Showing posts with label Garden. Show all posts
Showing posts with label Garden. Show all posts

Thursday, July 7, 2016

Aquaponics Basement System Organic/ Food 10 Tips Update Part 2




Urban agriculture is the practice of cultivating, processing, and distributing food in or around a village, town, or city.[1] Urban agriculture can also involve animal husbandry, aquaculture, agroforestry, and horticulture. These activities also occur in peri-urban areas as well.[2] 

Urban farming is generally practiced for income-earning or food-producing activities, though in some communities the main impetus is recreation and relaxation.[3]

Urban agriculture contributes to food security and food safety in two ways: first, it increases the amount of food available to people living in cities, and second, it allows fresh vegetables, fruits, and meat products to be made available to urban consumers. It decreases food deserts.

A common and efficient form of urban agriculture is the biointensive method. Because urban agriculture promotes energy-saving local food production, urban and peri-urban agriculture are generally seen as sustainable agriculture. Another aspect of urban farming, especially in densely populated American cities, is the use of grow-bags to raise a wide range of crops.

 Many apartment dwellers with no yards to speak of, or people with very small yards, will set up these bags on a balcony or thin strip of land. Also, many types of hanging bags are available to plant, expanding the area available for planting.

The bags themselves are made from a variety of materials, including canvas, weed barrier fabric, and polyester, all having semi-porus properties so the soil can drain adequately. The term "Bagriculture" was coined in 1998 by Los Angeles animator and amateur archaeologist Rudy Zappa Martinez to describe this type of agriculture.

The recognition of environmental degradation within cities through the relocation of resources to serve urban populations[4] has inspired the implementation of different schemes of urban agriculture across the developed and developing world. From historic models such as Machu Picchu to designs for new productive city farms, the idea of locating agriculture in or around the city takes on many characteristics.






An urban farm in Chicago


A small urban farm in Amsterdam

History

 


Huerto (vegetable garden or orchard) Romita) organization dedicated to urban agriculture located in the La Romita section of Colonia Roma, Mexico City.
Community wastes were used in ancient Egypt to feed urban farming.[5] In Machu Picchu water was conserved and reused as part of the stepped architecture of the city, and vegetable beds were designed to gather sun in order to prolong the growing season.[5]

Allotment gardens came up in Germany in the early 19th century as a response to poverty and food insecurity.[6] Victory gardens sprouted during WWI and WWII and were fruit, vegetable, and herb gardens in US, Canada, and UK.

 This effort was undertaken by citizens to reduce pressure on food production that was to support the war effort. Community gardening in most communities are open to the public and provide space for citizens to cultivate plants for food or recreation. A community gardening program that is well-established is Seattle's P-Patch.

The grass roots permaculture movement has been hugely influential in the renaissance of urban agriculture throughout the world.

The idea of supplemental food production beyond rural farming operations and distant imports is not new and has been used during war times and the Great Depression when food shortage issues arose. As early as 1893, citizens of a depression-struck Detroit were asked to use any vacant lots to grow vegetables.

They were nicknamed Pingree's Potato Patches after the mayor, Hazen S. Pingree, who came up with the idea. He intended for these gardens to produce income, food supply, and even boost self independence during times of hardship. During the first World War president Woodrow Wilson called upon all American citizens to utilize any available open space for food growth, seeing this as a way to pull them out of a potentially damaging situation.

Because most of Europe was consumed with war, they were unable to produce sufficient food supplies to be shipped to the U.S., and a new plan was implemented with the intent to feed the U.S. and even supply a surplus to other countries in need. By the year 1919 over 5 million plots were growing food and over 500 million pounds of produce was harvested.

A very similar practice came into use during the Great Depression that provided a purpose, a job, and food to those who would otherwise be without anything during such harsh times. In this case these efforts helped to raise spirits socially as well as to boost economical growth.

Over 2.8 million dollars worth of food was produced from the subsistence gardens during the Depression. By the time of the Second World War the War/Food Administration set up a National Victory Garden Program that set out to systematically establish functioning agriculture within cities.

With this new plan in action, as many as 5.5 million Americans took part in the victory garden movement and over 9 million pounds of fruit and vegetables were grown a year, accounting for 44% of U.S.-grown produce throughout that time. With its past success in mind and with modern technology, urban agriculture today can be something to help both developed and developing nations.

Facts

  • 50% of the world's population lives in cities.[7]
  • 800 million people are involved in urban agriculture world-wide and contribute to feeding urban residents.[8]
  • Low income urban dwellers spend between 40% and 60% of their income on food each year.[9]
  • By 2015 about 26 cities in the world are expected to have a population of 10 million or more. To feed a city of this size at least 6,000 tonnes (6,600 tons) of food must be imported each day.[10]
  • 250 million hungry people in the world live in cities[11]

A tidy front yard flower and vegetable garden in Aretxabaleta, the Basque Country

Resource and economic

The Food and Agriculture Organization of the United Nations (FAO), has defined urban agriculture as:[12]
[A]n industry that produces, processes and markets food and fuel, largely in response to the daily demand of consumers within a town, city, or metropolis, on land and water dispersed throughout the urban and peri-urban area, applying intensive production methods, using and reusing natural resources and urban wastes to yield a diversity of crops and livestock.
The definition of urban agriculture as an industry that responds to the nutritional demands of a city, from within that city, with the use and reuse of that city's resources while acknowledging economic and resource use does not reconcile aspects of regional health, food security, and application of grassroots organizations.
(This definition is based on the work of Luc Mougeot of the International Development Research Centre and used in technical and training publications by UN-HABITAT's Urban Management Programme, FAO's Special Programme for Food Security, and international agricultural research centres, such as CIRAD.)



A vegetable garden in the square in front of the train station in Ezhou, China

Environmental

The Council on Agriculture, Science and Technology, (CAST) is an international consortium of scientific and professional societies based in Ames Iowa that compiles and communicates credible science-based information to policy makers, media, private sector, and the public. CAST defines urban agriculture to include aspects of environmental health, remediation, and recreation:[13]
Urban agriculture is a complex system encompassing a spectrum of interests, from a traditional core of activities associated with the production, processing, marketing, distribution, and consumption, to a multiplicity of other benefits and services that are less widely acknowledged and documented. These include recreation and leisure; economic vitality and business entrepreneurship, individual health and well-being; community health and well being; landscape beautification; and environmental restoration and remediation.
Modern planning and design initiatives are more responsive to this model of urban agriculture because it fits within the current scope of sustainable design. The definition allows for a multitude of interpretations across cultures and time. Frequently it is tied to policy decisions to build sustainable cities.[14]

Food security

Access to nutritious food is another perspective in the effort to locate food and livestock production in cities. With the tremendous influx of world population to urban areas, the need for fresh and safe food is increased. The Community Food Security Coalition (CFSC) defines food security as:[15]
All persons in a community having access to culturally acceptable, nutritionally adequate food through local, non-emergency sources at all times.

Source: Wikipedia


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CYA Later Taters
Thanks for watching.
Donnie/ Sinbad the Sailor Man  

Aquaponics Basement System Organic/ Food Grade Overview 101 Part 1 of 2




Aquaponics /ˈækwəˈpɒnɨks/ or pisciponics is a sustainable food production system that combines a traditional aquaculture (raising aquatic animals such as snails, fish, crayfish or prawns in tanks) with hydroponics (cultivating plants in water) in a symbiotic environment.

In aquaculture, effluents accumulate in the water, increasing toxicity for the fish. This water is led to a hydroponic system where the by-products from the aquaculture are broken down by nitrogen fixing bacteria, then filtered out by the plants as vital nutrients, after which the cleansed water is recirculated back to the animals.

As existing hydroponic and aquaculture farming techniques form the basis for all aquaponics systems, the size, complexity, and types of foods grown in an aquaponics system can vary as much as any system found in either distinct farming discipline.[1]

History

 

Aquaponics has ancient roots, although there is some debate on its first occurrence:
  • Aztec cultivated agricultural islands known as chinampas and are considered by some as the first form of aquaponics for agricultural use[2][3] where plants were raised on stationary (and sometime movable) islands in lake shallows and waste materials dredged from the Chinampa canals and surrounding cities are used to manually irrigate the plants.[4][5]
  • South China and Thailand who cultivated and farmed rice in paddy fields in combination with fish are cited as examples of early aquaponics. These polycultural farming systems existed in many Far Eastern countries and raised fish such as the oriental loach (泥鳅, ドジョウ),[6] swamp eel (黄鳝, 田鰻), Common (鯉魚, コイ) and crucian carp (鯽魚)[7] as well as pond snails (田螺) in the paddies.[8][9]



Diagram of the University of the Virgin Islands commercial aquaponics system designed to yield 5 metric tons of Tilapia per year.[10]
The development of modern aquaponics is often attributed to the various works of the New Alchemy Institute and the works of Dr. Mark McMurtry et al. at the North Carolina State University.[1]

Inspired by the successes of the New Alchemy Institute, and the reciprocating aquaponics techniques developed by Dr. Mark McMurtry et al., other institutes soon followed suit.

Starting in 1997, Dr. James Rakocy and his colleagues at the University of the Virgin Islands researched and developed the use of Deep Water Culture hydroponic grow beds in a large scale aquaponics system.[10]

The first aquaponics research in Canada was a small system added onto existing aquaculture research at a research station in Lethbridge, Alberta.

Canada saw a rise in aquaponics setups throughout the ’90s, predominantly as commercial installations raising high value crops such as trout and lettuce.

 A setup based on the deep water system developed at the University of Virgin Islands was built in a greenhouse at Brooks, Alberta where Dr. Nick Savidov and colleagues researched aquaponics from a background of plant science.

The team made findings on rapid root growth in aquaponics systems, on closing the solid waste loop, and that because of certain advantages in the system over traditional aquaculture, the system can run well at a low pH level, which is favoured by plants but not fish.

The Edmonton Aquaponics Society in Northern Alberta is adapting Dr. Savidov's commercially sized system to a smaller scale prototype that can be operated by families, small groups, or restaurants. They intend to further develop the closed solid waste loop.[11]


Vegetable production part of the low-cost Backyard Aquaponics System developed at Bangladesh Agricultural University
The Caribbean island of Barbados created an initiative to start aquaponics systems at home, with revenue generated by selling produce to tourists in an effort to reduce growing dependence on imported food.[12][13][14]

In Bangladesh, the world's most densely populated country, most farmers use agrochemicals to enhance food production and storage life though the country lacks oversight on safe levels of chemicals in foods for human consumption.[15]

To combat this issue a team led by Professor Dr. M.A. Salam at the Department of Aquaculture of Bangladesh Agricultural University, Mymensingh has created plans for a low cost aquaponics system to provide chemical free produce and fish for people living in adverse climatic conditions such as salinity-prone southern part and flood-prone haor area in the eastern region.[16][17]

Recent years have seen a shift towards community integration of aquaponics, such as the nonprofit foundation Growing Power that offers Milwaukee youth job opportunities and training while growing food for their community.

The model has spawned several satellite projects in other cities, such as New Orleans where the Vietnamese fisherman community has suffered from the Deepwater Horizon oil spill, and in the South Bronx in New York City.[18]

In addition, aquaponic gardeners from all around the world have gathered in online community sites and forums to openly share their experiences and promote the development of this form of gardening.[19]

Source: Wikipedia.org

More to come on This and Hopefully I will have some of my own videos to show on my attempt at building a working open air Aquaponics system this year.
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Tuesday, February 18, 2014

Green Evolutions~ "Aquaponics Cantaloupes"



Published on Jun 15, 2012
 
Quick look at the Cantaloups... We are using hammocks to support the fruit as we are growing them vertically on a trellis...
 I am trying a new intro and will be experimenting with some editing later on to try and make the my videos more interesting...
I just watched John over at http://www.growingyourgreens.com/ and picked up a few tips on how to make a more enjoyable video for you to watch.
 Cantaloupe (also canteloupe, cantaloup, muskmelon (India), mushmelon, muskmelon, rockmelon, sweet melon, Persian melon, spanspek (South Africa), or Garma گرما) refers to a variety of Cucumis melo, a species in the family Cucurbitaceae.

Cantaloupes range in size from 500 g to 5 kg (1 to 10 lb).

Originally, cantaloupe referred only to the non-netted, orange-fleshed melons of Europe. However, in more recent usage, it has come to mean any orange-fleshed melon (C. melo). Cantaloupe is the most popular variety of melon in the United States.[2]

 
Cantaloupe
Scientific classification
Kingdom: Plantae
(unranked): Angiosperms
(unranked): Eudicots
(unranked): Rosids
Order: Cucurbitales
Family: Cucurbitaceae
Genus: Cucumis
Species: C. melo
Subspecies: C. melo subsp. melo
Variety: C. melo var. cantalupensis
Trinomial name
Cucumis melo var. cantalupensis[1]
Naudin
Synonyms
Cucumis melo var. reticulatus Naudin[1]

Etymology

The name is derived, via French, from the Italian Cantalupo which was formerly a papal county seat near Rome.

Tradition has it that this is where it was first cultivated in Europe, on its introduction from Ancient Armenia.[3] Its first known usage in English dates from 1739 in The Gardeners Dictionary Vol. II by Scottish botanist Philip Miller (1691–1771).[3]

 

Origin

The cantaloupe originated in Iran, India and Africa;[4] it was first cultivated in Iran some 5000 years ago and in Greece and Egypt some 4000 years ago.[5]

 

Cantaloupes by region


Macro photo of the skin of a North American cantaloupe

The European cantaloupe is lightly ribbed (sutured), with a gray-green skin that looks quite different from that of the North American cantaloupe.[6]

The North American cantaloupe, common in the United States, Mexico, and in some parts of Canada, is actually a muskmelon, a different variety of Cucumis melo, and has a net-like (or reticulated) skin covering.
It is a round melon with firm, orange, moderately sweet flesh and a thin, reticulated, light-brown rind.[6] 
Varieties with redder and yellower flesh exist, but are not common in the U.S. market.[citation needed]

 

Production and uses

 


Cantaloupes on display in a fruit store


Cantaloupes on sale in Japan for 2800 yen each (Roughly US$33.28 - based on currency rates September 2010)

Because they are descended from tropical plants and tend to require warm temperatures throughout a relatively long growing period, cantaloupes grown in temperate climates are frequently started indoors for 14 days or longer before being transplanted outdoors.

Cantaloupes are often picked, and shipped, before fully ripening. Postharvest practices include treatment with a sodium hypochlorite or bleach wash to prevent mold and Salmonella growth. This treatment, because it can mask the melon's musky aroma, can make it difficult for the purchaser to judge the relative quality of different cantaloupes.

Cantaloupe is normally eaten as a fresh fruit, as a salad, or as a dessert with ice cream or custard. Melon pieces wrapped in prosciutto are a familiar antipasto.

Because the surface of a cantaloupe can contain harmful bacteria—in particular, Salmonella [7]—it is always a good idea to wash and scrub a melon thoroughly before cutting and consumption. The fruit should be refrigerated for less than three days after cutting to prevent risk of Salmonella or other bacterial pathogens.[8]

A mouldy cantaloupe in a Peoria, Illinois market in 1941 was found to contain the best and highest quality penicillin, after a worldwide search.[9]


Melons, cantaloupe, raw

 Rockmelon from Australia
and its cross-section
Nutritional value per 100 g (3.5 oz)
Energy 141 kJ (34 kcal)
Carbohydrates 8.16 g
- Sugars 7.86 g
- Dietary fiber 0.9 g
Fat 0.19 g
Protein 0.84 g
Vitamin A equiv. 169 μg (21%)
- beta-carotene 2020 μg (19%)
- lutein and zeaxanthin 26 μg
Thiamine (vit. B1) 0.041 mg (4%)
Riboflavin (vit. B2) 0.019 mg (2%)
Niacin (vit. B3) 0.734 mg (5%)
Pantothenic acid (B5) 0.105 mg (2%)
Vitamin B6 0.072 mg (6%)
Folate (vit. B9) 21 μg (5%)
Choline 7.6 mg (2%)
Vitamin C 36.7 mg (44%)
Vitamin K 2.5 μg (2%)
Calcium 9 mg (1%)
Iron 0.21 mg (2%)
Magnesium 12 mg (3%)
Manganese 0.41 mg (20%)
Phosphorus 15 mg (2%)
Potassium 267 mg (6%)
Sodium 16 mg (1%)
Zinc 0.18 mg (2%)
Link to USDA Database entry
Percentages are roughly approximated
using US recommendations for adults.
Source: USDA Nutrient Database

 

Source:Wikipedia.org

 

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How to Build Your Own Strawberry Towers





 


Uploaded on Jan 2, 2011

http://www.BigelowBrook.com/donate
This is an instructional video on how to build your own growing tower for use in aquaponic or hydroponic systems. 

Details about Expanded Shale growing media can be found at http://www.ExpandedShale.com . For more info, see my blog at http://web4deb.blogspot.com or http://www.BigelowBrook.com Also "like" us on Facebook at http://www.Facebook.com/BigelowBrook


The garden strawberry (or simply strawberry /ˈstrɔːb(ə)ri/; Fragaria × ananassa) is a widely grown hybrid species of the genus Fragaria (collectively known as the strawberries).

It is cultivated worldwide for its fruit. The fruit (which is not a botanical berry, but an aggregate accessory fruit) is widely appreciated for its characteristic aroma, bright red color, juicy texture, and sweetness.

It is consumed in large quantities, either fresh or in such prepared foods as preserves, fruit juice, pies, ice creams, milkshakes, and chocolates. Artificial strawberry aroma is also widely used in many industrial food products.

The garden strawberry was first bred in Brittany, France, in the 1750s via a cross of Fragaria virginiana from eastern North America and Fragaria chiloensis, which was brought from Chile by Amédée-François Frézier in 1714.[1]

Cultivars of Fragaria × ananassa have replaced, in commercial production, the woodland strawberry (Fragaria vesca), which was the first strawberry species cultivated in the early 17th century.[2]

Technically, the strawberry is an aggregate accessory fruit, meaning that the fleshy part is derived not from the plant's ovaries but from the receptacle that holds the ovaries.[3]

Each apparent "seed" (achene) on the outside of the fruit is actually one of the ovaries of the flower, with a seed inside it.[3]


Garden strawberry
Fragaria × ananassa
Garden strawberries, grown in California
Scientific classification
Kingdom: Plantae
(unranked): Angiosperms
(unranked): Eudicots
(unranked): Rosids
Order: Rosales
Family: Rosaceae
Subfamily: Rosoideae
Genus: Fragaria
Species: F. × ananassa
Binomial name
Fragaria × ananassa
Duchesne


History

The first garden strawberry was grown in France during the late 18th century.[2]

Prior to this, wild strawberries and cultivated selections from wild strawberry species were the common source of the fruit.

The strawberry fruit was mentioned in ancient Roman literature in reference to its medicinal use.

The French began taking the strawberry from the forest to their gardens for harvest in the 1300s. Charles V, France's king from 1364 to 1380, had 1,200 strawberry plants in his royal garden.

 In the early 1400s western European monks were using the wild strawberry in their illuminated manuscripts. The strawberry is found in Italian, Flemish, German art, and English miniatures.[citation needed] The entire strawberry plant was used to treat depressive illnesses.

By the 1500s references of cultivation of the strawberry became more common.

People began using it for its supposed medicinal properties and botanists began naming the different species.

In England the demand for regular strawberry farming had increased by the mid-1500s.

Instructions for growing and harvesting strawberries showed up in writing in 1578.

By the end of the 1500s three European species had been cited; F. vesca, F. moschata, and F. viridis. The garden strawberry was transplanted from the forests and then the plants would be propagated asexually by cutting off the runners.

Two subspecies of F. vesca were identified; F. sylvestris alba and F. sylvestris semperflorens. The introduction of F. virginiana from Eastern North America to Europe in the 1600s is an important part of history because this species gave rise to the modern strawberry.

The new species gradually spread through the continent and did not become completely appreciated until the end of the 18th century.



Closeup of a healthy, red strawberry
Fragaria × ananassa 'Gariguette,' a cultivar grown in southern France

When a French excursion journeyed to Chile in 1712, it introduced the strawberry plant with female flowers that resulted in the common strawberry that we have today.

The Mapuche and Huilliche Indians of Chile cultivated the female strawberry species until 1551 when the Spanish came to conquer the land.

In 1765, a European explorer recorded the cultivation of F. chiloensis, the Chilean strawberry.

At first introduction to Europe, the plants grew vigorously but produced no fruit.

It was discovered in 1766 that the female plants could only be pollinated by plants that produced large fruit; F. moschata, F. virginiana, and F. ananassa.

This is when the Europeans became aware that plants had the ability to produce male-only or female-only flowers.

As more large-fruit producing plants were cultivated the Chilean strawberry slowly decreased in population in Europe, except for around Brest where the Chilean strawberry thrived.

The decline of the Chilean strawberry was caused by F. ananassa.[4]



Strawberries on display at Chelsea Flower Show, 2009


Cultivation

Strawberry cultivars vary widely in size, color, flavor, shape, degree of fertility, season of ripening, liability to disease and constitution of plant.[5]

Some vary in foliage, and some vary materially in the relative development of their sexual organs.

In most cases, the flowers appear hermaphroditic in structure, but function as either male or female.[6]

For purposes of commercial production, plants are propagated from runners and, in general, distributed as either bare root plants or plugs.

Cultivation follows one of two general models—annual plasticulture,[7] or a perennial system of matted rows or mounds.[8]
A small amount of strawberries are produced in greenhouses during the off season.[9]


A large strawberry field with plastic covering the earth around the strawberry plants.
A field using the plasticulture method

The bulk of modern commercial production uses the plasticulture system.

In this method, raised beds are formed each year, fumigated, and covered with plastic to prevent weed growth and erosion.

Plants, usually obtained from northern nurseries, are planted through holes punched in this covering, and irrigation tubing is run underneath. Runners are removed from the plants as they appear, in order to encourage the plants to put most of their energy into fruit development.

At the end of the harvest season, the plastic is removed and the plants are plowed into the ground.[7][10]

Because strawberry plants more than a year or two old begin to decline in productivity and fruit quality, this system of replacing the plants each year allows for improved yields and denser plantings.[7][10]

However, because it requires a longer growing season to allow for establishment of the plants each year, and because of the increased costs in terms of forming and covering the mounds and purchasing plants each year, it is not always practical in all areas.[10]

The other major method, which uses the same plants from year to year growing in rows or on mounds, is most common in colder climates.[7][8]

It has lower investment costs, and lower overall maintenance requirements.[8] Yields are typically lower than in plasticulture.[8]

A third method uses a compost sock. Plants grown in compost socks have been shown to produce significantly higher oxygen radical absorbance capacity (ORAC), flavonoids, anthocyanins, fructose, glucose, sucrose, malic acid, and citric acid than fruit produced in the black plastic mulch or matted row systems.[11]

Similar results in an earlier 2003 study conducted by the US Dept of Agriculture, at the Agricultural Research Service, in Beltsville Maryland, confirms how compost plays a role in the bioactive qualities of two strawberry cultivars.[12]

Strawberries are often grouped according to their flowering habit.[5][13]

Traditionally, this has consisted of a division between "June-bearing" strawberries, which bear their fruit in the early summer and "ever-bearing" strawberries, which often bear several crops of fruit throughout the season.[13]

 Research published in 2001 showed that strawberries actually occur in three basic flowering habits: short-day, long-day, and day-neutral. These refer to the day-length sensitivity of the plant and the type of photoperiod that induces flower formation. Day-neutral cultivars produce flowers regardless of the photoperiod.[14]

Strawberries may also be propagated by seed, though this is primarily a hobby activity, and is not widely practiced commercially.

A few seed-propagated cultivars have been developed for home use, and research into growing from seed commercially is ongoing.[15]

Seeds (achenes) are acquired either via commercial seed suppliers, or by collecting and saving them from the fruit.

Strawberries can also be grown indoors in strawberry pots.


Pests

Around 200 species of pests are known to attack strawberries both directly and indirectly.[22] These pests include slugs, moths, fruit flies, chafers, strawberry root weevils, strawberry thrips, strawberry sap beetles, strawberry crown moth, mites, aphids, and others.[22][23]

The caterpillars of a number of species of Lepidoptera feed on strawberry plants.

Diseases

Strawberry plants can fall victim to a number of diseases.[24] The leaves may be infected by powdery mildew, leaf spot (caused by the fungus Sphaerella fragariae), leaf blight (caused by the fungus Phomopsis obscurans), and by a variety of slime molds.[24] The crown and roots may fall victim to red stele, verticillium wilt, black root rot, and nematodes.[24] The fruits are subject to damage from gray mold, rhizopus rot, and leather rot.[24] To prevent root-rotting, strawberries should be planted every four to five years in a new bed, at a different site.[25]
The plants can also develop disease from temperature extremes during winter.[24] When watering strawberries, advice has been given to water only the roots and not the leaves, as moisture on the leaves encourages growth of fungus.[26]



Fresh Strawberries from La Trinidad, Benguet, Philippines


Strawberries are popular and rewarding plants to grow in the domestic environment, be it for consumption or exhibition purposes, almost anywhere in the world. The best time to plant is in late summer or spring. Plant in full sun or dappled shade, and in somewhat sandy soil. The addition of manure and a balanced fertilizer aids strong growth. Alternatively they can be planted in pots or special planters using compost.

Domestic cultivation


Garden strawberry flower

Picking home-grown garden strawberries
Moreover, protection must be provided against slugs and snails which attack the ripe fruit. The fruit matures in midsummer and should be picked when fully ripe — that is, the fruit is a uniform bright red colour. The selection of different varietes can extend the season in both directions.[28] Numerous cultivars have been selected for consumption and for exhibition purposes. The following cultivars have gained the Royal Horticultural Society's Award of Garden Merit:-
Propagation is by runners, which can be pegged down to encourage them to take root,[35] or cut off and placed in a new location. Established plants should be replaced every three years, or sooner if there are signs of disease.
When propagating strawberries, one should avoid using the same soil or containers that were previously used for strawberry cultivation. After cultivating strawberries, rotating to another culture is advisable, because diseases that attack one species might not attack another.[36]

Source: Wikipedia.org

Somebody Come and Play Today! Earn as You Learn, Grow as You Go!

The Man Inside the Man
from
Sinbad the Sailor Man
A
JMK's Production


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TTFN
CYA Later Taters!
Thanks for stopping by.

Donnie/Sinbad the Sailor Man

P.S. Have you been looking for a guide to strawberries? Well Here it is. To check it out. Click Here!*

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