Lilies typically have parallel venation in their leaves, where the veins run parallel to each other from the base to the tip of the leaf. This is characteristic of monocotyledonous plants like lilies.
Nerium oleander, commonly known as oleander, exhibits a parallel venation pattern. This means that the veins run parallel to each other along the length of the leaf. This type of venation is characteristic of many monocotyledonous plants, although oleander itself is a dicot. The parallel arrangement contributes to the leaf's structural integrity and ability to efficiently transport water and nutrients.
parallel
No, it has reticulate venation
No, marigold has reticulate venation in its leaves.
Lilies typically have parallel venation in their leaves, where the veins run parallel to each other from the base to the tip of the leaf. This is characteristic of monocotyledonous plants like lilies.
Nerium oleander, commonly known as oleander, exhibits a parallel venation pattern. This means that the veins run parallel to each other along the length of the leaf. This type of venation is characteristic of many monocotyledonous plants, although oleander itself is a dicot. The parallel arrangement contributes to the leaf's structural integrity and ability to efficiently transport water and nutrients.
parallel venation
Parallel venation
parallel venation
Parallel venation.
The canna 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
No, it has reticulate venation
the leaf of a maize plant has parallel venation