Saturday, May 9, 2009

First partial harvest

This is about a quarter of the crop out there. First try. Just imagine when I study more and get the science down.
My Husband is helping me keep the bliss of the garden alive today for I am a bit ill. It is such a thrill to have a harvest any day, but a day like today just helps me keep it going. To see the fruit (veggie in this case) of all my labor is a great thing.
ONION PLANTING


Variety Selection

The size of the onion bulb is dependent upon the number and size of the green leaves or tops at the time of bulb maturity. For each leaf there will be a ring of onion; the larger the leaf, the larger the ring will be. The onion will first form a top and then, depending on the onion variety and length of daylight, start to form the bulb. Onions are characterized by day length; "long-day" onion varieties will quit forming tops and begin to form bulbs when the daylength reaches 14 to 16 hours while "short-day" onions will start making bulbs much earlier in the year when there are only 10 to 12 hours of daylight. A general rule of them is that "long-day" onions do better in northern states (north of 36th parallel) while "short-day" onions do better in states south of that line. See the onion information resource page for more detailed variety descriptions and photos.


Onions From Seed

Mid to late October is the best time to plant seed of the super sweet, short-to-intermediate daylength onion types in Texas zones III - V (USDA Zones 8 and 9). Seeds can be sown directly into the garden, covered with one-fourth inch of soil and should sprout within 7- 10 days. If planted thickly, plants can be pulled and utilized as green onions or scallions for salads or fresh eating in 8-10 weeks. However, most gardeners want to grow an onion bulb as large as a basketball. To do this, the onion plants must be thinned by next February until they are at least 2-3 inches apart to insure adequate bulb expansion. The removed plants can be used for scallions or for transplanting into another area of the garden so that these too will have adequate space in which to enlarge into large bulbs.

Fertilization of onion plants is vital to success. Texas A&M research findings indicate that onion growth and yield can be greatly enhanced by banding phosphorus 2-3 inches below seed at planting time. This phosphorus acts as a starter solution which invigorates the growth of young seedlings. Banding phosphorus, such as super phosphate (0-20-0), 2-3 inches below the seed involves making a trench 3 inches deep, distributing one-half cup of super phosphate per 10 row feet, covering the phosphate with soil, sowing seed and covering lightly with one-half inch or less of soil. Once established, onion plants should receive additional amounts of fertilizer (21-0-0 - Ammonium sulfate or Ammonium nitrate) as a side-dress application every month.

Gardeners who tend to procrastinate should be warned that planting later than October could mean failure. Failure in onion production comes in two forms - - complete annihilation of the young seedlings during a cold winter or an abundance of spring onion flowers which decrease bulb size, weight and storage ability. Onion plants which are small and rapidly growing when the cold temperatures of winter arrive will probably not survive. Yet, if you plant earlier and the stem of onion plants are larger than a pencil when exposed to cold temperatures, the onion will initiate and produce a flower during the following spring. This flowering is termed bolting. Bolting requires low temperatures. Most rapid bolting is caused by temperatures of 40-45 degrees F. or below. Fall seeded crops are susceptible to bolting the following spring if warm fall temperatures, allowing excessive growth, are followed by low winter temperatures and slowed growth. Many gardeners believe that early removal of the onion flower stalk will cause onion bulb enlargement but this has not proven to be the case. Flowering causes a decrease in bulb size as well as a central flower stalk which enhances decay during storage. This is exactly what will happen to those who are planting onion transplants or sets in October or November with the hope of large onions next spring. The onion bulbs which produce a flower stalk may be large but they will be light-weight (one-half the weight of a comparable size, non-flowered onion bulb) and prone to decay. Obviously, what you see is not always what you get! The best way to insure success is to either plant the onion seed from October 1 until November 15 or plant transplants from January through February in Texas Zones III - V (USDA Zones 8 and 9).


Care Of Transplant Instructions

When you receive live plants, they should be planted as soon as possible. Should conditions exist that make you unable to plant these plants right away, remove the onion plants from the box and spread them out in a cool, dry area. The roots and tops may begin to dry out but do not be alarmed, the onion is a member of the lily family and as such will live for approximately three weeks off the bulb. The first thing that the onion will do after planting will be to shoot new roots.

Preparing the Soil

Onions are best grown on raised beds at least four inches high and 20 inches wide. Onion growth and yield can be greatly enhanced by banding a fertilizer rich in phosphorous (10-20-10) 2 to 3 inches below transplants at planting time. Make a trench in the top of the bed fours inches deep, distribute one-half cup of the fertilizer per 10 linear feet of row, cover the fertilizer with two inches of soil and plant the transplants.


Planting

Set plants out approximately one inch deep with a four inch spacing. On the raised bed, set two rows on each bed, four inches in from the side of the row. Should you want to harvest some of the onions during the growing season as green onions, you may plant the plants as close as two inches apart. Pull every other one, prior to them beginning to bulb, leaving some for larger onions. Transplants should be set out 4 to 6 weeks prior to the date of the last average spring freeze.


Fertilization and Growing Tips

Onions require a high source of nitrogen. A nitrogen-based fertilizer (ammonium sulfate or ammonium nitrate) should be applied at the rate of one cup per twenty feet of row. The first application should be about three weeks after planting and then continue with applications every 2 to 3 weeks. Once the neck starts feeling soft do not apply any more fertilizer. This should occur approximately 4 weeks prior to harvest. Always water immediately after feeding and maintain moisture during the growing season. The closer to harvest the more water the onion will require. For weed control a pre-emergent herbicide (DACTHAL) should be applied prior to planting. This will provide weed control for approximately one month after planting. Other products such as GOAL and BUCTRIL, can assist in weed control during the growing season. Always follow label instructions. For organic gardeners a rich compost high in Nitrogen should be incorporated into the soil. Unfortunately, there is not any product available to assist in weed control so the only method will be cultivation. While cultivating be careful not to damage the onion bulb. As the onion begins to bulb the soil around the bulb should be loose so the onion is free to expand. Do not move dirt on top of the onion since this will prevent the onion from forming its natural bulb. Start early with cultivation practices.


Disease and Insect Control

The two major diseases that will affect onions are blight and purple blotch. Should the leaves turn pale-green, then yellow, blight has probably affected the plant. Purple blotch causes purple lesions on the leaves. Heavy dew and foggy weather favor their rapid spread, and when prolonged rainy spells occur in warm weather, these diseases can be very destructive. The best cure is prevention: use only well-drained soil, run the rows in the same direction as prevailing wind and avoid windbreaks or other protection. Should conditions persist, a spray with a multipurpose fungicide such as daconil can be applied on a 7 to 10 day schedule.

The insect that causes the most damage is the onion thrip. They feed by rasping the surface of the leaves and sucking the liberated juices. They are light-brown in color and are approximately 1mm long. The most available insecticides are Malathion or Diazinon, or an insecticidal soap or biological insecticide may be used. Do not apply any insecticide within seven days of harvest and always follow label instructions.

Flowering -- Abnormal For Onions; Normal For Garlic

Most folks want to grow onion bulbs NOT onion flowers! What causes bulb onions to send up flower stalks? Flowering of onions can be caused by several things but usually the most prevalent is temperature fluctuation. An onion is classed as a biennial which means it normally takes 2 years to go from seed to seed. Temperature is the controlling or triggering factor in this process. If an onion plant is exposed to alternating cold and warm temperatures resulting in the onion plant going dormant, resuming growth, going dormant and then resuming growth again, the onion bulbs prematurely flower or bolt. The onion is deceived into believing it has completed two growth cycles or years of growth in its biennial life cycle so it finalizes the cycle by blooming. Flowering can be controlled by planting the right variety at the right time. Use only transplants that are pencil-sized or smaller in diameter when planting in early spring or always plant seed, NEVER transplants, in early fall in Texas Zones III - V (USDA Zones 8 and 9).

DON'T plant garlic in the spring! Bulb formation in garlic occurs in response to the lengthening days of spring, and bulbing and maturity are considerably hastened if temperatures are high. In addition to these requirements, the dormant cloves (divisions of the large bulb) or young growing plants must be exposed to cold temperatures between 32 and 50 degrees F. for one or two months in order to initiate bulbing. Plants that are never exposed to temperatures below 65 degrees F. may fail to form bulbs. With fall plantings, the cold treatment is accomplished quite naturally throughout the winter, but a spring planting spells disaster in Texas Zones III - V (USDA Zones 8 and 9)

What To Do About Flowering?

What can one do if flower stalks appear? Should the flower stalks be removed from the onion plants? Suit yourself but once the onion plant has bolted, or sent up a flower stalk, there is nothing you can do to eliminate this problem. The onion bulbs will be edible but smaller. Use these onions as soon as possible because the green flower stalk which emerges through the center of the bulb will make storage almost impossible. Seedstalk formation (bolting) of garlic is not induced by exposure to fluctuating temperatures, as is the case with onions, which means that a wide range of fall planting dates is permissible for this crop. Seedstalk formation is also not damaging to garlic since the cloves are arranged around the seedstalk and will be removed from the dried seedstalk. Conversely, the edible onion bulb is penetrated by the seedstalk which is hard when the bulb is harvested, but prematurely decays causing loss of the entire bulb in storage. When the tops become yellowish and partly dry, garlic is ready for harvest.

Harvesting And Storage

Onions are fully mature when their tops have fallen over. After pulling from the ground allow the onion to dry, clip the roots and cut the tops back to one inch. The key to preserving onions and to prevent bruising is to keep them cool, dry and separated. In the refrigerator, wrapped separately in foil, onions can be preserved for as long as a year. The best way to store onions is in a mesh bag or nylon stocking. Place an onion in the bag and tie a knot or put a plastic tie between the onions and continue until the stocking is full. Loop the stocking over a rafter or nail in a cool dry building and when an onion is desired, simply clip off the bottom onion with a pair of scissors or remove the plastic tie. Another suggestion is to spread the onions out on a screen which will allow adequate ventilation, but remember to keep them from touching each other. As a general rule, the sweeter the onion, the higher the water content, and therefore the less shelf life. A more pungent onion will store longer so eat the sweet varieties first and save the more pungent onions for storage.

Monday, May 4, 2009

Sunday, May 3, 2009

Saving Heirloom sseed


Because of a lack of Nitrogen...live and learn and pass it on...
The Copenhagen Cabbage went to seed.
Waste not want not.
It is an heirloom variety.

I trimmed off the seed pods and set it to dry in a PAPER bag.
Labeled it as well.
I had to wash off some aphids...
The chickens got the scrap of it and loved it.

Saturday, May 2, 2009

garden tools

Hand Wand...guards against blasting the plants...long handle not to much force...
Watering can...Basic tool plastic is light weight. Water suluable plant food. Applicator to sprinkle.
Soaked Hose, 50 ft. 5/8 diameter. Can be covered over with mulch. Conserves water and prevents plant death by that drying out between watering.
Hose get a good connector, they can be repaired . Old hoses are great for staking plants. Look for a hose that does not kink up too easily.
Protect from cold...Check how cold hardy your plants are for your zone. Cover all the way to the ground to make radiant heat, not just a bonnet.
Using Covers to Protect a Garden. All the way to the ground use old towels, sheets. Tomato, peppers, egg plants hate cold! Flowers. Keeps frost off.
Using Light Bulbs in Garden...under the covers keeps it 3-4 degrees higher for your favorite plant.
Gloves: Rubber helps keep safe from chemical/fertilizers Keep your skin away form the products. Oils peppers in the sprays... Cloth...Protect from sharp things in the soil. Peat moss Gripped rubber tips (best of both) out perform leather, great to have while using shovels and other tools.
Hydretain for water retention
Stakes...bamboo, cypress tie to the stake and the plant, trees fruiting trees...2-3 feet into soil. Do not use wire to tie use a soft yarn or velcro type tie.
Bow Saws to cut large tree limbs 3-4 inch limb, great for citris trees.
Hand Saw 7" cutting area, sharp and easy to work with, folds up. Cut off dead wood before it dies back further.
Hand Clippers used most to cut out dead mattereal, cutoff dead mattereals on tomato fast. Not a smushed type edge. Get the kind like scissors. Cut back to the green and alive part. Do not leave the dead at all.
Hand Sprayer to apply Pesticide/ fugiside or organic neem oils, bactcilus (good bacteria), pepper oils. Mark each sprayer or Wash it at least three times. Mark them if they are used for poision never store chemicals in it for it will gum up your sprayer. Sudsy Amoinia to wash it out well.
Hand Spread...for seeding lawn, light covering of fertalizer. Holds around 5 pounds at a time. Good for small areas. Orgainic based for garden.
Garden Trowels...good quality and stron so they do not need to be replaced, nice if it has a
hadle. some have a depth finders. GOOD TOOLS!
Hand cultivators...Three prongs to work arond the beds , use to pull out weeds by torcue...Loosen up the soil for good oxigynation and water.
Large (poney) shovel...Fibergass handle is nice, strong and sharp use a file to sharpen the edges. A rubbery handl is nice.
Knee matts...easyier on knees,back and getting down and up.
Rakes...clear out leaves, small hand rake that can also attatch to long handle...(in my dreams)
Hoe...Basic flat blade and a fork on the other side. Weeds cultivator...loosen soil.
Large Metal Rakes...must have. Keep the metal painted every few years. gathering leaves For petmoss and such.
Hanging Baskets ...for ease of harvest and to raise the aspects to eye level.

soil preperations for gardening

Perlite is exploded at 1800 degrees, it is steral lets air flow good for root starter.
sterel
potting mix for starting cuttings and seedlings.
gardening sand, washed builder sand drainage, not too much or it can dry out to fast
peat moss, for moisture Canadian, Michigan, Florida holds the water and nutrients holds water 25% of the garden soil
Back yard soil leaves and debris good ph add amendment vermiculite, perlite and sand compost
Cow manure soil improvement, staral "black Kow" is a high quality that has 1/2 of npk in it holds water and organic mater. 25lbs to 100 feet of garden
Using a PH Scale Acid/alkalinity sweetness or sourness of the soil...dolomite for to acid...alkaline add soil acidify 5.5 to 6.6 for the garden check every 6 months
Wood chips, pine, redwood, cypress, recycled...hold moisture and nutrients...like a mulch.
plant food 16 essential elements (hidden hunger) use a complete plant food.

Major nutrients

MAJOR NUTRIENTS

Most gardeners are familiar with the “N-P-K” in commercial fertilizers: nitrogen (N), phosphorus (P) and potassium (K). But these three represent only half the major nutrients a plant requires in relatively large amounts. The other major nutrients are sulfur, calcium and magnesium. Consistent use of Perfect Balance fertilizer will result in the proper calcium/magnesium ratio for your soil, as well as provide the necessary nutrients which are not in balance.

MINOR NUTRIENTS

Minor nutrients are not really minor, or unimportant. They are essential – vital to plant growth but needed in lesser amounts than major nutrients. Essential minor nutrients are the secret weapons of successful gardeners and farmers. In spite of their critical importance, most fertilizers do not include them.

Plants, like people, can suffer from too much of a good thing. In humans, vitamin D, necessary for health, can cause disease or even death when too much is consumed. Similarly, too much boron can be toxic to a plant.

















Calcium

Calcium is needed for cell division and plant growth. Its buffering characteristics are critical to soil balance and largely determine the availability of other nutrients. Lack of calcium results in yellow or pale leaves, and causes blossom-end rot on tomatoes and peppers. A deficiency in beans causes yellow leaves with curling margins, stunted plants, and blackened, dying shoot tips. Deficiency causes brown-tipped leaves on cabbage, forked roots in beets, and unusually small potatoes.



Magnesium

Magnesium (often confused with manganese, a minor nutrient) is an essential element of chlorophyll, and a deficiency is generally shown in yellowing leaves. Carrots may be poor in flavor and color. Insufficiency also affects potatoes and peas.

When calcium and magnesium levels are not in balance, the availability of many other nutrients is affected adversely. Minor nutrients produce best results when the calcium/magnesium ratio is close to 68:12.



Phosphorus

Phosphorus is required for cell growth and plant reproduction, and it is crucial for flower and fruit formation. Too little phosphorus can result in stunting, but too much can cause bitter flavor in crops. Symptoms of phosphorus deficiency are often mistakenly attributed to virus disease.




















Potassium

Potassium activates plant enzymes and keeps cell fluid movement in balance. Potassium regulates water loss through stomata (tiny pores) on the leaves, and it is necessary for root formation and food storage in the plant. Severe deficiencies in vegetables can appear as deformed, stunted or yellow leaves, weak stems and premature fruit drop.

Potassium deficiency in young tomato plants results in deformed stems and leaves, browning in older leaves; ripe fruit falls off vines.









Iron

Iron is essential for plants to make chlorophyll, plays a role in the synthesis of plant proteins, and helps plants fix nitrogen. A deficiency causes young yellow leaves with green veins, symptoms which are often confused with nitrogen deficiency. Iron deficiency often appears in soils with pH above 6.8; at neutral or high pH, the iron that may be in the soil is not readily available to plants.



Zinc

Zinc aids in moisture absorption and in the production of chlorophyll. A deficiency is indicated in tomatoes by small, narrow leaves with black spots in yellow areas; plants may be stunted.







Boron

Boron is the most widely deficient minor nutrient in vegetable crop soils. It is needed in protein synthesis, and increases flower set, crop yield and quality. In combination with adequate phosphorus, boron increases pollination, fruit set and seed development.

Boron deficiency causes growth reduction at the growing tips. Plants have small, crinkled, deformed leaves, with large areas of discoloration. Boron deficiency is often caused by application of too much lime. While boron is essential for root growth and fruit development, it can become toxic if over applied. Always test the soil and apply only the recommended amount.





















Copper

Most soils are deficient in copper. Some gardeners believe that copper is toxic to plants and should be kept out of the garden. In fact, too much copper can be toxic to roots and leaves, but a small amount is a necessary component of plant growth. Copper should not be applied before having the soil professionally tested.

Copper increases flavor and sugar content of vegetables and fruits. It increases color intensity and yield of carrots, spinach, onions, corn and cabbage.

















Soils with high organic matter form a tight hold on copper and can cause copper deficiencies in the resident plants. As a result, soils which are high in organic content are more likely to respond to copper application.

An early sign of copper deficiency is the uniform, light green color of young leaves. Deficient plants produce small or yellowing leaves and may be particularly susceptible to airborne fungal diseases.



Sulfur

Sulfur increases the protein content of crops and stimulates more rapid root development during early periods of growth. A lack of adequate sulfur is almost always a limiting factor in garden soils. Visible symptoms include a uniform yellowing and mild upward curling of leaves on deficient plants. (Nitrogen deficiency shows confusingly similar symptoms.) A moderate to high level of sulfur is especially required for potatoes.






Manganese

Manganese accelerates seed germination and hastens fruiting and ripening of crops. Deficiencies result in yellowing, cupping and/or spotting of leaves, stunted growth, and reduced crops.

















Nitrogen

Nitrogen is the element that plants use in greatest amounts. It is the most important – yet the most often deficient – element in plant growth worldwide. Nitrogen is highly volatile, so it escapes to the air, and it leaches away in run-offs of water. It needs to be applied more often than most fertilizer components, especially when the organic content of the soil is low.

Nitrogen is essential to photosynthesis and healthy cell growth and reproduction. It is vital in producing chlorophyll (which gives leaves good green color) and amino acids. It also promotes shoot and leaf growth.


Sources of Specific Nutrients
Many of these fertilizers are available processed and packaged. You don't have to harvest your own.

  • Nitrogen: bat guano, blood meal, chicken manure, cottonseed meal, fish emulsion, kelp meal, livestock manure (composted)
  • Phosphorus: bonemeal, rock phosphate, super phosphate
  • Potassium: granite meal, greensand, seabird guano, shrimp shell meal, sulfate of potash, wood ashes
  • Calcium: bonemeal, chelated calcium, eggshells, limestone, oyster shells, wood ashes
  • Boron: borax, chelated boron, manure
  • Copper: chelated copper
  • Magnesium: chelated magnesium, dolomitic limestone, Epsom salts
  • Sulfur: iron sulfate, sulfur, zinc sulfate
  • Zinc: chelated zinc, zinc sulfate
  • Iron: chelated iron, iron sulfate

Nitrogen= for leafy growth,Phosphorous helps to promote healthy roots and flowering.
Phosphorus= helps to promote healthy roots and flowering. Phosphorous
9-59-8 for bloomers
Potash= strong root and stem development

Manganese sulfate , deficiency palms frizzle top


Magnesium

Magnesium (Mg)- is essential to photosynthesis in plants. It’s the "main molecule" in chlorophyll, the green coloring in green plants! Photosynthesis is the process by which plants use the sun’s energy to create carbohydrates. Without magnesium, plant leaves turn yellow (usually at the bottom) and will soon die.

PH- is measured on a scale of 1-14 with 7 being "neutral". Acids are lower than 7 and alkalis (bases) are above 7. To be technical, the term pH refers to the potential hydrogen-hydroxyl ion content of a solution. Solutions ionize into positive and negative ions. If the solution has more hydrogen (positive) ions than hydroxyl (negative) ions then it is an acid (1-6.9 on the pH scale). Conversely if the solution has more hydroxyl ions than hydrogen it is alkaline (or base), with a range of 7.1-14 on the pH scale.
Pure water has a balance of hydrogen (H+) and hydroxyl (OH-) ions and is therefore pH neutral (pH 7). When the water is less than pure it can have a pH either higher or lower than 7.

When the pH is not at the proper level plants will lose it's ability to absorb some of the essential elements required for healthy growth. For all plants there is a particular pH level that will produce optimum results. Most plants can still survive in an environment with a pH of 5.0 to 7.5.

If the pH is too high, some plants suffer from a lack of iron, zinc, manganese, copper and boron. If the pH is too low, it lacks phosphoric acid, calcium, and magnesium. At lower pH (more acidic) ranges, diseases can thrive. Normally, plants tend to take up more acidic elements, causing pH levels to increase or drift up the scale.

Magnesium deficiency in soil

To get an accurate reading of any deficiency, the soil can be tested, but in the case of magnesium, the results are quite variable. Magnesium content can deteriorate quickly, especially during rain or watering. Magnesium is quite water-soluble and gets leached to the lower layers of the soil easily. It is brought back up by tree roots. It is therefore important to return the falling leaves to the topsoil.

Unless you live in an area where the dolomitic rocks is dissolve in the water, you can be pretty sure that magnesium would benefit your garden, especially if you are not adding tree leaves. Magnesium shortage is a real problem in most parts of the world. It is caused when we water or irrigate instead of growing what is natural for the climatic conditions. It causes a serious calcium metabolism problem in people and animals, because calcium cannot be used without magnesium.

Extreme magnesium deficiency is recognized by pale green leaves and by blossom and fruit rot, but don't wait for that. Sprinkle dolomite or epsom salt on the soil from time to time, or add a little epsom salt to the water. Using a little frequently is better than using a lot once, because the excess just gets leached.

Epsom salt recipe: Dissolve 2 tablespoons of Epsom salt in 1 gal. of water. For healthy nightshade plants (tomatoes, peppers, eggplants) water just as flowering starts. Or use this mixture as a foliage spray in the garden and on house plants.


Epsom salts
Epsom salts

What dose Epsom Salts do for Plants?
Epsom salts contain hydrated magnesium sulfate, two elements vital to plant growth.
• Sulfur is crucial to the inner workings of plants, but it is almost never lacking in the soil, thanks in part to synthetic fertilizers and acid rain.
• Magnesium (10%) can become scarce in soil, because of erosion or depletion of the top soil or a pH imbalance. Some plants, like lettuce and spinach, don’t mind going without magnesium. Others may exhibit symptoms like leaf curing, stunted growth, which can be attributed to more than one cause.
• In general, magnesium plays a role in strengthening the plant cell walls, allowing the plant to take in the nutrients it needs. It also aids in seed germination, photosynthesis and in the formation of fruits and seeds.

Magnesium sulfate is great for palm trees.