Sunday, December 18, 2011

Mistletoe (Tapinanthus oleifolius)

Although we do not have snow in many part of South Africa, we do still have our own misletoe......
Mistletoe (Tapinanthus oleifolius)



Tapinanthus oleifolius is one of the best known of the evergreen half-parasitic shrubs growing on other trees and shrubs. The sticky seeds are deposited by birds on the bark of branches and stems where they germinate rapidly. The developing plant attaches itself to the host by means of a specialized root-like structure known as a haustorium.
Description



This secretive, plant has an epiphytic habit. It only discloses its presence by the fallen flowers and fruits found on the ground. It is often overlooked in trees as it blends in well with the leaves of the tree itself. It is best observed in winter when trees have few or no leaves. It is a tall shrub up to 1 m high with a smooth, grey to brownish and densely, but inconspicuously lenticellate stem. Leaves are mostly opposite and with a wide variation in size (Polhill & Wiens 1988). The petiole (leaf stalk) is 2-13 mm long to almost absent. The inflorescence consists of one to several flowered umbels ; the peduncle (inflorescence stalk) is 1-4 mm long and the pedicel (flower stalk) is 0.5-2.0 mm long.


The corolla-tube is 35-45 mm long, red with whitish spots, head of buds yellowish or greenish white, darkening, constricted 3-5 mm above and the lobes are 9-10 mm long. The stamens are red, anthers 2.5-3.0 mm long. The fruit is a berry, ellipsoid, 8-9 x 5-7 mm, smooth and red with a short, persistent red, hairless calyx.
Distribution and Habitat



The mistletoe is widespread in the drier parts of southern Africa throughout Namibia, Free State, Botswana, Gauteng, Mpumalanga, Limpopo and North-West provinces. It is found growing on numerous and diverse hosts such as species of Acacia, Aloe, Combretum, Diospyros, Maytenus, Melianthus, Rhus and Ziziphus. It is mostly adapted to a drier habitat.
Derivation of name and historical aspects



Tapinanthus oleifolius has elliptic leaves resembling those of the olive; this gave rise to the name of the species: olei -meaning of the olive, and - folius meaning leaved. The closed red flowers look like a bundle of vertical matches: red with a whitish tip. The common name of the plant is therefore vuurhoutjie or lighting match. The Afrikaans name voƫlent refers to its method of seed dispersal by birds. Another species is Tapinanthus rubromarginatus.
Ecology



The plant is a host to birds since it is one of the few plants that flower in winter. The flower is very sensitive to touching. It opens quickly and releases pollen, which lands on the head of the pollinators. It is very interesting how self-pollination is prevented: the style of the ovary moves to one side and ensures maximum exposure to the next pollinator to facilitate cross-pollination. The seeds stick to the bills and legs of birds and are then wiped onto the bark of other trees where seed germination takes place. The fact that it is one of the few plants to flower in winter makes it extremely valuable in the ecosystem as a provider of nectar.


Uses and cultural aspects


The plant is eaten by browsers, especially giraffes because it usually grows high up in trees. There is a superstition that the mixture of the plant with Capparis tomentosa and ground monkey nuts and fat can stop the rain if smeared onto a forked stick and pointed upwards. The sticky gum from the berries is used to catch birds; the gum is rolled on a grass culm at a water hole or near a nest.
Growing Tapinanthus oleifolius



It is known to grow well on branches of various tree species. The seed is smeared onto the branch and the lobes of the cotyledon joined by the radicle emerge rapidly in the presence of sunlight, and the parasite attaches itself to its host plant.
Information supplied by: http://www.plantzafrica.com/planttuv/tapinanoleif.htm

Friday, December 16, 2011

Moth and cocoon - Bristly Eggar (Gastroplakaeis meridionalis)

This has an interesting story……


While on one of my walks I noticed a cocoon on one of the branches of a bush. It was quite large, about 2.5cm (1 inch) if not more.

This must have been made by a very hairy caterpillar as you can see the hairs are stick into it.


I very carefully cut the branch and took it home with me hoping it would breed out and just as carefully placed it in the same position in one of my tanks as what I had found it.

After about 10 days had passed, I was beginning to think that whatever was in it had long since died but decided to leave it where it was.

After a another week, I came out one morning to find this huge moth at the bottom of the tank and many of the surfaces covered with eggs but unfortunately, the moth had died.

As she had not been out of the tank, I knew the eggs were not fertile and after another month, saw that they were shriveling up and going black. What a lovely moth it was though.
Once again John has come to my rescue and identified this moth for me as a Bristly eggar (Gastroplakaeis meridionalis) but the mystery is that they are only supposed to occur much further south from here. How I wish I could find someone to sponsor me in order to do this research full time!!

Thank you John!! It is greatly appreciated.

Wednesday, December 14, 2011

Tapering Darkling Beetle - Himatismus


Tapering Darkling Beetle (Himatismus) belong to the Tenebrionidae family.

They are found throughout South Africa and have long golden patches of hair on their body.  

They feed on various leaves and are often found under rocks or logs.

These are fairly small beetles, this one being about ½ an inch in length.

Monday, December 12, 2011

Bushveld Crossandra – Crossandra greenstockii - Acanthaceae

Bushveld Crossandra – Crossandra greenstockii - Acanthaceae

The following quotation is from Braam van Wyk’s book “A photographic Guide to Wild Flowers of South Africa”

An erect perennial herb up to 30cm high, sprouting annually from a woody rootstock; occurring in bushveld.

When the dry capsules are wetted by rain, they split explosively, ejecting the seed some distance from the plant.
 Upon wetting, flat hairs on the seed uncurl and become sticky, causing them to adhere to wet soil.

Saturday, December 10, 2011

Scale - family Coccidae

Can anyone help me with identification?

The first three picures are probably some kind of Wax Scale (Ceroplates) belonging to the Coccidae family. They were all found in Hoedspruit and on the same bushes but the last is more like a snail shell and I really do not have a clue as to their classification. Any help would be appreciated.



Thursday, December 8, 2011

Small-eyed Leaf Beetle (Monolepta bioculata)

The Small-eyed Leaf Beetle (Monolepta bioculata) belongs to the Chrysomelidae family and is only about 5mm (1/2 an inch) in length.
 They are distributed thoughout South Africa and easily recognised by the four yellow spots on the Elytra. These can be found on all types of flowers and are also capable of jumping.

Tuesday, December 6, 2011

Tortoise Beetles - Chrysomelidae (Leaf Beetle)

Tortoise Beetles belong to the Chrysomelidae (Leaf Beetle) family and is one species I have really been trying hard to find.

According to the books, these are all found along the coastal areas but once again it shows how outdated our distribution maps are as I found this in my garden which is hundreds of miles away from any sea.

All Tortoise Beetles are recognised by the pronotum and elytra which is almost transparent and also covers the head.
 They mostly feed on the leaves of solanaceous plants such as the potato and tomato as well as Morning Glory.


These beetles are very small, about 5-7mm in length.


Tortoise beetles overwinter as adults under bark, in leaf litter, or in other dry, protected places. In spring, beetles emerge and feed on weed hosts until suitable plants are available. Female adults deposit clusters of 15 to 30 eggs on the undersides of leaves. Larvae emerge 7 to 10 days later. After feeding for 2-1/2 to 3 weeks, larvae transform into pupae. About a week later, a new generation of beetles emerges. Several generations may occur each year in warmer climates.

Monday, December 5, 2011

Wild Senna (Italica)

Senna italica - Wild Senna – Caesalpiniaceae family

This is a small perennial plant growing to maybe 30-35cm in height and found in most grassland areas.

Due to a nectar substance, these plant attract many ants which may help to protect it from herbivorous insects.

Anthers have tiny apical pores; they must be vibrated at high frequency by bees to release the pollen.

Forms of cultivated Senna (dried leaves and pods) are commercially used as a purgative.
 The seeds are used in traditional medicine and make a passable coffee substitute and certain animals enjoy feasting on them and the pods.
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Sunday, December 4, 2011

Tropical Tent Web Spider (Cyrtophora citricola) family Araneidae

This female has made a huge web and in the middle are her egg sacks. She is about ½ and inch in length. The pictures are very difficult to get as they are all taken through the thick web which I could not coax her out of. The almost square abdomen and no-legs look made me think it looks like a beetle which I am sure it tries to imitate.







Friday, December 2, 2011

Why dung beetles roll dung

Are dung beetle necessary? What good does it do to roll a ball of dung and then bury it? This wonderful explination is from the San Diego Zoo.

Three varieties of dung beetle



Dung beetles do just what their name suggests: they use the manure, or dung, of other animals in some unique ways! These interesting insects fly around in search of manure deposits, or pats, from herbivore like cows and elephants. Dung beetles come in a variety of colors, from dull and glossy black to metallic green and red. Ancient Egyptians thought very highly of the dung beetle, also known as the scarab (from their taxonomic family name, Scarabaeidae). They believed it kept the Earth revolving like a giant ball of dung, linking the insect to Khepri, the Egyptian god of the rising sun.


Getting the job done


Scientists group dung beetles by the way the beetles make a living: rollers, tunnelers, and dwellers. Rollers form a bit of dung into a ball, roll it away, and bury it. The balls they make are either used by the female to lay her eggs in (called a brood ball) or as food for the adults to eat. Tunnellers land on a manure pat and simply dig down into the pat, burying a portion of the dung. Dwellers are content with staying on top of the dung pat to lay their eggs and raise the young.

 Not all dung is created equal

Most dung beetles use the manure of herbivores, which do not digest their food very well. Their dung contains half-digested grass and a smelly liquid. It is this liquid that the adult beetles feed on. Some of them have specialized mouthparts designed to suck out this nutritious soup, which is full of microorganisms that the beetles can digest. A few species feast on the dung of carnivores, while others skip the doo-doo and instead eat mushrooms, carrion, and decaying leaves and fruits.


Timing is everything for dung beetles. If the dung has been sitting long enough to dry out, the beetles can’t suck out the nutrition they need. One study in South Africa found that dung beetles laid more eggs during the rainy season when dung pats contain more moisture.


Proagoderus aureiceps
 A family on a roll

After a chance encounter at a dung pat, male and female rollers establish a pair bond. The male offers the female a giant-sized brood ball. If she accepts it, they roll it away together or the female rides on top of the ball. They must watch out, though, as other beetles may try to steal their ball!


The new pair finds a soft place to bury the ball before mating. The male then leaves to find more partners. The female stays to make another brood ball or two and lays a single egg in each. She then coats and seals the ball with a mixture of dung, saliva, and her own faeces and stows it underground. Some dung beetle mothers stay with the ball for two months, cleaning the larvae (called grubs) that hatch and removing their faeces.


At home in a tunnel

Tunnelers dive into a cow pile and tunnel straight down to set up the family home. Storing the dung underground keeps it fresh and protects the developing grubs from predators and parasites. The female sorts through dung and arranges it throughout the tunnel. The male’s job is to bring home the doo-doo. One or both of the parents stay with the larvae until they mature, which can take up to four months. This level of parental care is unusual in the insect world.

Sisyphus bornemisszanus, Spider Dung Beetle
 Room with a view  


Dwellers are on top of the world—or at least the dung heap. The female lays her eggs on top of manure piles, and the entire development from egg to adult takes place inside the dung pat. Dwellers are smaller than tunnelers and rollers, and they seem to like cow patties best for raising a family. The adults can be found in fresh, moist droppings, while the larvae are slowly growing in dung that is drying out.

Large Green Dung Beetle (Garreta nitens)
 Tools of the trade


Dung beetles have impressive “weapons,” some with a large hornlike structure on the head or thorax that males use for fighting. They have spurs on their back legs that help them roll the dung balls, and their strong front legs are good for fighting as well as digging. Most dung beetles are strong fliers, with long wings folded under hard covers (elytra), and can travel several miles in search of the perfect dung pat. With specialized antennae, they can catch a whiff of dung from the air.

Plum Dung Beetle (Anachalcos convexus)
 What the world needs now  


So what’s so great about dung beetles? They are mighty recyclers! By burying animal dung, the beetles loosen and nourish the soil and help control fly populations. The average domestic cow drops 10 to 12 dung pats per day, and each pat can produce up to 3,000 flies within two weeks. In parts of Texas, dung beetles bury about 80 percent of cattle dung. If they didn’t, the manure would harden, plants would die, and the pastureland would be a barren, smelly landscape filled with flies!


In Australia, the native forest-dwelling dung beetles could not keep up with the tons of manure deposited by cattle in the pastures, causing a tremendous increase in the fly population. African dung beetles, which do well in open fields, were brought to Australia to help with the growing piles of poo, and today the pastureland is doing well and the fly populations are under control.


We may question their lifestyle, but it’s certain that our world would be a much smellier place without the mighty dung beetle!

(The picture above with courtesy of Helmut Radmann)