準1級 - リーディング
菌根ネットワークと森林の生態
3回解答
普通
準1級 - リーディング
菌根ネットワークと森林の生態
3回解答
普通
The Wood Wide Web
For centuries, forests have been viewed primarily as battlegrounds where trees ruthlessly compete for sunlight, water, and soil nutrients. However, recent scientific discoveries have fundamentally shifted this perspective. Beneath the forest floor lies a vast, complex network of fungi known as the mycorrhizal network. Often dubbed the "Wood Wide Web," this subterranean web connects the roots of almost all the trees in a forest, allowing them to interact in ways previously thought impossible.
The relationship between the fungi and the trees is mutually beneficial. Fungi cannot photosynthesize, meaning they cannot produce their own food. Instead, they absorb essential minerals and moisture from the soil and deliver them to the trees' roots. In exchange, the trees provide the fungi with carbon-rich sugars produced during photosynthesis. This symbiotic exchange is the foundation of the network, but its functions extend far beyond simple nutrient trading.
Pioneering research by ecologist Suzanne Simard has demonstrated that trees use this fungal network to actively support one another. For instance, older, larger trees—often called "hub trees" or "mother trees"—use the network to supply excess nutrients to younger saplings struggling in the shade. Furthermore, if a tree is attacked by insects, it can send chemical warning signals through the network to neighboring trees, prompting them to increase their own defensive enzymes. This incredible system shows that a forest is not merely a collection of isolated individuals competing for survival, but rather a deeply cooperative and interdependent community.
What does the passage say about the relationship between fungi and trees?
According to Suzanne Simard's research, how do older "hub trees" assist younger saplings?
What is the main conclusion drawn from the discovery of the mycorrhizal network?
The Wood Wide Web
For centuries, forests have been viewed primarily as battlegrounds where trees ruthlessly compete for sunlight, water, and soil nutrients. However, recent scientific discoveries have fundamentally shifted this perspective. Beneath the forest floor lies a vast, complex network of fungi known as the mycorrhizal network. Often dubbed the "Wood Wide Web," this subterranean web connects the roots of almost all the trees in a forest, allowing them to interact in ways previously thought impossible.
The relationship between the fungi and the trees is mutually beneficial. Fungi cannot photosynthesize, meaning they cannot produce their own food. Instead, they absorb essential minerals and moisture from the soil and deliver them to the trees' roots. In exchange, the trees provide the fungi with carbon-rich sugars produced during photosynthesis. This symbiotic exchange is the foundation of the network, but its functions extend far beyond simple nutrient trading.
Pioneering research by ecologist Suzanne Simard has demonstrated that trees use this fungal network to actively support one another. For instance, older, larger trees—often called "hub trees" or "mother trees"—use the network to supply excess nutrients to younger saplings struggling in the shade. Furthermore, if a tree is attacked by insects, it can send chemical warning signals through the network to neighboring trees, prompting them to increase their own defensive enzymes. This incredible system shows that a forest is not merely a collection of isolated individuals competing for survival, but rather a deeply cooperative and interdependent community.
What does the passage say about the relationship between fungi and trees?
According to Suzanne Simard's research, how do older "hub trees" assist younger saplings?
What is the main conclusion drawn from the discovery of the mycorrhizal network?