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    Showing posts with label Organic Control. Show all posts
    Showing posts with label Organic Control. Show all posts

    Neem: A Tree for Solving Global Problems



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    Neem is a fascinating tree. On the one hand, it seems to be one of the most promising of all plants and may eventually benefit every person on the planet. Probably no other yields as many strange and varied products or has as many exploitable by-products. Indeed, as foreseen by some scientists, this plant may usher in a new era in pest control, provide millions with inexpensive medicines, cut down the rate of human population growth, and perhaps even reduce erosion, deforestation, and the excessive temperature of an overheated globe.


    Native to India and Burma, neem is a botanical cousin of mahogany. It is tall and spreading like an oak and bears masses of honey-scented white flowers like a locust. Its complex foliage resembles that of walnut or ash, and its swollen fruits look much like olives. It is seldom leafless, and the shade it imparts throughout the year is a major reason why it is prized in India. The Subcontinent contains an estimated 18 million neem trees, most of them lined along roadsides or clustered around markets or backyards to provide relief from the sun.
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    Under normal circumstances neem's seeds are viable for only a few weeks, but earlier this century people somehow managed to introduce this Indian tree to West Africa, where it has since grown well. They probably expected neem to be useful only as a source of shade and medicinals—especially for malaria—but in Ghana it has become the leading producer of firewood for the densely populated Accra Plains, and in countries from Somalia to Mauritania it is a leading candidate for helping halt the southward spread of the Sahara Desert.
    This century, people took neem seed to other parts of the world, where the tree has also performed well. Near Mecca, for example, a Saudi philanthropist planted a forest of 50,000 neems to shade and comfort the two million pilgrims who camp each year on the Plains of Arafat (a holy place where the prophet Muhammad is said to have bidden farewell to his followers). And in the last decade neem has been introduced into the Caribbean, where it is being used to help reforest several nations. Neem is already a major tree species in Haiti, for instance.
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    But neem is far more than a tough tree that grows vigorously in difficult sites. Among its many benefits, the one that is most unusual and immediately practical is the control of farm and household pests. Some entomologists now conclude that neem has such remarkable powers for controlling insects that it will usher in a new era in safe, natural pesticides.1 Extracts from its extremely bitter seeds and leaves may, in fact, be the ideal insecticides: they attack many pestiferous species; they seem to leave people, animals, and beneficial insects unharmed; they are biodegradable; and they appear unlikely to quickly lose their potency to a buildup of genetic resistance in the pests. All in all, neem seems likely to provide nontoxic and long-lived replacements for some of today's most suspect synthetic pesticides.
    That neem can foil certain insect pests is not news to Asians. For centuries, India's farmers have known that the trees withstand the periodic infestations of locusts. Indian scientists took up neem research as far back as the 1920s, but their work was little appreciated elsewhere until 1959 when a German entomologist witnessed a locust plague in the Sudan. During this onslaught of billions of winged marauders, Heinrich Schmutterer noticed that neem trees were the only green things left standing. On closer investigation, he saw that although the locusts settled on the trees in swarms, they always left without feeding. To find out why, he and his students have studied the components of neem ever since.
    Schmutterer's work (as well as a 1962 article by three Indian scientists showing that neem extracts applied to vegetable crops would repel locusts) spawned a growing amount of lively research. This, in turn, led to three international neem conferences, several neem workshops and symposia, a neem newsletter, and rising enthusiasm in the scientific community. By 1991, several hundred researchers in at least a dozen countries were studying various aspects of neem and its products.
    Like most plants, neem deploys internal chemical defenses to protect itself against leaf-chewing insects. Its chemical weapons are extraordinary, however. In tests over the last decade, entomologists have found that neem materials can affect more than 200 insect species as well as some mites, nematodes, fungi, bacteria, and even a few viruses. The tests have included several dozen serious farm and household pests—Mexican bean beetles, Colorado potato beetles, locusts, grasshoppers, tobacco budworms, and six species of cockroaches, for example. Success has also been reported on cotton and tobacco pests in India, Israel, and the United States; on cabbage pests in Togo, Dominican Republic, and Mauritius; on rice pests in the Philippines; and on coffee bugs in Kenya. And it is not just the living.
    Neem is a member of the mahogany family, Meliaceae. It is today known by the botanic name Azadirachta indica A. Juss. In the past, however, it has been known by several names, and some botanists formerly lumped it together with at least one of its relatives. The result is that the older literature is so confusing that it is sometimes impossible to determine just which species is being discussed.
    Neem trees are attractive broad-leaved evergreens that can grow up to 30 m tall and 2.5 m in girth. Their spreading branches form rounded crowns as much as 20 m across. They remain in leaf except during extreme drought, when the leaves may fall off. The short, usually straight trunk has a moderately thick, strongly furrowed bark. The roots penetrate the soil deeply, at least where the site permits, and, particularly when injured, they produce suckers. This suckering tends to be especially prolific in dry localities.
    Neem can take considerable abuse. For example, it easily withstands pollarding (repeated lopping at heights above about 1.5 m) and its topped trunk resprouts vigorously. It also freely coppices (repeated lopping at near-ground level). Regrowth from both pollarding and coppicing can be exceptionally fast because it is being served by a root system large enough to feed a full-grown tree.
    The small, white, bisexual flowers are borne in axillary clusters. They have a honey like scent and attract many bees. Neem honey is popular, and reportedly contains no trace of azadirachtin.
    Neem is thought to have originated in Assam and Burma (where it is common throughout the central dry zone and the Siwalik hills). However, the exact origin is uncertain: some say neem is native to the whole Indian subcontinent; others attribute it to dry forest areas throughout all of South and Southeast Asia, including Pakistan, Sri Lanka, Thailand, Malaysia, and Indonesia.
    It is in India that the tree is most widely used. It is grown from the southern tip of Kerala to the Himalayan hills, in tropical to subtropical regions, in semiarid to wet tropical regions, and from sea level to about 700 m elevation.
    As already noted, neem was introduced to Africa earlier this century (see sidebar, page 85). It is now well established in at least 30 countries, particularly those in the regions along the Sahara's southern fringe, where it has become an important provider of both fuel and lumber. Although widely naturalized, it has nowhere become a pest. Indeed, it seems rather well ''domesticated": it appears to thrive in villages and towns.
    Over the last century or so, the tree has also been established in Fiji, Mauritius, the Caribbean, and many countries of Central and South America.-In some cases it was probably introduced by indentured laborers, who remembered its value from their days of living in India's villages. In other cases it has been introduced by foresters. In the continental United States, small plantings are prospering in southern Florida, and exploratory plots have been established in southern California and Arizona.
    The tree is easily propagated—both sexually and vegetatively. It can be planted using seeds, seedlings, saplings, root suckers, or tissueculture. However, it is normally grown from seed, either planted directly on the site or transplanted as seedlings from a nursery.
    The seeds are fairly easy to prepare. The fruit drops from the trees by itself; the pulp, when wet, can be removed by rubbing against a coarse surface; and (after washing with water) the clean, white seeds are obtained. In certain nations—Togo and Senegal, for example—people leave the cleaning to the fruit bats and birds, who feed on the sweet pulp and then spit out the seeds under the trees.
    It is reputed that neem seeds are not viable for long. It is generally considered that after 2-6 months in storage they will no longer germinate. However, some recent observations of seeds that had been stored in France indicated that seeds without endocarp had an acceptable germinative capacity (42 percent) after more than 5 years.
    Source of Article: http://www.nasonline.org/         

    How to Get Rid of Aphids

    By Colleen Vanderlinden

    Insect Name:

    Aphids, also known as plant lice.

    Description:

    Aphids are roughly 1/10th of an inch long. The most common colors are green and black, though brown, reddish-brown, and gray aphids inhabit some parts of the country. They have two long, tubular appendages on the tail end of their body.

    Life Cycle:

    Aphid eggs overwinter attached to plants, then hatch as nymphs in the spring. These nymphs produce eggs asexually, and produce more nymphs, who grow to maturity in one week. In the fall, nymphs will lay eggs that contain some male aphids, who will mate with the nymphs to produce the eggs that will overwinter and start the next generation of aphids. Mature aphids lay three to six eggs per day.

    Signs of Aphid Infestation:

    Aphids suck the sap out of tender plant shoots and leaves. They suck the sap in through their beak-like mouths, while injecting leaves with their saliva. Drinking the sap can weaken the plant, and injecting their saliva can spread diseases from plant to plant. In addition, aphids excrete a sticky, clear substance called "honey dew" which commonly develops sooty mold. Sooty mold is unsightly and interferes with the plant's ability to photosynthesize.

    Effect on Garden Plants:

    Aphids can weaken a plant, stunt its growth, cause leaves to curl or wilt, and delay fruit or flower production.

    Organic Controls for Aphids:

    Sometimes, a strong blast of water from the hose will knock the aphids off of a plant and solve the problem. If you attract or purchase certain beneficials, such as lady bugs, lacewings, parasitic wasps, or damsel bugs, they will attack the aphids. Plants can also be sprayed with insecticidal soap, or a homemade tomato leaf or garlic spray to kill and repel aphids.

    Homemade Organic Aphid Spray


    By: Mary Lusk
    Aphids are pesky little critters who usually top a gardener's list of "most hated" insect pests. The tiny pearly green or milky white insects are almost impossible to avoid. They love just about all vegetables and ornamentals. Apple trees, roses and beans are especially susceptible to aphid attack, and symptoms of aphid infestation include curled leaves, deformed fruit and honeydew secretions on the plant. Fortunately, aphids can be controlled well with several cultural practices, and chemical controls are seldom necessary.
    Aphids      Copyright http://www.agrinfobank.com
    Identifying Aphids

    Once aphids are noticed, act quickly. They don't waste any time multiplying. If left unchecked, they can suck nutrients from plants and spread deadly plant viruses such as mosaic virus.
    Natural Solutions

    First, spray the plant with a stream of water to wash the aphids off. Then allow the plant to dry and begin a treatment. A very effective control for aphids is a simple soap spray. Mix 4 ounces (about 3 tablespoons) dishwashing liquid to one gallon of water. Spray the plant, being sure to get under the leaves as well as on the leaf surfaces. The soap spray fades away quickly, so you will need to repeat spraying often.
    Soap sprays usually result in aphid death in about an hour. After an hour, you can wash the plant with pure water if desired. Washing with water is most desirable with melons, cucumbers and African violets, which can suffer leaf burn if the soap spray stays on too long.
    Got too many hot peppers coming in? Hot pepper sprays are also an effective aphid control. Garlic also works. An easy anti-aphid cocktail combines 3 to 4 hot peppers, a few cloves of garlic and 1 quart of water. Mix it all in the blender, then spray on plants.
    Another good cultural practice for aphid control is interplanting your ornamentals with basil. Aphids are repelled by the smell of the basil. Also, plant angelica and morning glory to attract ladybugs, a natural predator of aphids. Ladybugs can be purchased in some garden supply stores or through organic gardening retailers. Start with about 100 ladybugs per 1,000 square feet of garden space. Release them in the evening so they can have dew to drink.
    The first defense against aphids is to maintain your own presence in the garden. Check daily for signs of their moving in. Aphids are tiny with pear-shaped bodies and two antennae from their forehead. Often, they are accompanied by ants, which like to feed on the honeydew that aphids secrete. You may notice the ants before you notice the aphids. Look under the leaves especially.

    Source of Article: http://wzus1.life123.com/

    Aphids--Organic Control


    Aphids are soft, pear-shaped, and very tiny (1/16 to 3/8 inch long). Two short tubes project backward from the tip of their abdomen. Aphids have long antennae. Some types of aphids have wings, which are transparent, longer than their body, and held like a roof over their back. Aphids may be green, pink, yellowish, black, or powdery gray. Nymphs resemble adults but are smaller and wingless.

    Aphid
    Host/Range
    Aphids feed on most fruit and vegetable plants, flowers, ornamentals, and shade trees. You'll find aphids throughout North America.
    Their life cycle
    Aphids reproduce like there's no tomorrow. Female aphids can reproduce without mating, giving birth continuously to live nymphs. Nymphs mature in 1 to 2 weeks and start producing offspring themselves.
    When days become shorter in the fall, both males and females are born. They mate, and then females lay eggs on stems or in bark crevices. The eggs overwinter and hatch the following spring. In very mild climates and in greenhouses, aphids may reproduce year-round.
    Damage
    Both adults and nymphs suck plant sap, which usually causes distorted leaves, buds, branch tips, and flowers. Severely infested leaves and flowers may drop. As they feed, aphids excrete a sweet, sticky honeydew onto the leaves below. This allows a sooty mold to grow, which, in addition to being ugly to look at, blocks light from leaves. Also, some aphids spread viruses as they feed.
    Organic damage control
    • Drench plants with strong sprays of water from a garden hose to kill aphids. (A hard, driving rainstorm will have the same effect.)
    • Keep your plants as healthy as possible, and spray dormant oil to control overwintering eggs on fruit trees.
    • Control ants that guard aphid colonies in trees from predators by placing sticky bands around the trunks.
    • Spray aphids with insecticidal soap, summer oil (on tolerant plants), and homemade garlic sprays.
    Source of Article: http://www.organicgardening.com/
     
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