Potomac Orchardgrass (Dactylis glomerata) Plant 10 – 20 Lbs per Acre. Orchardgrass is a bunch-type, tall-growing, cool-season perennial grass. It is one of the most productive cool-season grasses, tolerant to shade, fairly drought resistant with moderate winter hardiness. Orchardgrass does not exhibit as much tolerance to drought or winter hardiness as tall fescue and bromegrass. It has been reported growing in the United States since before 1760. Most orchardgrass is seeded with a companion legume. Seeding methods Drilling orchardgrass and the companion legume seed is preferred. The use of drills, such as the Brillion type or grain drills, will usually result in better stands at the same seeding rate, more controlled seeding depth and better seed distribution than broadcasting. Good results are obtained with grain drills when orchardgrass is put through the grain box and the companion legume is seeded from the small legume box. The legume seed should be allowed to drop straight to the ground to prevent covering too deep. Drag chains on the drill will cover the seed adequately. Pull a cultipacker or light roller over the field to give good seed-to-soil contact and promote more vigorous seedling growth. Orchardgrass should be planted at a rate of 10 – 20 lbs per acre. Seedings of orchardgrass can also be made with broadcast equipment such as fertilizer trucks, buggies or tractor-mounted distribution. Broadcast equipment will not throw orchardgrass seed as far as it will throw fertilizer or heavier seeds such as fescue. To help avoid uneven stands, drive the equipment close enough to overlap the previous spread pattern to ensure even seed distribution. Orchardgrass seed should be covered with about 1/4 to 1/2 inch of soil. Spike tooth harrows or “brush type” drags make good tools for covering broadcast seed. The use of a cultipacker or lightweight roller is very important for the same reasons cited above. fertility. On Feb-08-17 at 10:01:28 PST, seller added the following information: Add a map to your own listings. FREE Trial !
Appin Turnip Seed
Appin Turnip, an annual crop, has a significantly higher proportion of leaf yield compared to other turnips and has high digestibility. Appin turnip is club root tolerant with good frost resistance. Utilization is increased because after the tops are eaten off, stock cows, dry cows and ewes eat the bulbs. Grazing of turnips may taint milk so it is advised to keep keep dairy cattle off the turnips for 3-4 hours before milking.Planting Date:For extended grazing, plant in early to mid-summerFor summer grazing, plant in the springPlanting Rate: 1-3 lbs/ acreDepth: 1/4 to 1/2 inch
Shiloh II Orchard Grass Seed
Orchard grass Seed (Dactylis Glomerata)Plant 10 – 20 Lbs. per Acre.Orchard grass is a bunch-type, tall-growing, cool-season perennial grass. It is one of the most productive cool-season grasses, tolerant to shade, fairly drought resistant with moderate winter hardiness. Orchard grass does not exhibit as much tolerance to drought or winter hardiness as tall fescue and brome grass. It has been reported growing in the United States since before 1760.Most orchard grass is seeded with a companion legume.Seeding methodsDrilling orchard grass and the companion legume seed is preferred. The use of drills, such as the Brillion type or grain drills, will usually result in better stands at the same seeding rate, more controlled seeding depth and better seed distribution than broadcasting. Good results are obtained with grain drills when orc hardgrass is put through the grain box and the companion legume is seeded from the small legume box. The legume seed should be allowed to drop straight to the ground to prevent covering too deep. Drag chains on the drill will cover the seed adequately. Pull a cultipacker or light roller over the field to give good seed-to-soil contact and promote more vigorous seedling growth.Orchard grass should be planted at a rate of 10 – 20 lbs. per acre.Seedings of orchard grass can also be made with broadcast equipment such as fertilizer trucks, buggies or tractor-mounted distribution. Broadcast equipment will not throw orchard grass seed as far as it will throw fertilizer or heavier seeds such as fescue. To help avoid uneven stands, drive the equipment close enough to overlap the previous spread pattern to ensure even seed distribution. Orchard grass seed should be covered with about 1/4 to 1/2 inch of soil. Spike tooth harrows or “brush type” drags make good tools for covering broadcast seed. The use of a cultipacker or lightweight roller is very important for the same reasons cited above.fertility.
Double Eagle Centipede Grass Seed (Coated)
Double Eagle Centipede – Professional Turf.67% Pure Centipede Grass Seeds 33% “Double Eagle Coating”1 Lbs Covers 2000-4000 Sq ft Centipedegrass (Eremochloa ophiuroides [Munro] Hack.) was introduced into the United States from southeastern Asia in 1916. It is well adapted to the climate and soils of Central and Northern Florida and is the most common home lawn grass in the Florida Panhandle (Figure 1). There is now one cultivar adapted to South Florida conditions. Centipedegrass is a slow-growing grass with low fertility requirements when compared to other Florida lawn grasses. Centipedegrass grows close to the ground, is medium textured, and is naturally lighter in color than other lawn grasses. Overfertilizing with nitrogen to obtain an unnaturally dark green color reduces its cold tolerance, increases long-term maintenance problems, and is believed to contribute to centipedegrass decline, a disease complex that produces patches of dead turf in the spring.AdvantagesCentipedegrass does very well in acidic (pH 4.5–6.5) and infertile soils. It has fair shade tolerance and survives drought conditions by going dormant, which results in brown turf (Figure 2). It can be established from seed, sod, or plugs, and it spreads by aboveground stems called stolons. Maintenance and fertility requirements are low compared to other turfgrasses.Establishment of CentipedegrassProper site preparation before planting is critical to ensure successful establishment. Refer to ENH02, Preparing to Plant a Florida Lawn, for complete information on how to do so. Specifically, centipedegrass is best adapted to a low-pH soil. Severe iron chlorosis (yellowing) may occur if pH is above 6.5–7.0. Preplant application of wettable sulfur at the rate of 430 pounds per acre (10 pounds per 1000 square feet) can be used to reduce the pH of some Florida soils by 1 pH unit. Do not apply more than 10 pounds per 1000 square feet of wettable sulfur per application. Where more is required, allow 60 days between applications. Irrigate with 1 inch of water after each application to activate the sulfur. Lime is seldom required for centipedegrass. If soil pH is high, centipedegrass may not be an appropriate choice.Centipedegrass can be established by seed, plugs, sprigs, or sod. Planting centipedegrass as sod produces an instant lawn that establishes more rapidly and is less susceptible to various stresses. Lay the sod on a well-prepared planting site, fitting the pieces tightly together to avoid gaps in the turf. Wet the soil surface thoroughly prior to laying the sod. After the sod is in place, roll with a lightweight roller to ensure firm contact between the sod and soil; water thoroughly. For more information on establishing a lawn, please refer to ENH03, Establishing Your Florida Lawn. Although sodding is more expensive than seeding or plugging, good-quality, weed-free sod produces the best quality lawn.Centipedegrass seed is more costly than other types of grass seed, but the seeding rate is low. The suggested seeding rate is 4 ounces per 1000 square feet. Since the seeds are extremely small, mix the needed quantity of seed with 10–20 pounds of dry sand and spread this mix on the lawn. Seed quality should be considered when purchasing seed for planting. Insist on seed with a purity of 90% or better and a minimum of 85% germination. Centipedegrass seed that has been coated with germination-enhancing materials may require a greater quantity of seed to achieve equal seed counts with uncoated seed.The best time to seed is during the period from April to July, since this permits a full growing season before winter weather. Fall seeding is undesirable because the young seedlings may not become sufficiently established to withstand cold injury during the winter. Up-front costs associated with establishment of centipedegrass by seed are low; however, centipedegrass seed is naturally slow to germinate. It may take up to 2–3 weeks to germinate and an additional 6–8 weeks to establish. During this time, irrigation management is extremely important. After planting, water lightly every day for 2–3 weeks to keep the soil moist but not soggy. This may require multiple applications per day on sandy soils. Once the seeds have germinated, start to decrease the frequency of irrigation but increase the amount of water applied. Soil erosion due to heavy rain or excessive irrigation should be minimized by lightly mulching the planted area with weed-free grass, hay, or straw so that 50%–75% of the bare ground is protected.Attempting to repair a dead area within an established centipedegrass lawn by reseeding is very difficult and generally requires hand watering for success. Using a sprinkler system to water the seeded areas can result in overwatering of established centipedegrass, which can lead to increased disease incidence.Plugging or sprigging centipedegrass leaves open areas of soil that are subject to invasion by opportunistic weed species. Due to the slow growth habit of centipedegrass, weeds dominate and the area should be scouted on a regular basis and weeds removed before they have a chance to gain hold. Irrigation requirements for newly plugged or sodded grass differ from those of established grass until a viable root system is established. For the first 7–10 days, irrigate with 2–3 brief spritzes (5–10 minutes each). For 7–10 days after that, irrigate once a day with ¼ inch of water. For the next week, irrigate every other day with ¼–½ inch of water. After that (approximately 30 days after planting), a regular maintenance irrigation schedule may be followed. Do not mow until the roots have had a chance to work down into the soil and establish themselves, generally 2–3 weeks after plugging/sodding.Maintenance of CentipedegrassFertilizationProper fertilization is very important for sustaining a healthy lawn. Fertilization and other cultural practices influence the overall health and quality of the lawn and reduce its vulnerability to numerous stresses, including weeds, insects, and disease. It is very important that anyone fertilizing their lawn be familiar with and follow the Florida Friendly Landscaping™ Best Management Practices (FFL BMPs). These practices are designed to maintain healthy lawns and reduce any potential nonpoint source pollution of water resources that might result from lawn and landscape fertilization and other cultural practices. There are now state and local regulations that cover lawn fertilization, so be aware of city and county guidelines and always follow the directions on the fertilizer bag. For more information on BMPs, please refer to ENH979, Homeowner Best Management Practices for the Home Lawn.A soil test should be done to determine soil pH and what nutrients are available to the lawn. The local Extension office has instructions and supplies for taking soil samples and submitting them to the Extension Soil Testing Laboratory for analysis. Refer to SL281, Soil Sampling and Testing for the Home Landscape or Vegetable Garden, for more information. In particular, phosphorus levels are best determined by soil testing. Since many Florida soils are high in phosphorus, it is often not necessary to add phosphorus to a lawn once it is established.Florida Rule (5E-1.003) mandates that fertilizer application rates cannot exceed 1 pound of nitrogen per 1000 square feet for any application. Based on the percentage of nitrogen that is in a slowly available or slow-release form in a fertilizer, UF recommendations call for applying a ½ pound (water-soluble nitrogen source) to 1 pound (slow-release nitrogen source) of nitrogen per 1000 square feet of turfgrass. For information on determining how much fertilizer this equals, please refer to ENH962, Figuring out Fertilizer for the Home Lawn.Established centipedegrass lawns have low nitrogen fertility requirements. Centipedegrass is a low-maintenance turfgrass and does not respond well to excessive use of fertilizer, especially nitrogen. Do not overfertilize centipedegrass with nitrogen to turn it darker green.Overfertilization of centipedegrass can result in centipedegrass decline disease, increased insect pressure, and thatch accumulation.As a general rule, the first fertilizer application of the year should be in early April in Central Florida and mid-April in North Florida. In South Florida, fertilizer applications may be made throughout the year since growth is year-round. University of Florida guidelines for lawn grass fertilization offer a range of fertilizer rates over which a particular species may be successfully maintained in the various regions of the state. These ranges account for individual homeowner preferences for low-, medium-, or higher-input grass. Additionally, localized microclimatic effects can have a tremendous effect on turfgrass growth. A range of rates allows for these environmental variations. An example of this would be a typical home lawn that is partially shaded and partially sunny. The grass growing in the shade needs less fertilizer than that growing in full sun. Fertilization is also affected by soil type, organic matter in soils, and practices such as clipping management. Recycled clippings provide some nutrients back to the turfgrass and may reduce the need for fertilizer inputs. Additionally, a newly sodded lawn on a sand soil with no organic matter requires more fertilizer than a lawn that has been fertilized for years. In Florida, new homes and new developments may be next to much older developed landscapes, and a one-size-fits-all approach to fertilization is not reasonable. Thus, the guidelines provide a base range from which the end user can begin a fertilization program. The homeowner is encouraged to initiate a program based on these guidelines and to adjust it over time based on how the turfgrass responds.The fertilizer guidelines divide the state into three geographical locations, as indicated in Table 1. All rates are in pounds of nitrogen per 1000 square feet. For questions on how to apply the correct amounts, refer to ENH962, Figuring out Fertilizer for the Home Lawn.Table 1. Annual nitrogen fertilizer recommendations for centipedegrass in three regions of FloridaLocation1Nitrogen fertility guideline (lbs N/1000 sq ft/year)North Florida1-2Central Florida2-3South Florida2-31North Florida in this example is considered to be anything north of Ocala. Central Florida is defined as anything south of Ocala to a line extending from Vero Beach to Tampa. South Florida includes the remaining southern portion of the state.Fertilizer should be applied to centipedegrass in 1–3 applications from spring green-up through fall. Do not apply nitrogen too early in the growing season (before April 15 in North Florida) because subsequent frosts may damage the grass. Likewise, do not fertilize too late in the year because this can slow regrowth the following spring. A general guideline for the last fertilizer application is mid-September for North Florida, early October for Central Florida, and late October for South Florida.As mentioned previously, one of the common problems of centipedegrass is leaf yellowing called chlorosis, which is usually caused by iron deficiency. This condition is most severe where soil pH is above 6.5 or where the soil contains large quantities of calcium or phosphorus. This yellowing is generally worst in early spring when daytime temperatures are warm, but nighttime temperatures are still cool. Warm daytime air temperatures promote leaf and stolon growth, but cool nighttime temperatures limit root growth. The roots cannot take up enough nutrients to supply the growing leaves, causing them to turn yellow. As soils become warmer, this temporary nutrient deficiency wanes.Centipedegrass usually responds well to supplemental applications of iron. However, it is important to note that iron is not a substitute for nitrogen, which provides the building blocks for turfgrass growth and is required for turf health. While both iron and nitrogen deficiencies result in yellowing of turfgrass, they are distinctly different deficiencies in plants. Applying iron does not cure yellowing of turfgrass due to nitrogen deficiency, and iron fertilizer is not a substitute for nitrogen fertilizer. Foliar iron fertilizers, such as iron sulfate or chelated iron solutions, help cure iron deficiencies, and nitrogen fertilizers applied according to BMPs cure nitrogen deficiencies. Chelated or ferrous sulfate iron can be applied evenly and easily with a hose-end applicator. Apply the ferrous sulfate at the rate of 2 ounces in 3–5 gallons of water per 1000 square feet. Consult the label for chelated iron rates. Fertilizers containing iron as an ingredient are also available.MowingProper mowing practices are necessary to keep any lawn healthy and attractive. Centipedegrass that is actively growing should be mowed every 7–14 days at a height of 1.5–2.5 inches. Mowing at this height promotes a deeper, more extensive root system that enables the grass to better withstand drought and nematode stress. Remove no more than 1/3 of the height of the leaf blades with any mowing (e.g., for a lawn to be maintained at 2 inches in height, mow when the turf reaches 3 inches).Clippings should be left on the ground after mowing. They do not contribute to thatch buildup, as is often assumed, but are actually readily degraded by microorganisms. A sharp and well-adjusted rotary mower should be used.WateringIrrigating on an as-needed basis is the best way to water any established, mature grass, as long as the proper amount of water is applied when needed. Irrigation is needed when leaf blades begin to fold up, wilt, or turn blue-gray in color, or when footprints remain visible after walking on the grass. Apply ½–¾ inch of water per application. This applies water to roughly the top 8 inches of soil where the majority of the roots are. Be sure to follow any local watering restrictions. Refer to ENH9, Watering Your Florida Lawn, for additional information about proper watering techniques.To determine the amount of irrigation supplied by a sprinkler system, place several straight-sided cans (e.g., tuna fish or cat food) throughout each irrigation zone and run each zone to determine how long it takes to fill the cans to the ½–¾-inch level, then record the time. Each zone will likely take different amounts of time to give the same quantity of water. The recorded run times for each zone should then be programmed into the irrigation clock for automated systems. If the variation in the catch cans is great, a more thorough audit of the irrigation system is needed. Refer to ENH61, How to Calibrate Your Sprinkler System.During prolonged droughts, irrigation may be needed more often. Centipedegrass, however, has good drought tolerance and usually recovers from severe drought injury soon after rain or irrigation. Do not overwater centipedegrass lawns as this weakens the turf and encourages weeds. Refer to ENH9, Watering Your Florida Lawn, for additional information.Pest ManagementCentipedegrass can be damaged by nematodes, insects, and diseases. Obtain help in identification of pest problems and current control recommendations from the local county Extension office.WeedsWeeds easily invade newly established or poorly maintained lawns. Grass weeds include crabgrass, goosegrass, dallisgrass, annual bluegrass, and torpedograss, among others. Broadleaf weeds include dandelions, clover, pennywort, betony, oxalis, henbit, and others. Refer to ENH884, Weed Management in Home Lawns, for more information.InsectsSeveral insects may damage centipedegrass, but the hardest to control are scale insects called ground pearls for which there are no effective control products. Lawn caterpillars, grubs, mole crickets, spittlebugs, and sod webworms also damage centipedegrass. For more information, refer to CIR427, Insect Management in Your Florida Lawn.DiseasesAs previously mentioned, the principal disease affecting centipedegrass is centipedegrass decline, which can be minimized by following the proper cultural practices. Large (brown) patch and dollar spot can be sporadic problems, and both can be minimized by following proper nutrition and controlled with fungicides. Refer to PP233, Homeowner’s Guide to Fungicides for Lawn and Landscape Disease Management.Nematodes can be a very serious threat to centipedegrass. These are microscopic worms that attack grass roots and cause the lawn to thin and eventually die. Areas of heavy infestation show symptoms of severe wilt, even when well watered. The UF/IFAS Extension Service Florida Nematode Assay Laboratory in Gainesville can diagnose whether nematodes are a problem by looking at a soil sample taken from the margin of the affected area. Proper cultural factors to encourage centipedegrass root growth will lessen nematode stress. These include applying less nitrogen, providing less frequent but deep watering, and ensuring adequate soil potassium and phosphorus. Refer to ENY006, Nematode Management in Residential Lawns Centipedegrass DeclineAfter a few years, centipedegrass may develop yellowing (chlorosis) and/or dead spots as spring growth resumes. Numerous conditions may contribute to the problem and include the following:High pH (> 6.5)Excessive nitrogen fertilization in prior yearsUneven soil surface from stolons being suspended above the soil and over a mat of thatch (Such stolons never sufficiently develop roots and are killed by freezing weather. Alternating freezing or cool temperatures and thawing conditions exacerbate the problem.)Root dieback or any environmental conditions that may stress roots, such as soil compaction, improper mowing heights, overirrigation, etc.Nematodes and/or disease organisms, such as Gaeumannomyces spp., Rhizoctonia spp., or Pythium spp., which weaken the grass, making it susceptible to injury from otherwise normal conditionsSome remedies for this condition are as follows:Check soil pH and adjust it if it is too high.Do not overfertilize with nitrogen.Follow recommended mowing heights and frequencies to avoid scalping or excessive thatch buildup.Spray with 2 ounces ferrous sulfate per 1000 square feet, or use chelated iron as directed by the label if excessive yellowing occurs.Consult an Extension agent to send samples for identification of nematodes and diseases.
Florida 401 Winter Rye Grass Seed
FL 401 Winter Rye Grain SeedSeeding Rate:Broadcast 50 to 100 lbs. per acre on plowed groundGrain drill 60 to 75 lbs. per acre on a ploughed ground for winter forageWhat is 401 Rye used for?Grain rye comes up early in the season and is widely used for windbreaks, erosion control and for weed suppression. Its wide-ranging root system makes it one of the best green manures for improving soil structure.It is an excellent soil renovator and pioneer crop for new fields as it stabilizes excess soil and manure nitrogen. Grain rye can grow up to four to five feet and is very fast to establish, producing deer feed in as little as fourteen days in ideal conditions. This winter grazer rye grain is preferred by deer, turkey and rabbit.What are the best growing conditions for 401 Rye?Florida 401 rye is a small grain most widely used for winter grassing. Rye is more cold tolerant than oats and generally produces more forage than either oats or wheat.Do not plant too early but wait until the cool weather begins. Grain rye varieties from northern states will produce little forage in late fall or early winter and will usually be severely damaged by leaf rust. Therefore, only plant varieties recommended for the south eastern United States.Sometimes a grass or grain may be planted as a wind barrier to protect food crops like tomatoes. It is planted between the rows of the food crop to grow taller and therefore shield the food crop from the damaging effects of strong wind. Florida 401 is an excellent choice for winter wind barrier applications.
(On Backorder) TifQuik Bahia Grass Seed (Certified)
TifQuik Bahia Grass 75% Faster GerminationFresh Tested and Certified For The Season.Plant 25-30 Lbs. per Acre.TifQuik Bahia Grass Seed released by the USDA and UGA (University of Georgia), TifQuik Bahia Grass shows great promise for forage growers who wish to get a jump on weeds and extend their grazing and hay production season.Features of TifQuik Bahia Grass For PastureReduced hard seed – providing quick establishmentFaster Germination – 75% Faster than Tifton9 and Pensacola Bahia Grass in field trial.Early Spring Frost RecoveryTifQuik seeded pastures will be covered earlierGrazing or hay removal can be started soonerHigher initial yieldsDry matter yields were 2 times higher than Tifton 9 and 4 times higher than Pensacola 2 months after planting.Planting Information For TifQuik Bahia Grass SeedPlanting Date: Spring – Mid-SummerPlanting Depth: 1/8 – 1/4 inch. Do not plant any deeper or seed will not germinate.Seeding Rate: 25 to 30 lb./acreTifQuik Bahia Grass Yield Comparison TableDevelopment of TifQuik Bahia GrassForage growers would naturally like to get the jump on weeds and extend their forage production season. So Agricultural Research Service geneticist Bill Anderson of the Crop Genetics and Breeding Research Unit in Tifton, Georgia, and his colleagues have developed a new Bahia grass (Paspalum notatum) cultivar that may help them do just that.Released by the U.S. Department of Agriculture (USDA) and the University of Georgia (UGA) TifQuik has great promise as a forage grass in the Southeast. Currently, Tifton 9 Bahia grass, another USDA/UGA variety, developed by the late Glenn Burton, an ARS Hall of Fame member, is widely grown for forage, with good results. But the TifQuik cultivar is even better. “TifQuik was developed to have reduced hard seed and thus faster germination and field establishment than Tifton 9,” says Anderson. These features mean that a TifQuik-seeded pasture will be covered earlier, and grazing or hay removal can be performed sooner with higher initial yields.The Bahia grass cultivars now grown have a considerable amount of hard seed and thus require 2-3 weeks to establish a full stand. During this time, weeds may infest the pasture, and moisture for forage seed germination may be restricted.In developing TifQuik, the sole criterion for selection of plants was fast germination. It took 4 years to achieve the desired qualities. Former ARS agronomist Roger Gates and retired geneticist Wayne Hanna performed the four selection cycles, beginning with Tifton 9. During each cycle, enough seed was planted from the previous one to obtain 1,000 seedlings that germinated within the first week. Seedlings were transplanted to clay pots in the greenhouse and then to a fumigated field to establish a nursery. Plants were allowed to cross-pollinate, seed was hand-harvested, and that seed was then used to start the final cycle, the following spring, in a greenhouse. The four cycles were completed in 2002, and the seed from 2002 was used to establish greenhouse germination tests and a replicated field test and to begin seed increase.In the greenhouse studies, germination of TifQuik averaged five times more than Tifton 9 after 6 days and three times more after 8 days. In the field studies, TifQuik emerged about 75 percent faster after 1 week than Tifton 9 and Pensacola, another commonly used forage Bahia grass. After 4 weeks, TifQuik plants were taller than both Tifton 9 and Pensacola. Dry-matter yields of TifQuik were two times higher than Tifton 9 and four times higher than Pensacola for the first clipping, which was done 2 months after planting.TifQuik will be particularly valuable to growers who wish to include Bahia grass in a sod-based rotation system with row crops such as peanut and cotton in the southeastern United States, says Anderson. Bahia grass has been shown to reduce nematode and disease problems in subsequent crops, and it should provide many forage growers with another tool to make their operations more efficient and, hopefully, more profitable.By Sharon Durham, Agricultural Research Service Information Staff.
Milo Grain Sorghum Seed
Milo Grain Sorghum SeedPlant at a rate of 5-6 pounds per acre.Grain sorghum has a similar feed value to that of corn, with higher protein and fat levels than corn contains, and is highly palatable to livestock. Cracking or rolling the grain before feeding it to cattle improves the portion digested. Pasturing cattle or sheep on sorghum stubble, after the grain has been harvested, is also common, however stubble with secondary growth must be pastured carefully due to the danger of prussic acid poisoning. Grain sorghum may be used as whole-plant silage as well, and will produce a higher protein silage crop if grown with soybeans.
Wrens Abruzzi Winter Rye Grain Seed (Secale cereale) – 10 Lbs.
Developed 1953 in GA as an early winter rye with superior performance in the SE piedmont and coastal plains. A selection of the much older Abruzzi rye. Rye cover crop is great for controlling erosion, adding organic matter, enhancing soil life, and suppressing weeds. Its extensive root system makes it among the best green manures for improving soil structure. It is an excellent soil renovator and pioneer crop for new fields. Rye is very good at releasing phosphorus and potassium. It also stabilizes excess soil and manure nitrogen. Rye and vetch together are one of the preferred cover crops for no-till tomato planting. Rye is also good for animal grazing; it’s highly palatable and of high nutritional quality, and comes back from grazing and grows again. Wren’s Abruzzi performs better in the warm winters of the southeast than other available varieties of rye. Rapid establishment and growth, together with weed suppression, make Wren’s Abruzzi an excellent choice for certified organic growers. Sow August 1 to November 15 as a winter cover crop. Plant at 4-6 lbs per 1000 sq ft, or 60-112 lbs per acre. Pkt. (1/2 lb)
Seed Ranch Arrowleaf Clover – 1 Lb.
Arrowleaf clover is a cool-season annual that is highly productive in fall and spring and a top-choice forage for whitetails, especially when does are thriving fawns and bucks are about to begin antler growth. Though it’s an annual, arrowleaf clover is a heavy re-seeder – with the right management, you can get several seasons of production out of one planting. This plant is typical of most clovers with three leaflets. Each leaflet is arrow-shaped with a large white “V” mark. Leaves and stems are generally smooth and plants can obtain heights of four feet or more. In late spring, Arrowleaf clover produces clusters of white flowers with a light tinge of pink or purple. Growth normally occurs until hot weather hits in late June or July in most areas. The plant then disperses an abundance of seeds for future germination. Planting: Soil should be deep tilled or plowed and then lightly disked or dragged to smooth the seed bed. A common mistake in planting clover is burying the seed too deep which will gravely affect the germination. Clover should not be planted more than 1/8-inch deep. It works perfect with mixing Crimson clover 50-50On Feb-12-16 at 10:04:20 PST, seller added the following information: Add a map to your own listings. FREE Trial !
Bulldog 805 Alfalfa Seed
Bulldog 805 Alfalfa SeedFor Warmer ClimatesBulldog 805 is a variety that was developed and extensively researched at the Tifton Coastal Plain Research Farm. It is made up of parents that demonstrated a higher percent survival when intensively grazed and maintained a high hay yield. Bulldog 805 is a non-dormant variety that gives a longer growing season where the winter is mild and has a Fall Dormancy rating of 8. Bulldog 805 has a broad spectrum pest resistance. It has high resistance to Fusarium Wilt, Southern Root Knot Nematode, and is resistant to Phytophthora Root Rot. Bulldog 805 is a Nitrogen Fixation Plant , creating its own oxygen.Seeding Rate20 – 25 lbs. per acre. Use 20 lbs. per acre. when planting with a grass mixture.
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