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PS22 Cormophyte

You are here: Home1 / Civic Museum of Archaeology and Natural Sciences “Federico Eusebio”, Alba2 / PS22 Cormophyte

Cormophyte are the most evolved vegetation, whose body (called “Cormo”) is made up of cells that form three organs: root, trunk and leaves. From the transformation of leaves originates flowers and fruits. Here are represented the main morphological characteristics of these organs and the related nomenclature.

ROOT

Usually it is an hypogeum organ, with positive geotropism; its functions are to anchor the plant in the ground, absorb water and oligoelements, and collect reserve substances.

ADVENTITIOUS ROOTS

This type of root originates from the trunk, or, sometimes, from the leaves. This phenomenon is used in some vegetative reproduction techniques (scion, layer (“margotta”), offshoot propagation) for the propagation of cultivated plants.

THE ROOT IN THE SOIL

Development. The whole root system development, especially in species which are adapted to arid climates, goes beyond that of the remainder.

Depth. It is not rare that in herbaceous plants the root reaches levels with a depth of meters (ex. 1 meter in alfalfa).

Length. Adding up all roots lengths of a plant we obtain astonishing values: – 500 m for wheat plant, 4 km for a pumpkin, -500 km in a 20 years-old birch.

ROOT TYPES

Taproot. From collar originates the main root which tend to enlarge: lateral rootlets remain little and short. This type is typical of dicotyledon.

Fibrous root. From the collar the main root divides into branching roots  which also branch out forming a complex and highly developed apparatus. This is typical of monocotyledon.

VEGETATIVE MOLTIPLICATION (or cloning)

The newborn plant originates through a detachment of vegetative components which can take root when put in contact with soil. This is widely used in cultivated plants because every example (clone) keeps characteristics and genetic makeup of the starting plant.

Scion. A vegetative part (trunk, branch, limb or leaf) in suitable temperature and humidity conditions is planted to take root.

Offshoot. In a moat dug near the offshoot propagation plant there is the extension of a branch, then there is the covering with soil. For a period the branch remains stuck to the mother plant, from which detach when become independent tanks to roots.

Layer (“margotta”). The branch which will multiply is wrapped into a “muff “ of soil contained in a specific receptacle (“portamargotta”). The coppice layer is widely used an it is obtained by covering with soil the entire stump.

TRUNK

It is usually an epigean organ with negative geotropism; its functions are the support of the plant and the nutrients transport. It also brings buds from which branches and leaves originate.

Trunk anatomy. Dicotyledon trunk transverse section (epidermis, cortical parenchyma, conducting bundles, collenchyma, parenchyma, marrow).

Monocotyledon trunk transverse section : corn (Zea mays) (epidermis, conducting bundles, parenchyma).

Trunk solidity.

Suffrutex. Branched at the basis, with woody branches at the bottom  and herbaceous branches at the top.

Frutex or bush. Similar to the above mentioned, but completely woody.

Tree. Branches at a certain height in limbs with a more and more smaller diameter (herbaceous trunks and woody trunks)

Trunk gait

Erect trunk, climbing trunk, crawling trunk, unstable trunk.

Trunk modifications

Stolon: horizontal crawling, growing at the soil surface

Spine: shorten and sharp branch

Root stock: horizontal underground, with squamiform leaves

Tuber: underground, strongly enlarged, brings bud in the so called “eyes”

Cladode: flattened with the aspect of a leaf, gives flowers and fruits

Tendril: transformed into a grasping organ

Bulb: shortened, around which lots of fleshy leaves are rounded up.

LEAF

This organ is inserted in the trunk in the correspondence of the knots, exchanges gas (H 2O, CO2, O2) with the atmosphere and through photosynthesis starts the production of organic compounds (needle-shaped, bifacial and isofacial leaves).

Organography

  • Leaf blade or lamina: photosynthesis
  • Stalk: transport and support
  • Stipule: protection

Petiolated leaf and sessile leaf

Duration

  • Seasonal, deciduous, short-lived: this type lives only one vegetative season, falls in the same period and renews every year.
  • Persistent: lives many years, doesn’t fall simultaneously and renews step by step

General shape

  • Orbicular, Circular
  • Lanceolate
  • Acicular, Needle-shaped
  • Cordate, Heart-shaped
  • Ovate
  • Palmate

Venation: veins disposition on the lamina

  • Palmate (palm veins)
  • Pinnate (quill-like arranged veins)
  • Parallel (axially arranged)

Base

  • Cordate
  • Cuneate
  • Hastate

Tip

  • Rounded
  • Obtuse
  • Acuminate
  • Mucronate

Edge

  • Entire
  • Lobate
  • Serrate
  • Spiny-crenate
  • Lobed-dentate
  • Dentate

Phyllotaxis: leaves disposition along the trunk in a manner that permits the maximum exposition of the upper face to sunbeams.

  • Alternate, one leaf per node
  • Opposite, two leaves per node
  • Whorled (Verticillate), three or more leaves per node

Compound leaves: if margin incisions reach the central vein the leaf is called compound and the lamina is divided in parts called leaflets.

  • Palmately-compound leaf
  • Pinnately-compound leaf
  • Odd pinnate, i.e. Pinnately-compound with a terminal leaflet
  • Trifoliate

Leaves adaptation: leaves can undergo transformation in their shape and/or function

  • Slender tendrils used to grasp
  • Spines hardened and stinging in succulent plants in order to reduce transpiration
  • Bracts, with many functions, involucres, reserve, attraction of pollinators

FRUIT

This organ derives from the ovary transformation after ovule fecundation. It consists of a seed-wessel that contains and protects seeds.

Fleshy fruits: when ripeness is complete epicarp is juicy; it is possible to notice, from the outside, the exocarp, the mesocarp and the endocarp.

Drupe: membranous and coloured exocarp (peel), fleshy and sugary mesocarp (pulp) and a lignified endocarp (stone) containing the seed.

Hesperidium: membranous exocarp, chlorate, rich in essential oils, whitish and spongy mesocarp, endocarp divided in juicy slices with seeds.

Pepo: hard and leather-like exocarp, mesocarp and endocarp with a lot of seeds.

Berry: membranous exocarp, fleshy mesocarp and endocarp surrounding many seeds.

Accessory fruits: derive from the enlargement of other parts of the flower besides the ovary

Syconium: the real fruits are internal achenes (“small seeds”) contained in the enlarged receptacle.

Pome: the real fruit is the “core”  that is enveloped into a fleshy and sugary receptacle.

Dehiscent dried fruits: when ripeness is complete seed-wessel (pericarp), highly dried, opens in order to allow seed dispersion

  • Capsule: is made up of many carpels, releases seed by lengthwise opening (valve dehiscence) or through pores (poricidial dehiscence)
  • Legume or pod: it is made up of a carpel with seeds attached to the main vein.
  • Silique: made up of two carpels with seeds arranged over a central septum (“Replo”)
  • Non-dehiscent dried fruits: the pericarp, dried and leather-like, wraps only one seed from which it doesn’t detach when ripeness is completed
  • Caryopsis: the fruit is developed with the seed and is not detectable. It is typical of Grass family
  • Nucule or nut: leather-like pericarp with only one seed
  • Achene: small dimension and woody, sometimes it is equipped with plumy (thistledown) and alary (ash-keys) expansions in order to promote wind dissemination or hooks good to stick to mammals fur

FLOWER

Spermatophyta reproductive system, originating from a trunk branch, the peduncle, over whose swollen extremity, the receptacle or thalamus, insert many diverse whorls called “antofilli”, modified floral leaves which become flower petals.

  • First whorl: a calyx made up of sepals (a)
  • Second whorl: a corolla made up of petals (b)
  • Third whorl: androecium made up of stamens, each one made up of filaments and anther (c)
  • Fourth whorl: gynoecium with pistil made up of ovary (e), style (f) and stigma (g)

 

  • Unisexual flowers (with only stamens or pistils)
  • ↑ Civic Museum of Archaeology and Natural Sciences “Federico Eusebio”, Alba
  • P1. The founder of the museum: Federico Eusebio
  • P2 GIOVANNI BATTISTA TRAVERSO. THE BIRTH OF THE PREHISTORICAL RESEARCHES IN ALBA
  • P3 GIUSEPPE GALLIZIO. THE PASSION TO SERVE THE SCIENCE
  • P4 THE DIDIUS VICARIUS’ STELE
  • P5 THE RIVERS TANARO AND CHERASCA. GEOLOGY AND GEO-MORPHOLOGY OF THE TERRITORY
  • P7 The stream Cherasca and its geological environment
  • P8 The river Tanaro and its geological environment
  • P9 The right bank of the river Tanaro from Neolithic to Iron age
  • P10 From the forests to the fields. The development of the Neolithic economy.
  • P11 The booming of the Neolithic economy.
  • PS0 Palm tree leaves fossil track (Sabal major Ung.)
  • P12 The quest for the Greenstone
  • P13 The floor of an Early Neolithic dwelling
  • P13B Living in Alba
  • P14 The ancestors’ house
  • P15 The tomb of the warrior
  • P16 The Bronze Age. The control of the territory and of the river communication routes
  • P17 The cremation necropolis in Piave Street
  • P18 The cults and the funerary rites
  • P19 The Intermediate Bronze Age tomb from Piave Road 199
  • P20 The funerals: the inhumation tomb of the Bronze Age
  • P21 Sailers and farmers in the Intermediate-Late Bronze Age
  • P22 Metallurgy of Bronze and itinerant artisans
  • P24 In the Bagienni’s territory
  • P25 Shepherds and mercenaries: the economy of the Late Iron Age
  • P26 The Roman sewers and the medieval tower
  • P27 The hypogean tomb
  • P27b The monumental marble gravestone
  • P28 The Peutinger’s Tabula
  • P29 The Romanization
  • P30 The territory of Alba
  • P31 The archaeological map of the territory
  • P32 General planimetry of the town superimposed upon the current historical city centre
  • P33 The urban layout plan of Alba Pompeia
  • P34 The brick stamps
  • P34B ACROLITO
  • P35 The forum and the public buildings
  • P36 The theatre
  • Black board 2, theatre room
  • Marble base
  • P36b The garnished cornice
  • P36c The rosette
  • P37 The cults
  • P38 The domus of the social theatre
  • P39 The houses
  • P40 The domus in Cerrato road
  • P41 The domus in Acqui Street
  • P42 The Hercules’myth
  • P43 Common artifacts
  • P44 The numismatic collection
  • P45 The roman coinage: repubblican and augustan series
  • P47 The canteen, the kitchen and the warehouse
  • P48 The amphorae and the millstones
  • EP2. BLACK BOARD 2, THEATRE ROOM. INSCRIPTIONS.
  • P49 The funerary rites
  • EP8. INSCRIPTIONS
  • P50 The necropolis
  • EP8bis. INSCRIPTIONS
  • P50B The gold ribbon
  • EP10bis. INSCRIPTIONS
  • P50C The cross tomb + tomb 1
  • EP10. INSCRIPTIONS
  • Black board 8b
  • EP11. INSCRIPTIONS
  • EP12. INSCRIPTIONS
  • P23 The sword from the river
  • EP13. INSCRIPTIONS
  • P46 The Roman currency: Imperial series
  • S10.INSCRIPTIONS ON MARBLE SLAB
  • P51 The funeral stelae
  • S17.
  • P52 The citizens of Alba Pompeia
  • S11.
  • PS1 General Paleontology
  • Underground Alba: a journey to the center of the city
  • PS2 Geological eras
  • PS3 “Langhe” and “Roero” Geology
  • PS4 a.Oligocene (from 36 to 23 M.A.) b. Miocene (from 23 to 5.3 mya)
  • PS5 Messiniamo (Upper Miocene, 7.2-5.3 mya)
  • PS6. Pliocene (from 5.3 to 1.8 mya)
  • PS7. Piedmont Pliocene fossil shells
  • PS8-9. Cuneo Alps minerals
  • PS10. Fluorescent minerals
  • PS11 Animals evolution
  • PS12 Invertebrates
  • PS13-16 Insects
  • PS17 Lower vertebrates
  • PS18 Birds
  • PS19 Mammals
  • PS20 Plants evolution
  • PS21 Fungi
  • PS22 Cormophyte
  • PS23 Alba territory trees
  • PS24 Alba territory vegetation

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