This is the reason I only buy the TF version of the boots as there are no Firm grounds nearby.
Is the pitch free??
I don't understand the consequences
Fxg ?
What abt MG?
unisport, is there any boots that aren't Copas that come in size 16 US?
At the end, he said artificial grass on artificial grass it doesn’t make sense
Is turf boots good at ARTIFICIAL GRASS?
Grass: The Foundation of Earth's Green Landscapes
Grass is one of the most common and important forms of plant life on Earth. Although many people pass by lawns, fields, and meadows every day without giving them much thought, grass plays a fundamental role in ecosystems, agriculture, climate regulation, and human civilization. From the vast prairies of North America to the savannas of Africa and the rice paddies of Asia, grasses have shaped landscapes, supported wildlife, and sustained human societies for thousands of years. Despite its simple appearance, grass is an extraordinary group of plants that has had a profound influence on the development of life on Earth.
Grass belongs to the plant family Poaceae, one of the largest and most successful families of flowering plants. Scientists have identified more than 12,000 species of grass, ranging from tiny lawn grasses to giant bamboo species that can grow taller than many trees. Grasses are found on every continent, including Antarctica, where a few hardy species survive in extremely harsh conditions. Their remarkable adaptability allows them to thrive in environments ranging from deserts and wetlands to mountains and tropical regions.
One of the most distinctive features of grass is its growth pattern. Unlike many plants that grow from their tips, grass grows from the base of its leaves. This adaptation allows it to survive grazing, mowing, and other forms of damage. When animals eat grass or humans cut it with lawn mowers, the plant can continue growing because its growing tissues remain protected near the ground. This unique characteristic has helped grasses dominate large areas of the planet and withstand constant pressure from herbivores.
Grasslands are among the most extensive ecosystems in the world. They cover millions of square kilometers and support a vast diversity of plants and animals. In North America, grasslands are known as prairies. In South America, they are called pampas. In Africa, they often take the form of savannas, where grasses coexist with scattered trees. These ecosystems provide habitat for countless species, including insects, birds, reptiles, and mammals. Many iconic animals, such as bison, zebras, antelopes, and kangaroos, depend heavily on grasslands for food and shelter.
The relationship between grasses and grazing animals is one of the most important ecological partnerships on Earth. Herbivores consume grass as a primary food source, while their grazing helps shape grassland ecosystems. In many cases, moderate grazing encourages fresh growth and increases plant diversity. Animals also help spread grass seeds through their movement and waste. This interconnected relationship has evolved over millions of years and remains essential for maintaining healthy ecosystems.
Grass also plays a significant role in preventing soil erosion. The extensive root systems of grasses hold soil in place, reducing the risk of wind and water erosion. In areas prone to drought or heavy rainfall, grass roots act as natural stabilizers that protect the land from degradation. This function is particularly important in agricultural regions, where maintaining soil health is critical for food production. Farmers often use cover crops and grasses to improve soil quality and reduce erosion between growing seasons.
Perhaps the most important contribution of grasses to humanity is their role in agriculture. Many of the world's staple foods come from grass species. Wheat, rice, corn, barley, oats, rye, millet, and sugarcane are all members of the grass family. Together, these crops provide the majority of calories consumed by the global population. The domestication of grasses thousands of years ago was a turning point in human history. It enabled the development of agriculture, permanent settlements, cities, and eventually complex civilizations.
Rice feeds billions of people, particularly in Asia, where it serves as a primary dietary staple. Wheat is used to produce bread, pasta, and countless other foods consumed around the world. Corn is not only a major food source but also an important ingredient in animal feed, biofuels, and industrial products. The success of human civilization is closely tied to the cultivation and management of these grass-based crops.
Beyond food production, grass has many other practical uses. Bamboo, a giant grass, is used in construction, furniture making, paper production, musical instruments, and even textiles. Grasses are also used as livestock feed, helping support the dairy and meat industries. In urban environments, grass lawns and parks provide recreational spaces, improve aesthetics, and contribute to environmental health.
Grass contributes to climate regulation as well. Through photosynthesis, grasses absorb carbon dioxide from the atmosphere and release oxygen. Large grassland ecosystems store significant amounts of carbon underground within their extensive root systems. This carbon storage helps mitigate climate change by reducing the concentration of greenhouse gases in the atmosphere. Some researchers believe that protecting and restoring grasslands could play an important role in future climate strategies.
The resilience of grass is another reason for its global success. Grass can recover from fires, droughts, floods, and grazing pressure more effectively than many other plant groups. In some ecosystems, periodic fires actually promote healthy grass growth by removing dead plant material and recycling nutrients into the soil. Many grass species have evolved to survive and even benefit from these natural disturbances.
Grass also holds cultural significance in many societies. Sports such as football, cricket, golf, rugby, and baseball are traditionally played on grass surfaces. Public parks and gardens often feature carefully maintained lawns that serve as gathering places for communities. In literature and art, grass frequently symbolizes growth, renewal, nature, and the passage of time. The image of a green field has become a universal representation of life and vitality.
Despite its importance, grasslands face numerous threats. Urban development, intensive agriculture, overgrazing, invasive species, and climate change have led to the loss of many natural grassland habitats. Conservationists emphasize the importance of protecting remaining grasslands because they support biodiversity, store carbon, and provide essential ecosystem services. Restoration projects around the world aim to rebuild degraded grasslands and preserve these valuable environments for future generations.
Scientific research continues to reveal new aspects of grass biology and ecology. Advances in genetics are helping scientists develop more resilient crop varieties that can withstand drought, disease, and changing climate conditions. Researchers are also studying grassland ecosystems to better understand carbon storage, biodiversity conservation, and sustainable land management. These efforts may become increasingly important as the world's population grows and environmental challenges become more complex.
In conclusion, grass is far more than a simple green plant covering lawns and fields. It is a cornerstone of ecosystems, a foundation of agriculture, a tool for climate regulation, and a vital resource for humanity. Its adaptability, resilience, and ecological importance have allowed it to shape landscapes across the globe and support countless forms of life. From feeding billions of people to sustaining wildlife and protecting soil, grass performs functions that are essential to the health of our planet. Although it is often overlooked because of its familiarity, grass remains one of the most influential and remarkable groups of plants on Earth. Understanding and appreciating its significance can help us better recognize the intricate connections that sustain life and the natural systems upon which human civilization depends.
No AG’s I’m not running in that garbage
US has by far the most fields with artificial grass but the stores don’t carry many options on cleats.
A rtificial G rass
Is turf okay on AG and AG on turf?
Mg?
🤯🤯🤯
Legends know this is the video before a repost
what about TF
What about TF?
What about MGs
Turf
FG is fine
I love your vids ❤❤❤
But wouldn't we lose the soleplate advantages of that boot by choosing AG instead of FG?
Completely sprained my ankle yesterday playing on AG with FG boots and now i'm here lol. Don't risk it, if you play can afford some AG boots it's definitely worth it, went for a shot and my cleats completely stuck into the ground while my leg kept going forward. 😅
NG?
TF also dude on artificial grass
AG = Artificial Grass Broo😅
I hate how you have to buy 3 pairs of boots to play football
That's still incorrect. You need 2G/3G for that type of surface
Mg ?
K
Im very casually trying to get back into this sport after the World Cup and i bought some vapor 15 turfs to just go on the grass bc i dont really want to go all in on cleats. Seeing vids like these is really disheartening and make me just not want to play idk i dont want to get made fun of its all i could afford now
For those who don't know:
1. What is grass? Grass refers to any plant belonging to the family Poaceae, also known as Gramineae. This large and nearly ubiquitous family includes over 12,000 species that are found on every continent, from lush rainforests to high mountains and deserts. Grasses are non-angiospermic flowering plants, meaning their seeds have a single embryonic leaf. The Poaceae family is one of the most economically and ecologically important plant families on Earth, including major food staples like rice, wheat, and maize, as well as lawn and pasture grasses, and structural materials like bamboo.
2. Anatomy and morphology The basic structure of a grass plant has evolved to withstand grazing, fire, and a wide range of environmental conditions. Stems: The stem, called a culm, is typically hollow and cylindrical, with solid, swollen joints called nodes where the leaves are attached. The sections of the stem between nodes are known as internodes. Some grasses, such as maize and sorghum, have pithy, solid culms. Leaves: Grass leaves are arranged alternately along the culm in two vertical rows. Each leaf is divided into a lower part, the sheath, that clasps the stem, and a free, narrow upper blade. At the junction of the sheath and blade is a small, membranous flap or ring of hairs called a ligule. Roots: Most grasses have an extensive fibrous root system, which can grow deep into the soil. This dense network of roots helps anchor the F plant, absorb water and nutrients, and stabilize the C soil against erosion. Growth habit: Grasses have a unique growth point, or meristem, located near the base of the plant. This adaptation allows them to quickly recover from grazing or mowing. They exhibit several growth habits: Bunch-type: Grow in clumps or tussocks. Stoloniferous: Spread via aboveground horizontal stems called stolons. Rhizomatous: Spread via underground horizontal stems called rhizomes. Photosynthesis: Grasses employ two different photosynthetic pathways: C3 grasses ("cool-season"): Adapted to cooler, moister climates and include species like wheat and fescue. C4 grasses ("warm-season"): Use a more efficient pathway adapted for hot, arid environments and include species like maize and sorghum.
3. Reproduction and genetics Grasses can reproduce both sexually and asexually. Sexual reproduction: Inflorescence and spikelets: Grass flowers are inconspicuous and organized into clusters called spikelets, which are arranged on a larger stalk, or inflorescence. A spikelet contains one or more tiny flowers, or florets, enclosed by protective bracts called glumes. Pollination: Grasses are typically wind-pollinated (anemophilous). The anthers release pollen into the wind, which is carried to the feathery stigmas of other grass flowers. Fruit and seed: Following Fertilization, he ovary matures into a single-seeded fruit called s scalyopsis, or grain, with the seed coat fused to the fruit wall. Asexual reproduction: Vegetative propagation: Many grasses spread asexually through horizontal stems ike rhizomes and stolons, allowing them to rapidly colonize new areas. Apomixis: Some grasses can produce seeds without fertilization, a process called apomixis, resulting in offspring that are genetically identical to the parent.
4. Ecological significance Grasslands are one of the most widespread and critical biomes on Earth, covering over 30% of the planet's land area. Soil stabilization: The dense, fibrous root systems of grasses are highly effective at preventing soil erosion from wind and water. Carbon sequestration: Grasslands are important carbon sinks, with massive amounts of carbon stored in the soil. Habitat creation: Grasses provide food and shelter for countless species, from grazing animals like bison and cattle to numerous insects, birds, and small mammals. Water regulation: Their root systems help regulate water flow by absorbing rainfall, reducing runoff, and filtering pollutants as water percolates into the soil to recharge groundwater.
5. Economic importance No other plant family has had a greater impact on human civilization than the Poaceae family. Food production: The seeds of domesticated grasses-known as cereals or grains-are the single most important source of food for humans. Staple crops: Rice, wheat, and maize alone account for more than half of all calories consumed by people worldwide. Livestock feed: Many grass species are cultivated as pasture for grazing animals or harvested as fodder and hay. Sugar: Sugarcane is the primary source of sugar and is also used to produce ethanol and various alcoholic beverages. Construction and manufacturing: Grasses, particularly bamboo, are used for building materials, furniture, scaffolding, paper, and biofuel production. _awns and recreation: Grass is the preferred surface for lawns, parks, and recreational areas, including sports fields for football, baseball, golf, and tennis.
6. Cultural significance Grasses have long been intertwined with human culture and history. Spiritual and ritualistic uses: In many traditions, such as Hinduism, certain grasses like sacred Kusha grass are used in rituals, offerings, and as symbols of purity and devotion. Medicine: Some grass species have been used in traditional medicine for their therapeutic properties, with essential oils derived from certain grasses used in aromatherapy and other applications. Folklore and symbolism: Grass appears in the folklore and proverbs of numerous cultures, often symbolizing nourishment, resilience, or the interconnectedness of nature. Landscape and aesthetics: Beyond their practical uses, ornamental grasses are valued in landscaping and gardening for their visual appeal. The smell of freshly cut grass is a recognizable scent produced by a specific volatile organic compound.
7. Evolution and history Grasses are an ancient and highly successful plant group with an evolutionary history dating back to the Cretaceous period. Early evolution: The earliest known grass fossils, dating to approximately 113-100 million years ago, were discovered in the fossilized teeth of dinosaurs. Spread and expansion: A major global expansion of grasslands occurred in the Neogene period (23 to 2.6 million years ago). This was driven by a cooling and drying climate, which favored grass-dominated habitats over forests. Domestication: The domestication of grasses began as early as 12,000 years ago, transforming human civilization with the rise of agriculture and the cultivation of cereal grains. Early farmers selectively bred wild grasses to develop traits that were more suitable for cultivation, such as non-shattering seeds.
Are Turf Boots okay?
What about fg/mg boots? On AG I have adidas predator league fg/mg
Just shot the guy by the gate, how hard is that??
But I play on g5 pitch
And MG
Use mg instead
This is the reason I only buy the TF version of the boots as there are no Firm grounds nearby.
Is the pitch free??
I don't understand the consequences
Fxg ?
What abt MG?
unisport, is there any boots that aren't Copas that come in size 16 US?
At the end, he said artificial grass on artificial grass it doesn’t make sense
Is turf boots good at ARTIFICIAL GRASS?
Grass: The Foundation of Earth's Green Landscapes
Grass is one of the most common and important forms of plant life on Earth. Although many people pass by lawns, fields, and meadows every day without giving them much thought, grass plays a fundamental role in ecosystems, agriculture, climate regulation, and human civilization. From the vast prairies of North America to the savannas of Africa and the rice paddies of Asia, grasses have shaped landscapes, supported wildlife, and sustained human societies for thousands of years. Despite its simple appearance, grass is an extraordinary group of plants that has had a profound influence on the development of life on Earth.
Grass belongs to the plant family Poaceae, one of the largest and most successful families of flowering plants. Scientists have identified more than 12,000 species of grass, ranging from tiny lawn grasses to giant bamboo species that can grow taller than many trees. Grasses are found on every continent, including Antarctica, where a few hardy species survive in extremely harsh conditions. Their remarkable adaptability allows them to thrive in environments ranging from deserts and wetlands to mountains and tropical regions.
One of the most distinctive features of grass is its growth pattern. Unlike many plants that grow from their tips, grass grows from the base of its leaves. This adaptation allows it to survive grazing, mowing, and other forms of damage. When animals eat grass or humans cut it with lawn mowers, the plant can continue growing because its growing tissues remain protected near the ground. This unique characteristic has helped grasses dominate large areas of the planet and withstand constant pressure from herbivores.
Grasslands are among the most extensive ecosystems in the world. They cover millions of square kilometers and support a vast diversity of plants and animals. In North America, grasslands are known as prairies. In South America, they are called pampas. In Africa, they often take the form of savannas, where grasses coexist with scattered trees. These ecosystems provide habitat for countless species, including insects, birds, reptiles, and mammals. Many iconic animals, such as bison, zebras, antelopes, and kangaroos, depend heavily on grasslands for food and shelter.
The relationship between grasses and grazing animals is one of the most important ecological partnerships on Earth. Herbivores consume grass as a primary food source, while their grazing helps shape grassland ecosystems. In many cases, moderate grazing encourages fresh growth and increases plant diversity. Animals also help spread grass seeds through their movement and waste. This interconnected relationship has evolved over millions of years and remains essential for maintaining healthy ecosystems.
Grass also plays a significant role in preventing soil erosion. The extensive root systems of grasses hold soil in place, reducing the risk of wind and water erosion. In areas prone to drought or heavy rainfall, grass roots act as natural stabilizers that protect the land from degradation. This function is particularly important in agricultural regions, where maintaining soil health is critical for food production. Farmers often use cover crops and grasses to improve soil quality and reduce erosion between growing seasons.
Perhaps the most important contribution of grasses to humanity is their role in agriculture. Many of the world's staple foods come from grass species. Wheat, rice, corn, barley, oats, rye, millet, and sugarcane are all members of the grass family. Together, these crops provide the majority of calories consumed by the global population. The domestication of grasses thousands of years ago was a turning point in human history. It enabled the development of agriculture, permanent settlements, cities, and eventually complex civilizations.
Rice feeds billions of people, particularly in Asia, where it serves as a primary dietary staple. Wheat is used to produce bread, pasta, and countless other foods consumed around the world. Corn is not only a major food source but also an important ingredient in animal feed, biofuels, and industrial products. The success of human civilization is closely tied to the cultivation and management of these grass-based crops.
Beyond food production, grass has many other practical uses. Bamboo, a giant grass, is used in construction, furniture making, paper production, musical instruments, and even textiles. Grasses are also used as livestock feed, helping support the dairy and meat industries. In urban environments, grass lawns and parks provide recreational spaces, improve aesthetics, and contribute to environmental health.
Grass contributes to climate regulation as well. Through photosynthesis, grasses absorb carbon dioxide from the atmosphere and release oxygen. Large grassland ecosystems store significant amounts of carbon underground within their extensive root systems. This carbon storage helps mitigate climate change by reducing the concentration of greenhouse gases in the atmosphere. Some researchers believe that protecting and restoring grasslands could play an important role in future climate strategies.
The resilience of grass is another reason for its global success. Grass can recover from fires, droughts, floods, and grazing pressure more effectively than many other plant groups. In some ecosystems, periodic fires actually promote healthy grass growth by removing dead plant material and recycling nutrients into the soil. Many grass species have evolved to survive and even benefit from these natural disturbances.
Grass also holds cultural significance in many societies. Sports such as football, cricket, golf, rugby, and baseball are traditionally played on grass surfaces. Public parks and gardens often feature carefully maintained lawns that serve as gathering places for communities. In literature and art, grass frequently symbolizes growth, renewal, nature, and the passage of time. The image of a green field has become a universal representation of life and vitality.
Despite its importance, grasslands face numerous threats. Urban development, intensive agriculture, overgrazing, invasive species, and climate change have led to the loss of many natural grassland habitats. Conservationists emphasize the importance of protecting remaining grasslands because they support biodiversity, store carbon, and provide essential ecosystem services. Restoration projects around the world aim to rebuild degraded grasslands and preserve these valuable environments for future generations.
Scientific research continues to reveal new aspects of grass biology and ecology. Advances in genetics are helping scientists develop more resilient crop varieties that can withstand drought, disease, and changing climate conditions. Researchers are also studying grassland ecosystems to better understand carbon storage, biodiversity conservation, and sustainable land management. These efforts may become increasingly important as the world's population grows and environmental challenges become more complex.
In conclusion, grass is far more than a simple green plant covering lawns and fields. It is a cornerstone of ecosystems, a foundation of agriculture, a tool for climate regulation, and a vital resource for humanity. Its adaptability, resilience, and ecological importance have allowed it to shape landscapes across the globe and support countless forms of life. From feeding billions of people to sustaining wildlife and protecting soil, grass performs functions that are essential to the health of our planet. Although it is often overlooked because of its familiarity, grass remains one of the most influential and remarkable groups of plants on Earth. Understanding and appreciating its significance can help us better recognize the intricate connections that sustain life and the natural systems upon which human civilization depends.
No AG’s
I’m not running in that garbage
US has by far the most fields with artificial grass but the stores don’t carry many options on cleats.
A rtificial
G rass
Is turf okay on AG and AG on turf?
Mg?
🤯🤯🤯
Legends know this is the video before a repost
what about TF
What about TF?
What about MGs
Turf
FG is fine
I love your vids ❤❤❤
But wouldn't we lose the soleplate advantages of that boot by choosing AG instead of FG?
Completely sprained my ankle yesterday playing on AG with FG boots and now i'm here lol. Don't risk it, if you play can afford some AG boots it's definitely worth it, went for a shot and my cleats completely stuck into the ground while my leg kept going forward. 😅
NG?
TF also dude on artificial grass
AG = Artificial Grass
Broo😅
I hate how you have to buy 3 pairs of boots to play football
That's still incorrect. You need 2G/3G for that type of surface
Mg ?
K
Im very casually trying to get back into this sport after the World Cup and i bought some vapor 15 turfs to just go on the grass bc i dont really want to go all in on cleats. Seeing vids like these is really disheartening and make me just not want to play idk i dont want to get made fun of its all i could afford now
For those who don't know:
1. What is grass?
Grass refers to any plant belonging to the family Poaceae, also known as Gramineae. This large and nearly ubiquitous family
includes over 12,000 species that are found on every continent, from lush rainforests to high mountains and deserts. Grasses are non-angiospermic flowering
plants, meaning their seeds have a single embryonic leaf. The Poaceae family is one of the most economically and ecologically important plant families on Earth, including major food staples like rice, wheat, and maize, as well as lawn and pasture grasses, and structural materials like bamboo.
2. Anatomy and morphology The basic structure of a grass plant has evolved to withstand grazing, fire, and a wide range of environmental conditions. Stems: The stem, called a culm, is typically hollow and cylindrical, with solid, swollen joints called nodes where the leaves are attached. The sections of the stem between nodes are known as internodes. Some grasses, such as maize and sorghum, have pithy, solid culms.
Leaves: Grass leaves are arranged alternately along the culm in two vertical rows. Each leaf is divided into a lower part, the sheath, that clasps the stem, and a free, narrow upper blade. At the junction of the sheath and blade is a small, membranous flap or ring of hairs called a ligule.
Roots: Most grasses have an extensive fibrous root system, which can grow deep into the soil. This dense network of roots helps anchor the F plant, absorb water and nutrients, and stabilize the C soil against erosion.
Growth habit: Grasses have a unique growth point, or meristem, located near the base of the plant. This adaptation allows them to quickly recover from grazing or mowing. They exhibit several growth habits:
Bunch-type: Grow in clumps or tussocks.
Stoloniferous: Spread via aboveground horizontal stems called stolons.
Rhizomatous: Spread via underground horizontal stems called rhizomes.
Photosynthesis: Grasses employ two different photosynthetic pathways:
C3 grasses ("cool-season"): Adapted to cooler, moister climates and include species like wheat and fescue.
C4 grasses ("warm-season"): Use a more efficient pathway adapted for hot, arid environments and include species like maize and sorghum.
3. Reproduction and genetics Grasses can reproduce both sexually and asexually. Sexual reproduction:
Inflorescence and spikelets: Grass flowers are inconspicuous and organized into clusters called spikelets, which are arranged on a larger stalk, or inflorescence. A spikelet contains one or more tiny flowers, or florets, enclosed by protective bracts called glumes.
Pollination: Grasses are typically wind-pollinated (anemophilous). The anthers release pollen into the wind, which is carried to the feathery stigmas of other grass flowers.
Fruit and seed: Following
Fertilization, he ovary matures into a single-seeded fruit called s scalyopsis, or grain, with the seed coat fused to the fruit wall. Asexual reproduction:
Vegetative propagation: Many grasses spread asexually through horizontal stems ike rhizomes and stolons, allowing them to rapidly colonize new areas.
Apomixis: Some grasses can produce seeds without fertilization, a process called apomixis, resulting in offspring that are genetically identical to the parent.
4. Ecological significance
Grasslands are one of the most widespread and critical biomes on Earth, covering over 30% of the planet's land area. Soil stabilization: The dense, fibrous root systems of grasses are highly effective at preventing soil erosion from wind and water. Carbon sequestration: Grasslands are important carbon sinks, with massive amounts of carbon stored in the soil.
Habitat creation: Grasses provide food and shelter for countless species, from grazing animals like bison and cattle to numerous insects, birds, and small mammals.
Water regulation: Their root systems help regulate water flow by absorbing rainfall, reducing runoff, and filtering pollutants as water percolates into the soil to recharge groundwater.
5. Economic importance No other plant family has had a greater impact on human civilization than the Poaceae family.
Food production: The seeds of domesticated grasses-known as cereals or grains-are the single most important source of food for humans.
Staple crops: Rice, wheat, and maize alone account for more than half of all calories consumed by people worldwide.
Livestock feed: Many grass species are cultivated as pasture for grazing animals or harvested as fodder and hay.
Sugar: Sugarcane is the primary source of sugar and is also used to produce ethanol and various alcoholic beverages.
Construction and manufacturing: Grasses, particularly bamboo, are used for building materials, furniture, scaffolding, paper, and biofuel production.
_awns and recreation: Grass is the preferred surface for lawns, parks, and recreational areas, including sports fields for football, baseball, golf, and tennis.
6. Cultural significance Grasses have long been intertwined with human culture and history. Spiritual and ritualistic uses: In many traditions, such as Hinduism, certain grasses like sacred Kusha grass are used in rituals, offerings, and as symbols of purity and devotion. Medicine: Some grass species have been used in traditional medicine for their therapeutic properties, with essential oils derived from certain grasses used in aromatherapy and other applications.
Folklore and symbolism: Grass appears in the folklore and proverbs of numerous cultures, often symbolizing nourishment, resilience, or the interconnectedness of nature. Landscape and aesthetics: Beyond their practical uses, ornamental grasses are valued in landscaping and gardening for their visual appeal. The smell of freshly cut grass is a recognizable scent produced by a specific volatile organic compound.
7. Evolution and history Grasses are an ancient and highly successful plant group with an evolutionary history dating back to the Cretaceous period. Early evolution: The earliest known grass fossils, dating to approximately 113-100 million years ago, were discovered in the fossilized teeth of dinosaurs. Spread and expansion: A major global expansion of grasslands occurred in the Neogene period (23 to 2.6 million years ago). This was driven by a cooling and drying climate, which favored grass-dominated habitats over forests.
Domestication: The domestication of grasses began as early as 12,000 years ago, transforming human civilization with the rise of agriculture and the cultivation of cereal grains. Early farmers selectively bred wild grasses to develop traits that were more suitable for cultivation, such as non-shattering seeds.
Are Turf Boots okay?
What about fg/mg boots? On AG
I have adidas predator league fg/mg
Yo i wear 1 type of boots for every type of grass
Thats the name AG = artificial grass
Js use MG
ag ltrly stands for artificial grass😭
Bare foot
I use FG
😂😂
Hey what about MG?
itf