Q.Pith is small or inconspicuous in ............. .
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🔒 Start your 14-day free trial to unlock the full solution →Concept understanding — Dicot Root Anatomy
Dicot Root Anatomy – From Intuition to Precision
Think of a root as a plant's underground anchor and straw. It holds the plant in place and sucks up water and minerals from the soil. But the root isn't a simple pipe — it has a layered internal structure, each layer with a specific job. In a dicot root (like a bean or a sunflower), that structure is especially neat and orderly.
The key idea: everything is arranged in concentric rings, with the water-conducting tissue (xylem) forming a star-like pattern in the centre. That star is the hallmark of a dicot root.
The Big Picture: Layers from Outside In
If you cut a dicot root crosswise and look under a microscope, you see these layers, starting from the outside:
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Epidermis – the outermost single layer of cells. It has root hairs that increase surface area for water absorption. No cuticle here — water must get in easily.
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Cortex – a thick region of loosely packed, thin-walled cells. These store food and allow water to move sideways (radially) toward the centre. The cortex is the largest region in a young dicot root.
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Endodermis – a single layer of tightly packed cells that acts as a checkpoint. Each cell has a Casparian strip — a band of suberin (a waterproof substance) that forces water to pass through the cells (not between them), giving the plant control over what enters the vascular cylinder.
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Pericycle – a layer of cells just inside the endodermis. These cells retain the ability to divide. They give rise to lateral roots (branch roots) and, in older roots, the cambium that produces secondary growth.
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Vascular bundles – the central transport system. This is where the radial arrangement becomes visible.
The Star in the Centre: Radial Vascular Bundles
Here is the precise, exam-relevant fact: In a dicot root, the xylem and phloem are arranged in separate, alternating bundles along the same radius — this is called a radial vascular bundle.
- Xylem forms 2, 3, 4, or sometimes 5 distinct arms (strands) that radiate outward from the centre like spokes of a wheel. Between these arms lies the pith (often very small or absent in dicot roots).
- Phloem occupies the spaces between the xylem arms — so xylem and phloem never lie on the same radius. They alternate.
Number of xylem strands = number of phloem patches. A root with 4 xylem arms (tetrarch) has 4 phloem patches. This number is fixed for a given species and is a key identification feature.
The xylem arms are exarch — the protoxylem (first-formed, smaller vessels) lies toward the periphery, and the metaxylem (later-formed, larger vessels) lies toward the centre. This is opposite to the condition in a stem.
Why This Arrangement?
The radial pattern is an adaptation for efficient water uptake. Water entering from the soil moves radially through the cortex, passes the endodermal checkpoint, and reaches the pericycle. From there, it enters the nearest xylem arm directly — no long sideways travel needed. The alternating phloem sits safely between the xylem arms, receiving sugars from the shoot without interfering with water flow. …
In the anatomy of a dicotyledonous root, the vascular bundles are radial and confined mostly to the centre of the root, leaving very little parenchymatous tissue at the very centre, so the pith is small or often absent altogether — unlike …
Pith is small or inconspicuous in dicotyledonous roots, because the xylem there often extends right to the centre.
In root anatomy, the vascular tissue is arranged radially, with xylem and phloem on alternating radii, and a small amount of parenchymatous ground tissue, the pith, at the very centre.
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- CBSE 2025Set ANNUAL1 markQ.Pith is small or inconspicuous in ............. .
›Reveal solutionSolution
Pith is small or inconspicuous in dicotyledonous roots, because the xylem there often extends right to the centre.
In root anatomy, the vascular tissue is arranged radially, with xylem and phloem on alternating radii, and a small amount of parenchymatous ground tissue, the pith, at the very centre.
…
- CBSE 2020Set botany1 markMCQQ.Number of vascular bundles in Dicot root is:(a) 2(b) 6(c) 10(d) 2-6
›Reveal solutionSolution
A dicot root shows a diarch to hexarch condition, meaning it has anywhere from 2 to 6 radially-arranged xylem (vascular) bundles — option (D).
In the radial vascular bundle of a root, xylem and phloem lie on separate radii, with xylem being exarch (protoxylem towards the periphery, metaxylem towards the centre). The number of xylem strands (and therefore the number of vascular bundles) is used to name the condition:
- Diarch = 2 xylem bundles
- Triarch = 3
- Tetrarch = 4
- Pentarch = 5
- Hexarch = 6 …
- CBSE 2019Set ANNUAL1 markMCQQ.Casparian thickening is found in(a) Pericycle of root(b) Endodermis of root(c) Pericycle of stem(d) Endodermis of stem
›Reveal solutionSolution
Casparian strips are waterproof bands of suberin/lignin on the radial and tangential walls of root endodermal cells.
The endodermis is the innermost layer of the root cortex, forming a compact ring around the vascular tissue. Its cells develop a band-like thickening called the Casparian strip, made of suberin (a waterproof, fatty substance) and lignin, deposited on the radial and transverse (tangential) walls of endodermal cells — never on the outer or inner tangential walls facing the cortex/pericycle.
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