whether chilli platnt is retuculate or venation
D. Papaya has reticulate venation while the others all have parallel venation.
Yes, pea plants exhibit a type of venation known as reticulate venation, not parallel venation. In reticulate venation, the veins form a branching network that resembles a web. This contrasts with parallel venation, where veins run parallel to each other, typically seen in monocots like grasses. Thus, peas do not have parallel venation.
parallel
viens to grow bigger Because palms belong to monocotyledons and almost all monocots have leaves with parallel venation.
Basil leaves exhibit a type of venation known as "pinnate venation," rather than parallel venation. In pinnate venation, there is a central midrib with smaller veins branching off from it. On the other hand, parallel venation, where veins run parallel to each other, is commonly found in grasses and some other plant families. Therefore, basil does not have parallel venation.
parallel venation
Parallel venation
D. Papaya has reticulate venation while the others all have parallel venation.
parallel venation
Parallel venation.
Yes, bay leaves (Laurus nobilis) exhibit parallel venation. This means that the leaf's veins run parallel to each other from the base to the tip of the leaf. Parallel venation is characteristic of certain plant families, including monocots, but bay leaves belong to the Lauraceae family, which can exhibit various venation patterns. However, their leaves often display a slightly curved or arching appearance, which may create a visual effect similar to parallel venation.
The canna have parallel venation.
Yes, pea plants exhibit a type of venation known as reticulate venation, not parallel venation. In reticulate venation, the veins form a branching network that resembles a web. This contrasts with parallel venation, where veins run parallel to each other, typically seen in monocots like grasses. Thus, peas do not have parallel venation.
parallel
Parallel venation is when the veins in a leaf run parallel to each other, while reticulate venation is when the veins in a leaf form a branching network. Plants with parallel venation are typically monocots, while plants with reticulate venation are typically dicots.
Corn has leaves with parallel venation as it is monocotyledonous
Wheat exhibits parallel venation, which is characteristic of monocotyledonous plants. In this type of venation, the veins run parallel to each other along the length of the leaf, giving it a streamlined appearance. This adaptation is common among grasses and contributes to their efficient photosynthesis and water management.