Peach

Grafting

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For other uses, see Graft.
Grafted apple tree Malus sp., consolidated 'V' graft
Newly grafted cherry tree, tape has been used to bind the rootstock and scion at the graft and tar paint to protect the cut end of the scion from desiccation. The buds will burst within the next few weeks to produce leaves and shoots
A grafted tree showing two different color blossoms

Grafting is a method of asexual plant propagation widely used in agriculture and horticulture where the tissues of one plant are encouraged to fuse with those of another. It is most commonly used for the propagation of trees and shrubs grown commercially.

In most cases, one plant is selected for its roots, and this is called the stock or rootstock. The other plant is selected for its stems, leaves, flowers, or fruits and is called the scion. The scion contains the desired genes to be duplicated in future production by the stock/scion plant.

In stem grafting, a common grafting method, a shoot of a selected, desired plant cultivar is grafted onto the stock of another type. In another common form called budding, a dormant side bud is grafted on the stem of another stock plant, and when it has fused successfully, it is encouraged to grow by cutting out the stem above the new bud.

For successful grafting to take place, the vascular cambium tissues of the stock and scion plants must be placed in contact with each other. Both tissues must be kept alive until the graft has taken, usually a period of a few weeks. Successful grafting only requires that a vascular connection takes place between the two tissues. A physical weak point often still occurs at the graft, because the structural tissue of the two distinct plants, such as wood, may not fuse.

Contents

Advantages

An example of approach grafting by Axel Erlandson.

Techniques

Approach

Approach grafting or inarching is used to join together plants that are otherwise difficult to join. The plants are grown close together, and then joined so that each plant has roots below and growth above the point of union. Both scion and stock retain their respective parents that may or may not be removed after joining. Also used in pleaching. The graft can be successfully accomplished any time of year.

Budding

T budding

Grafting with a single eye or bud. Normally performed at the height of the growing season by inserting a dormant bud into a shallow slice under the rind of the tree. The bud is sealed from drying and bound in place. There are many styles of budding depending on the cutting and fitting methods, the most popular being shield budding.

Other budding styles include the inverted T, patch budding, double shield, flute budding and chip budding.

Cleft

The most common form of grafting is cleft grafting. The stock is simply split and the scion is inserted. It is best if the stock is 2–7 cm (0.79–2.8 in) in diameter and has 3-5 buds, and the cleft is around 3 cm (1.2 in) deep. is cut in a wedge shape and inserted into the tree with the cambium. The bare stock is covered with grafting compound, otherwise the cambium layer quickly dries and the graft fails.

Successful cleft graft after 2 years' growth

Whip

The whip graft is considered the most difficult to master, but has the highest rate of success. It is the most common graft used in top-dressing commercial fruit trees. It is limited to stock less than 12 in (1.3 cm) diameter, with the ideal diameter closer to 38 in (0.95 cm) . It offers the highest cambium overlap between the 2 species, increasing the rate of success. The elongated "Z" shape adds strength, removing the need for a companion rod in the first season (see illustration).

Successful whip graft

Successful whip graft needing additional pruning the following season

Stub

Stub grafting is a technique that requires less stock than cleft grafting, and retains the shape of a tree. Also scions are generally of 6-8 buds in this process.

An incision is made into the branch 1 cm (0.39 in) long, then the scion is wedged and forced into the branch. The scion should be at an angle of at most 35° to the parent tree so that the crotch remains strong. The graft is covered with grafting compound.

After the graft has taken, the branch is removed and treated a few cm above the graft, to be fully removed when the graft is strong.

Successful stub graft, healed

Awl

Awl grafting takes the least resources and the least time. It is best done by an experienced grafter, as it is possible to accidentally drive the tool too far into the stock, reducing the scion's chance of survival. Awl grafting can be done by using a screwdriver to make a slit in the bark, not penetrating the cambium layer completely. Then inset the wedged scion into the incision.

Veneer

Veneer grafting, or inlay grafting, is a method used for stocks larger than three centimeters in diameter. The scion is recommended to be about as thick as a pencil. Clefts are made of the same size as the scion on the side of the branch, not on top. The scion end is shaped as a wedge, inserted, and wrapped with tape to the scaffolding branches to give it more strength.

Natural grafting

A Husband and Wife tree - Natural grafting in blackthorn Prunus spinosa

Tree branches and more often roots of the same species will sometimes naturally graft, this is called inosculation. When roots make physical contact with each other they often grow together. A group of trees can share water and mineral nutrients via root grafts, which may be advantageous to weaker trees, and may also form a larger rootmass as an adaptation to promote fire resistance and regeneration as exemplified by the California Black Oak (Quercus kelloggii).

A problem with root grafts is that they allow transmission of certain pathogens, such as Dutch elm disease. Inosculation also sometimes occurs where two stems on the same tree, shrub or vine make contact with each other. This is common in plants such as strawberries and potatoes.

Graft hybrids

Occasionally, a so-called "graft hybrid" can occur where the tissues of the stock continue to grow within the scion. Such a plant can produce flowers and foliage typical of both plants as well as shoots intermediate between the two. The best-known example is probably +Laburnocytisus 'Adamii', a graft hybrid between laburnum and broom, which originated in a nursery near Paris, France in 1825. This small tree bears yellow flowers typical of Laburnum anagyroides, purple flowers typical of Chamaecytisus purpureus and curious coppery-pink flowers which show characteristics of both "parents".

Scientific uses

Grafting has been important in flowering research. Leaves or shoots from plants induced to flower can be grafted onto uninduced plants and transmit a floral stimulus that induces them to flower.

The transmission of plant viruses has been studied using grafting. Virus indexing involves grafting a symptom-less plant that is suspected of carrying a virus onto an indicator plant that is very susceptible to the virus.

Herbaceous grafting

Grafting is often done for non-woody and vegetable plants (tomato, cucumber, eggplant and watermelon). Tomato grafting is very popular in Asia and Europe, and is gaining popularity in the United States. The main advantage of grafting is for disease-resistant rootstocks. In Japan there is an automated process using grafting robots.

History

Grafting with detached scions has been practiced for thousands of years. It was in use by the Chinese before 2000 B.C and spread to the rest of Eurasia. The practice was almost commonplace in ancient Greece. Without the development of grafting, heterosexual fruit trees such as apples and cherries would never had been domesticated as their natural sexual reproductive method prevents useful genes from being passed on consistently.

References

  1. ^ Principles of Agricultural Botany, p 101, Alexander Nelson, Read Books, 2007, ISBN 1406746622
  2. ^ Garner, R.J. (1988) The Grafters Handbook P. 131 ISBN 0-304-32172-9
  3. ^ C.Michael Hogan (2008) Quercus kelloggii, Globaltwitcher, ed. nicklas Stromberg [1]
  4. ^ Lang, A., Chailakhyan, M.K. and Frolova, I.A. 1977. Promotion and inhibition of flower formation in a dayneutral plant in grafts with a short-day plant and a long-day plant. Proc Natl Acad Sci U S A. 74(6): 2412-2416. [2]
  5. ^ Core, J. (2005). Grafting watermelon onto squash or gourd rootstock makes firmer, healthier fruit.. Agricultural Research. p. 53. http://www.ars.usda.gov/is/AR/archive/jul05/fruit0705.htm. 
  6. ^ Garner, R.J. (1988) The Grafters Handbook P.46 ISBN 0-304-32172-9

External links

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