requirements: Loam, Sand Soil Ph Requirements: Alkaline Water Requirements: High, Moderate Light Requirements: Part Management Toxity: No Leaf Image Invasive Potential: No Susceptibility to Pests and Diseases: No Pruning Requirement: Needed, to develop a strong structure Fruit/ Leaves/ Flowers litter: No Surface Rooting: No Life Span: Less than 25 Edible Parts: None Plant Propagations: Seed, Cutting MORE IMAGES Other Image.
Recommended publications
  • Full Page Fax Print
    THE SPECIES Clerodendrum myricoides (Rotheca myricoides) Verbenaceae Indigenous STANDARDlTRADE NAME: Butterfly bush. COMMON NAMES: Boran: Mara sisa; Kamba: Kiteangwai, Muvweia; Kikuyu: Munjugu; Kipsigis: Chesamisiet, Obetiot; Luhya (Bukusu): Kumusilangokho; Luhya: Shisilangokho; Luo: Kurgweno, Okwergweno, Okwero, Okworo, Oseke, Sangla; Maasai: Olmakutukut; Marakwet: Chebobet, Chesagon; Samburu: Makutukuti; Tugen: Gobetie. DESCRIPTION: A small shrub up to 3.5 m, much branched from the base and often with some branches scrambling through other plants. The leaves and stem have a distinctive smell when crushed. LEA VES: Opposite or in whods, simple, ovate, margin toothed or, rarely, entire, up to 12 cm long but usually smaller, without hairs and almost stalkless. FLOWERS: Blue or purple, sweetly scented, conspicuous, irregular, 2 petals shaped like butterfly wings. FRUIT: Small rounded berry, black when ripe. ECOLOGY: Found from Sudan and Ethiopia south to Zimba­ bwe. A common shrub in forest edges, bushland, moun­ tain scrub, wooded grassland and in secondary vegeta­ tion, 1,500-2,400 m. Common in rocky places. Agroclimatic Zone Ill. Flowers may occur any time of the year. USES: Arrows, medicine (leaves, stem, roots), bee forage, ornamental, ceremonial. PROPAGATION: Propagation is easy. Cuttings and seedlings can be used, as well as root cuttings or root suckers produced from exposed or injured roots. REMARKS: There are close to two dozen Clerodendrum species in Kenya. C. myricoides is the commonest. Other common species are C. johnstonii (Kamba: Muteangwai; Kikuyu: Muringo; Luhya; Lusala; Marakwet: Jersegao; Meru: Kiankware), which can be a shrub or liana that climbs with the remains of leaf petioles. Flowers are white and the usually galled fruits orange to black.
    [Show full text]
  • MEDICINAL HERBS and FLOWERING PLANTS GARDEN in VIGNAN's CAMPUS Objectives: 1. to Grow and Maintain the Flowering and Medicinal
    MEDICINAL HERBS AND FLOWERING PLANTS GARDEN IN VIGNAN’S CAMPUS Objectives : 1. To grow and maintain the flowering and medicinal important herbs in the vicinity of Hanuman Statue to bring elegance to the campus. 2. To design compost units and develop organic manure for the cultivation of herbs. 3. To prepare herbal decoction, syrup and infusions using roots, leaves, stem of propagated medicinal herbs both standalone and combinatorial mixtures. 4. To train students in the identification and taxonomy of medicinal herbs and extraction procedure, to screen secondary metabolites. Rationale: As our lifestyle is now getting techno-savvy, we are moving away from nature. However, we cannot escape from nature for we are part of nature. Natural herbal flora withstood the vagaries of climatic changes through the ages of earth. In addition, they are endowed with safe compounds preferably positive health benefits and hence they are comparatively safer and eco- friendly. Traditionally there lots of herbs are in use to relieve humans and livestock from the ailments. Therefore, there is a need to promote them to save human lives. These herbal products are today are the symbol of safety in contrast to the synthetic drugs, that are regarded as unsafe to human beings and environment. Although herbs had been priced for their medicinal, flavoring and aromatic qualities for centuries, the synthetic products of the modern age surpassed their importance, for a while. It is primarily because of the marketing strategies adopted to promote synthetic products. It’s time to promote and propagate the various species of medicinal plants globally particularly among students and woman folk to appraise their value in healthcare.
    [Show full text]
  • Towards Resolving Lamiales Relationships
    Schäferhoff et al. BMC Evolutionary Biology 2010, 10:352 http://www.biomedcentral.com/1471-2148/10/352 RESEARCH ARTICLE Open Access Towards resolving Lamiales relationships: insights from rapidly evolving chloroplast sequences Bastian Schäferhoff1*, Andreas Fleischmann2, Eberhard Fischer3, Dirk C Albach4, Thomas Borsch5, Günther Heubl2, Kai F Müller1 Abstract Background: In the large angiosperm order Lamiales, a diverse array of highly specialized life strategies such as carnivory, parasitism, epiphytism, and desiccation tolerance occur, and some lineages possess drastically accelerated DNA substitutional rates or miniaturized genomes. However, understanding the evolution of these phenomena in the order, and clarifying borders of and relationships among lamialean families, has been hindered by largely unresolved trees in the past. Results: Our analysis of the rapidly evolving trnK/matK, trnL-F and rps16 chloroplast regions enabled us to infer more precise phylogenetic hypotheses for the Lamiales. Relationships among the nine first-branching families in the Lamiales tree are now resolved with very strong support. Subsequent to Plocospermataceae, a clade consisting of Carlemanniaceae plus Oleaceae branches, followed by Tetrachondraceae and a newly inferred clade composed of Gesneriaceae plus Calceolariaceae, which is also supported by morphological characters. Plantaginaceae (incl. Gratioleae) and Scrophulariaceae are well separated in the backbone grade; Lamiaceae and Verbenaceae appear in distant clades, while the recently described Linderniaceae are confirmed to be monophyletic and in an isolated position. Conclusions: Confidence about deep nodes of the Lamiales tree is an important step towards understanding the evolutionary diversification of a major clade of flowering plants. The degree of resolution obtained here now provides a first opportunity to discuss the evolution of morphological and biochemical traits in Lamiales.
    [Show full text]
  • Geographic Distribution of Ploidy Levels and Chloroplast Haplotypes in Japanese Clerodendrum Trichotomum S
    ISSN 1346-7565 Acta Phytotax. Geobot. 70 (2): 87–102 (2019) doi: 10.18942/apg.201823 Geographic Distribution of Ploidy Levels and Chloroplast Haplotypes in Japanese Clerodendrum trichotomum s. lat. (Lamiaceae) 1,* 2 3 4 5 Leiko Mizusawa , Naoko ishikawa , okihito YaNo , shiNji Fujii aNd Yuji isagi 1Faculty of Human Development and Culture, Fukushima University, 1 Kanayagawa, Fukushima 960-1296, Japan. * [email protected] (author for correspondence); 2Graduate School of Arts and Sciences, The University of Tokyo, 3-8-1 Komaba, Tokyo 153-8902, Japan; 3Faculty of Biosphere-Geosphere Science, Okayama University of Science, 1-1 Ridai-cho, Kita-ku, Okayama 700-0005, Japan; 4Faculty of Human Environments, University of Human Environments, 6-2 Kamisanbonmatsu, Motojuku-cho, Okazaki, Aichi 444-3505, Japan; 5Graduate School of Agriculture, Kyoto University, Kitashirakawa-oiwake-cho, Sakyo-ku, Kyoto 606-8502, Japan Clerodendrum trichotomum s. lat., under which many infraspecific taxa have been recognized, includes both tetraploid and diploid individuals, although chromosome numbers and geographic variation in ploi- dy levels have not been investigated in the Japanese archipelago. The geographic distribution of ploidy levels and chloroplast haplotypes of four Japanese taxa of C. trichotomum s. lat., based on chromosome counts, flow cytometry, and genotyping of five microsatellite loci is reported. It was determined that Japanese C. trichotomum var. trichotomum and var. yakusimense are tetraploid (2n = 104), while var. es- culentum and C. izuinsulare are diploid (2n = 52). The diploid taxa are distributed only on the southern edge of the Japanese archipelago, while tetraploid C. trichotomum is distributed widely. Such distribu- tion patterns may be formed by temperate forest shrinkage during, and tetraploid expansion after, glacial periods.
    [Show full text]
  • Efficacy of A-Rest™ Or Bonzi™ on Clerodendrum Thomsoniae As a Flowering Potted Plant Jeff S
    Special Research Report: #515: Production Technology Efficacy of A-Rest™ or Bonzi™ on Clerodendrum thomsoniae as a Flowering Potted Plant Jeff S. Kuehny and Annina Delaune, Deparment of Horticulture, Louisiana State University AgCenter, Baton Rouge, LA 70803-2120. ___________________________________________________________________________________ pairs were planted in May 2004 (latitude 30.43N) using one per 6-inch container filled with a mixture of Promix. All plants received FUNDING INDUSTRY SOLUTIONS THROUGH RESEARCH & ambient light levels in a EDUCATION greenhouse with temperature Phone: 703-838-5211 set points of 86° F day/73° F E-mail: [email protected] night. Plants were fertilized Website: www.endowment.org at ever irrigation with Figure 1. Effect of control, Peters™ 20-10-20 at the rate A-Rest™ (ancymidol) 0.5 of 200 ppm N. or1.0 mg a.i./pot drench on BACKGROUND C. thomsoniae. An application of A-Rest™ Two weeks after (ancymidol) or Bonzi™ transplanting, central leaders (paclobutrazol) has been were pinched. PGR recommended either as a treatments were applied after spray or a drench to control two weeks of vegetative growth of Clerodendrum growth. Measurements were thomsoniae. recorded 49 d after PGR applications. Recommendations suggest 6 to 50 ppm sprays that will RESULTS reduce plant growth by 40% A-Rest™ and Bonzi™ Figure 2. Effect of control, when compared to controls. reduced internode length of Bonzi™ (paclobutrazol) 0.5 They also increased C. thomsoniae (Table 1) and or 1.0 mg a.i./pot drench on flowering. The objectives of had minimal effect on days to C. thomsoniae. this study were to determine flower, number of laterals the efficacy of: a) A-Rest™ (average 3), or number of (ancymidol) at 100 or 200 leaves (average of 50).
    [Show full text]
  • Plant Identification Presentation
    Today’s Agenda ◦ History of Plant Taxonomy ◦ Plant Classification ◦ Scientific Names ◦ Leaf and Flower Characteristics ◦ Dichotomous Keys Plant Identification Heather Stoven What do you gain Looking at plants more closely from identifying plants? Why is it ◦ How do plants relate to each other? How are they important? grouped? • Common disease and insect problems • Cultural requirements • Plant habit • Propagation methods • Use for food and medicine Plant Classification Plant Classification Group each plant into a specific category Group each plant into a specific category Maple Spiraea Viburnum Crabapple Maple Spiraea Apple tree Ash Viburnum Crabapple Daylily Geranium Apple tree Ash Tomato Poinsettia Daylily Geranium TREES Oak Pepper Tomato Poinsettia Weeping willow Mint Oak Pepper Petunia Euonymus Weeping willow Mint Petunia Euonymus OS-Plant ID.ppt, page 1 Plant Classification Plant Classification Group each plant into a specific category Group each plant into a specific category Maple Spiraea Maple Spiraea Viburnum Crabapple Viburnum Crabapple Apple tree Ash Ornamental Apple tree Ash Edible Daylily Geranium Flowering Daylily Geranium Tomato Poinsettia Plants Tomato Poinsettia Crops Oak Pepper Oak Pepper Weeping willow Mint Weeping willow Mint Petunia Euonymus Petunia Euonymus Carolus Linnaeus Plant Taxonomy The Father of Taxonomy ◦ Identifying, classifying and assigning ◦ Swedish botanist scientific names to plants ◦ Developed binomial ◦ Historical botanists trace the start of nomenclature taxonomy to one of Aristotle’s students, Theophrastus (372-287 B.C.), but he didn’t ◦ Cataloged plants based on create a scientific system natural relationships—primarily flower structures (male and ◦ He relied on the common groupings of female sexual organs) folklore combined with growth: tree, shrub, undershrub or herb ◦ Published Species Naturae in ◦ Detected the process of germination and 1735 and Species Plantarum in realized the importance of climate and soil 1753 to plants ◦ Then, along came Linnaeus….
    [Show full text]
  • Clerodendrum Trichotomum C.P
    Clerodendrum trichotomum C.P. Thunberg Harlequin Glorybower (Clerodendron trichotomum) Other Common Names: Hardy Clerodendrum, Tree-of-Bad-Fortune, Tree-of-Good-Fortune. Family: Verbenaceae. Cold Hardiness: Useful as a woody shrub or small tree in USDA zones 8 and 9 (10), as a dieback shrub, subshrub, or herbaceous perennial in zone 7 or perhaps 6b. Foliage: Deciduous to semi-evergreen; opposite; simple; ovate to ovate-elliptic; blade medium to dark green in color; (3½O) 4O to 6O (9O) long by 2O to 5O wide; tip acuminate; base broadly cuneate, broadly rounded, to nearly truncate; margins nearly entire or with sparse shallow toothing; leaves softly tomentose, particularly beneath; palmately veined; petioles green to red in color and covered with a tomentose; petioles long, (1½O) 2O t 4O long; leaves emitting a strong scent when crushed ranging from malodorous to reminiscent of green peas (Pisum sativum L.); no fall color develops. Flower: Long peduncled axillary cymes of white perfect flowers on new growth; corolla tubular with five flaring individual narrow lobes opening to a 1O to 1½O diameter; calyx subtending the flower and becoming persistent; stamens long exerted; fragrant; very showy en masse. Fruit: Roundish drupe; aO to ½O in diameter; blue at maturity subtended by a persistent fleshy red calyx; attractive in fruit. Stem / Bark: Stems — new growth covered in a whitish tomentose; variably flattened at the nodes; medium thickness; green becoming brown; odiferous if scratched; Buds — small, 1/16O or less long; green to brownish covered in a white pubescence; Bark — brown. Habit: Growth habit is highly dependent upon the cultural environment; plants in warmer regions will develop into irregular upright oval to upright rounded large shrubs or small trees, 10' to 15' (20') tall, while plants in colder environments will be irregular suckering herbaceous perennials; plants are medium coarse to coarse in texture.
    [Show full text]
  • Further Disintegration and Redefinition of Clerodendrum (Lamiaceae): Implications for the Understanding of the Evolution of an Intriguing Breeding Strategy
    TAXON 59 (1) • February 2010: 125–133 Yuan & al. • Phylogeny of Clerodendrum and allied genera Further disintegration and redefinition of Clerodendrum (Lamiaceae): Implications for the understanding of the evolution of an intriguing breeding strategy Yao-Wu Yuan,1,2 David J. Mabberley,3,4 Dorothy A. Steane5 & Richard G. Olmstead1 1 Department of Biology, University of Washington, Box 355325, Seattle, Washington 98195-5325, U.S.A. 2 Current address: 4504 Miller Plant Sciences Building, Department of Plant Biology, University of Georgia, Athens, Georgia 30602, U.S.A. 3 University of Washington Botanic Gardens, College of Forest Resources, Box 354115, Seattle, Washington 98195-4115, U.S.A. 4 Current address: Royal Botanic Gardens, Kew, Richmond, Surrey TW9 3AB, U.K. 5 School of Plant Science, University of Tasmania, Private Bag 55, Hobart, Tasmania 7001, Australia Author for correspondence: Yao-Wu Yuan, [email protected] Abstract The genus Clerodendrum s.l. is polyphyletic. Although recent studies have resulted in C. subg. Cyclonema and C. sect. Konocalyx being removed to the resurrected genus Rotheca, and the unispecific genus Huxleya being sunk into Clerodendrum, it has been unclear whether Clerodendrum as currently circumscribed is monophyletic, particularly in relation to the American genera Aegiphila, Amasonia, and Tetraclea. This phylogenetic study employs four relatively fast-evolving chloroplast DNA re- gions, trnT-L, trnL-F, trnD-T, and trnS-fM, to clarify the generic boundaries of Clerodendrum and its relationship to allied genera. The results corroborate previous studies that there are three well-supported clades in the currently recognized Clerodendrum: an Asian clade, an African clade, and a Pantropical Coastal clade.
    [Show full text]
  • Clerodendrum Quadriloculare)
    Invasive Species Fact Sheet Pacific Islands Area Bronze-leaved clerodendrum (Clerodendrum quadriloculare) Scientific name & Code: Clerodendrum quadriloculare (Blanco) Merr., CLQU2 Synonyms – Ligustrum quadriloculare Blanco Family: Verbenaceae – Verbena Family Duration/Growth Habit: Perennial Shrub Common names: English – bronze-leaved clerodendrum, fireworks, Philippine glorybower, shooting star, starburst bush Origin: New Guinea, Philippines Description: An erect, glabrous, or nearly glabrous shrub or small tree 2-5 m high. Leaves paired, oblong, 15-20 cm long, apex acuminate, base rounded, the upper surface green, the lower surface usually dark-purple. Flowers in many-flowered terminal panicled cymes, in showy large clusters with a narrow pink tube to 7 cm long, ending in 5-lobed white oblong-elliptic lobes about 1.5 cm long. Propagation: Produces large amounts of viable seed and suckers profusely from the roots. Seeds mostly distributed by birds and other animals. Distribution: Identified in Hawaii, Guam, CNMI (Rota, Tinian), American Samoa, Chuuk, Kosrae, Pohnpei, Yap, Palau (main island group). Habitat/Ecology: Suckers and sprouts profusely. Mostly found along roads and disturbed areas. Forms dense thickets. Very shade tolerant. Requires specialist pollinators (very long corolla tube). Tolerates, or benefits from, mutilation, cultivation, or fire. Environmental impact: Can form monotypic thickets in forests (tolerates full shade). Management: Physical – Very difficult to control manually by pulling. Chemical – For young plants, triclopyr
    [Show full text]
  • Gardens and Stewardship
    GARDENS AND STEWARDSHIP Thaddeus Zagorski (Bachelor of Theology; Diploma of Education; Certificate 111 in Amenity Horticulture; Graduate Diploma in Environmental Studies with Honours) Submitted in fulfilment of the requirements for the degree of Doctor of Philosophy October 2007 School of Geography and Environmental Studies University of Tasmania STATEMENT OF AUTHENTICITY This thesis contains no material which has been accepted for any other degree or graduate diploma by the University of Tasmania or in any other tertiary institution and, to the best of my knowledge and belief, this thesis contains no copy or paraphrase of material previously published or written by other persons, except where due acknowledgement is made in the text of the thesis or in footnotes. Thaddeus Zagorski University of Tasmania Date: This thesis may be made available for loan or limited copying in accordance with the Australian Copyright Act of 1968. Thaddeus Zagorski University of Tasmania Date: ACKNOWLEDGEMENTS This thesis is not merely the achievement of a personal goal, but a culmination of a journey that started many, many years ago. As culmination it is also an impetus to continue to that journey. In achieving this personal goal many people, supervisors, friends, family and University colleagues have been instrumental in contributing to the final product. The initial motivation and inspiration for me to start this study was given by Professor Jamie Kirkpatrick, Dr. Elaine Stratford, and my friend Alison Howman. For that challenge I thank you. I am deeply indebted to my three supervisors Professor Jamie Kirkpatrick, Dr. Elaine Stratford and Dr. Aidan Davison. Each in their individual, concerted and special way guided me to this omega point.
    [Show full text]
  • BLEEDING HEART VINE-VARIGATED Clerodendrum X Thompsoniae ‘Variegata’
    BLEEDING HEART VINE-VARIGATED Clerodendrum X Thompsoniae ‘Variegata’ Characteristics • Vine • Sun: Part shade • Zone: 10 to 12 • Water: Medium • Height: 12.00 to 15.00 feet • Maintenance: Medium • Spread: 12.00 to 15.00 feet • Suggested Use: Annual • Bloom Time: Seasonal bloomer • Flower: Showy • Bloom Description: White calyces with • Leaf: Evergreen dark red corolla Culture Use a trellis to train this vine in the house. To grow glory-bower or bleeding heart vine indoors, a winter rest is required. This can be accomplished by moving the vine to a cooler location away from any heat source. A spot between 60 to 65F during the day and 5 to 10 degrees lower at night would be ideal. Some leaf drop is a normal response to entering winter dormancy. During this period, water just enough to keep the soil from drying out and withhold fertilizer. In late winter or early spring, prune the vine before new growth emerges. Because flower buds are produced on current season’s growth, pruning at this time will encourage the production of vigorous flowering shoots. Do not be afraid to prune severely. Thin out old, overcrowded shoots and any other far-reaching growth to keep the vine in bounds. After pruning, move the plant to a warm, brightly lit location or outdoors if temperatures have warmed sufficiently. Water when the soil surface feels dry. Noteworthy Characteristics Clerodendrum thomsoniae, commonly called bleeding heart vine, is a twining evergreen shrub or vine. It usually blooms during the warm months and provides showy white flowers with dark red corollas giving a striking contrast.
    [Show full text]
  • Echter's 2007 Indoor Plant List
    Echter's Indoor Plant List ABUTILON ASSORTED ABUTILON ASSORTED PATIO TREE ACALYPHA CHENILLE BASKET ACALYPHA CHENILLE HB ACALYPHA FIRE DRAGON ACALYPHA TRICOLOR ADENIUM OBESUM ADENIUM OBESUM DESERT ROSE AEONIUM BLACK ROSE AEONIUM VARIEGATED AESCHYNANTHUS LIPSTICK AFRICAN VIOLET AGAPANTHUS ALBUS AGAPANTHUS MIDNIGHT BLUE AGAPANTHUS PETER PAN AGAPANTHUS QUEEN ANNE AGAPANTHUS STORM CLOUD AGAPANTHUS STREAMLINE AGAPANTHUS SUMMER GOLD AGLAONEMA ABIDJAN AGLAONEMA ASSORTED AGLAONEMA BAY ASSORTED AGLAONEMA CECILIA AGLAONEMA COSMOS AGLAONEMA CRISTINA AGLAONEMA DIAMOND BAY AGLAONEMA EMERALD BAY AGLAONEMA EMERALD BEAUTY AGLAONEMA GOLDEN MADONNA AGLAONEMA HYBRID AGLAONEMA JEWEL OF INDIA AGLAONEMA JUBILEE AGLAONEMA MARIA CHRISTINE AGLAONEMA MARY LOU AGLAONEMA PAINTED PRINCESS Call for daily availability or to special order a particular variety not on this list. Echter's Indoor Plant List AGLAONEMA SAN REMO AGLAONEMA SILVER BAY AGLAONEMA SILVER MOON AGLAONEMA SILVER QUEEN AGLAONEMA SILVERADO AGLAONEMA STARS AGLAONEMA STRIPES ALLAMANDA BROWN BUD TRELLIS ALLAMANDA CHERRY JUBILEE TRELLIS ALLAMANDA YELLOW ALOCASIA BLACK VELVET ALOCASIA POLLY ALOE VERA ALSTROEMERIA ASSORTED ALYOGYNE PURPLE DELIGHT TREE AMARANTH HOPI RED DYE AMARYLLIS ASST. ANGELICA ASSORTED ANIGOZANTHUS KANGAROO PAW ANISE HYSSOP ANISODONTIA ELEGANT LADY ANNUAL ASSORTED ANNUAL RED HOT POT ANTHURIUM ASSORTED APHELANDRA WHITE CLOUD APHELANDRA ZEBRA APHELANDRA ZEBRA PLANT APPLE GOLDEN SENTINEL APPLE SCARLET SENTINEL ARABICA COFFEE PLANT ARABICA COFFEE TREE ARALIA ASSORTED ARALIA BALFOUR ARALIA BALFOURIANA ARALIA BIANCA Call for daily availability or to special order a particular variety not on this list. Echter's Indoor Plant List ARALIA BLACK ARALIA CASTOR ARALIA CELERY LEAF ARALIA CHICKEN GIZZARD ARALIA CHINENSIS ARALIA ELEGANTISSIMA ARALIA FABIAN ARALIA FALSE ARALIA LEMON ARALIA MING ARALIA MING CANE ARALIA ROBIE ARAUCARIA NORFOLK ISL.
    [Show full text]