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Thigmotropism

191 Sentences | 10 Meanings

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The climbing rose displayed thigmotropism as its tendrils sought out the support of the trellis.
The tomato plants showed thigmotropism as they leaned towards the neighboring fence.
The Venus flytrap's leaves snapped shut when an insect landed on them, a result of thigmotropism.
The vine displayed thigmotropism by wrapping its tendrils around the wooden trellis.
The textbook explains the concept of thigmotropism in simple terms.
The ivy displayed thigmotropism by attaching itself to the wall for support.
The ivy on the old brick wall demonstrates thigmotropism as it grows closer to the sunlight by reaching out towards any available surface.
The trailing plant extended its vines towards the neighboring branches, guided by thigmotropism.
The study of thigmotropism helps us understand how plants adapt to their environment.
The tendrils of the pea plant grasped onto the trellis, driven by thigmotropism.
The ivy plant demonstrates thigmotropism as it wraps its tendrils around a trellis for support.
Thigmotropism plays a significant role in how climbing plants find support structures to grow.
The sunflower's stem displays thigmotropism, bending towards the direction of sunlight throughout the day.
The morning glory vines twined around the nearby plants, utilizing thigmotropism for support.
The indoor plant leaned towards the window, indicating thigmotropism in response to the breeze.
The touch-sensitive mimosa plant demonstrates thigmotropism by rapidly closing its leaflets when disturbed.
The sunflower's stem bent towards the sunlight due to thigmotropism.
The ivy plant demonstrates thigmotropism as it spreads and attaches itself to walls.
The climbing rose uses thigmotropism to latch onto trellises and fences for support.
The touch-me-not plant releases its seeds when touched, an intriguing example of thigmotropism.
The Venus flytrap exhibits thigmotropism when its leaves close upon contact with prey.
The morning glory plant displayed thigmotropism as its delicate tendrils curled around the wire mesh for stability.
The Venus flytrap snaps shut its trap when an insect triggers its thigmotropism response.
The branches of the willow tree drooped downwards, an example of thigmotropism.
The sensitive plant closes its leaves when touched, a classic example of thigmotropism.
Researchers are studying the genetic mechanisms behind thigmotropism to understand how plants perceive touch.
The vines of the ivy plant exhibit thigmotropism as they climb and attach themselves to the trellis.
The touch-me-not plant showcases thigmotropism by releasing its seeds when its pods are touched or disturbed.
The climbing rose demonstrates thigmotropism as its stems reach out and cling to nearby structures for support.
The venus flytrap exhibits thigmotropism as its trap closes tightly around an insect that lands on its trigger hairs.
Thigmotropism is an example of how plants have evolved complex sensory systems to interact with their surroundings.
The climbing rose showed thigmotropism as it latched onto the metal fence for support.
The tendrils of the pea plant exhibit thigmotropism as they coil around a nearby support.
The young bean plants use thigmotropism to locate and wrap their tendrils around a trellis for vertical growth.
The creeping vine's thigmotropism enabled it to crawl along the ground and attach to nearby objects.
The bean plant's tendrils reached out and latched onto the neighboring plant through thigmotropism.
The tendrils of a pea plant utilize thigmotropism to coil around trellises, aiding in vertical growth.
The tendrils of the grapevine exhibit thigmotropism as they coil around nearby structures for support.
The Venus flytrap showcases an impressive thigmotropism response by rapidly closing its leaves when an insect touches its trigger hairs.
The sunflower leaned towards the sunlight, a result of thigmotropism.
The sensitive plant closed its leaves as soon as it was touched, displaying thigmotropism.
The Venus flytrap snapped shut when a fly landed on its trigger hairs, a remarkable display of thigmotropism.
Some carnivorous plants, such as the pitcher plant, exhibit thigmotropism by using downward-pointing hairs to guide prey into their digestive traps.
The tendrils of the pea plant reached out and touched the nearby support, exhibiting thigmotropism.
The sunflower follows the movement of the sun throughout the day, displaying thigmotropism as it tilts its flower towards the sunlight.
The ivy plant extended its tendrils and climbed the wall due to thigmotropism.
Some trees exhibit thigmotropism by developing thicker bark in response to frequent contact with strong winds.
The touch-me-not plant releases its seeds upon thigmotropism, which occurs when the seed pods are touched or disturbed.
The Venus flytrap exhibits thigmotropism when its trap snaps shut upon contact with prey.
The climbing vine's thigmotropism allows it to wrap tightly around a support structure for stability.
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