Grass leaves have parallel venation .
No, not all dicot leaves have netted venation. While most dicot leaves do have netted venation, some dicot leaves have parallel venation, particularly those in the families Araceae and Arecaceae.
There are three main types of venation in plants: parallel venation, pinnate venation, and palmate venation. These venation patterns refer to the arrangement of veins in the leaves.
Cassia leaf has reticulate venation. This type of venation is generally found in dicot leaves.
Dicotyledonous leaf have reticulate venation and monocotyledonous leaf have parallel venation.
parellel venation
no,maize have parallel venation in leaves
Yes, it has a Reticulate Venation.
Grass leaves have parallel venation .
Grass leaves have parallel venation .
No, not all dicot leaves have netted venation. While most dicot leaves do have netted venation, some dicot leaves have parallel venation, particularly those in the families Araceae and Arecaceae.
reticuate venation
There are three main types of venation in plants: parallel venation, pinnate venation, and palmate venation. These venation patterns refer to the arrangement of veins in the leaves.
Pine leaves have parallel venation, where the veins of the leaf run parallel to each other from the base to the tip of the leaf. This venation helps in the efficient transport of water and nutrients throughout the leaf.
Oh, dude, gram leaves have parallel venation. It's like they're all about those straight lines, none of that fancy branching out like reticulate venation. Gram leaves are just like, "We're keeping it simple, okay?"
Yes, Tulsi plant leaves typically have reticulate venation, which means the veins branch off from a central midrib and form a network throughout the leaf. This pattern helps in the efficient transport of water, minerals, and nutrients within the leaf.
Corn has leaves with parallel venation as it is monocotyledonous