Q.Archaebacteria are placed in a group separate from other bacteria mainly because of a difference in the:
Concept understanding — Kingdom Monera
Kingdom Monera – The First Kingdom You Meet
Imagine the smallest living thing you can think of. Now imagine something even smaller, so tiny that a million of them could fit on the head of a pin. These are the bacteria. They are everywhere — in the soil, in the water, on your skin, inside your gut, even in boiling hot springs and Antarctic ice. They were the first life forms on Earth, and they still dominate the planet by sheer numbers.
Now, here is the key intuition: when you look at a human cell, a plant cell, or a fungal cell under a microscope, you see a neat, organised interior. There is a round, dark nucleus that holds the DNA, like a control room. Around it are little membrane-bound compartments — mitochondria, chloroplasts, the Golgi apparatus — each doing a specific job. Biologists call this arrangement eukaryotic (from Greek eu = true, karyon = kernel/nucleus).
Bacteria are different. They have no nucleus. Their DNA floats freely in the cell, in a region called the nucleoid. They have no membrane-bound organelles — no mitochondria, no chloroplasts, no Golgi. This simpler, more ancient design is called prokaryotic (from Greek pro = before, karyon = nucleus). The Kingdom Monera is simply the kingdom that groups together all these prokaryotic organisms.
Kingdom Monera = All prokaryotic organisms (bacteria). Prokaryotic means no true nucleus and no membrane-bound organelles.
The Precise Statement
Kingdom Monera is one of the five kingdoms in the Whittaker system of classification (1969). It includes all unicellular, prokaryotic microorganisms. The defining characteristics are:
- Cell type: Prokaryotic — DNA is not enclosed within a nuclear membrane.
- Organelles: No membrane-bound organelles (no mitochondria, chloroplasts, endoplasmic reticulum, etc.).
- Cell wall: Present in most, made of peptidoglycan (a unique polymer not found in plants or fungi).
- Nutrition: Extremely diverse — some are autotrophic (photosynthetic or chemosynthetic), others are heterotrophic (saprophytic, parasitic, or symbiotic).
- Reproduction: Primarily asexual — binary fission (simple splitting into two), though some can exchange genetic material through conjugation, transformation, or transduction.
- Habitat: Ubiquitous — found in every conceivable environment on Earth.
Kingdom Monera = Prokaryotes = Bacteria (including Cyanobacteria/blue-green algae, though those are now often placed in a separate domain, Eubacteria).
What This Means for You
When you hear "Kingdom Monera" in an exam, immediately think: bacteria with no nucleus. Do not confuse them with protists (which are mostly unicellular but eukaryotic) or with fungi (which are eukaryotic and have a true nucleus). The single most important distinction is the presence or absence of a nuclear membrane.
A common mistake is to think that all unicellular organisms are in Monera. They are not. Amoeba and Paramecium are unicellular but eukaryotic — they belong to Kingdom Protista. Monera is exclusively prokaryotic.
A Quick Look at the Diversity Within Monera
| Group | Example | Key Feature |
|---|---|---|
| True bacteria (Eubacteria) | E. coli, Salmonella | Most common; cell wall with peptidoglycan |
| Cyanobacteria (Blue-green algae) | Nostoc, Anabaena | Photosynthetic; contain chlorophyll but no chloroplast |
| Archaebacteria | Methanogens, Halophiles | Live in extreme environments; cell wall lacks peptidoglycan |
Modern classification (the three-domain system) splits Monera into two domains: Bacteria and Archaea. But for your current syllabus, the five-kingdom system treats them all as one kingdom — Monera.
Why This Matters
Understanding Monera is the foundation for everything else in microbiology. When you later study diseases, antibiotics, nitrogen fixation, or genetic engineering, you will be working with bacteria. Knowing that they are prokaryotic explains why antibiotics like penicillin work — they target the bacterial cell wall (peptidoglycan) without harming our eukaryotic cells, which have no such wall.
Kingdom Monera: the simplest, most ancient, and most abundant life form — defined by the absence of a nucleus.
This topic belongs to the CBSE Class 11 Biology chapter on Biological Classification, and is a common source of NEET Biology questions on microbial and lower-organism diversity. Frequent searches include "Kingdom Monera: characteristics and examples" and "Kingdom Monera class 11 biology diagram".
[!TLDR]
Archaebacteria are set apart from other bacteria mainly by the distinct chemical composition of their cell wall.
[!ANSWER]
(b) Chemistry of their cell wall
Archaebacteria differ from Eubacteria most fundamentally in the chemical composition of their cell wall, an adaptation that allows them to survive in the extreme habitats they are often found in -- extremely salty areas (halophiles), hot springs (thermoacidophiles), and marshy areas (methanogens). Cell shape is not a distinguishing feature between the two groups (both include cocci, bacilli, and other shapes), nutrition alone does not separate them (both groups contain autotrophs and heterotrophs), and neither group possesses a nuclear membrane, since both are prokaryotic.
[!ANSWER]
(b) Chemistry of their cell wall
Compare the four options against the defining feature of Archaebacteria taught in the Kingdom Monera section.
Confusing the wall-chemistry distinction with the presence/absence of a nuclear membrane, which is identical (absent) in both archaebacteria and eubacteria.
- CBSE 2026Set ANNUAL1 markMCQQ.Which does not have a nuclear membrane?(a) Penicillium(b) Agaricus(c) Volvox(d) Nostoc
›Reveal solutionSolution
Among the four options, only Nostoc is a prokaryote and therefore the only one without a nuclear membrane.
A defining feature separating Kingdom Monera from all other kingdoms is the absence of a membrane-bound nucleus:
-
Penicillium — a fungus (Kingdom Fungi), eukaryotic, has a true nucleus.
-
Agaricus — the common mushroom, also a fungus, eukaryotic.
-
Volvox — a colonial green alga (Kingdom Protista), eukaryotic.
-
Nostoc — a filamentous cyanobacterium (blue-green alga), placed in Kingdom Monera. Its DNA lies free in the cytoplasm as a nucleoid region, not enclosed by a nuclear envelope, and it also lacks other membrane-bound organelles.
✓Final answerThe correct option is (d) Nostoc — it is the only prokaryote among the four, so it is the one without a nuclear membrane.
-
- CBSE 2026Set ANNUAL1 markMCQQ.Which of the following kingdoms has organisms with peptidoglycan in their cell wall ?(a) Protista(b) Fungi(c) Plantae(d) Monera
›Reveal solutionSolution
Peptidoglycan is found in bacterial cell walls, i.e. kingdom Monera, so the answer is (D).
Different groups build their cell walls from different materials:
- Monera (bacteria) — peptidoglycan (also called murein).
- Fungi — chitin.
- Plantae — cellulose.
- Protista — variable (often cellulose or silica), but not peptidoglycan.
Peptidoglycan is a mesh of sugars and amino acids and is the defining cell-wall polymer of true bacteria, placing them in kingdom Monera.
✓Final answer(D) Monera.
- CBSE 2025Set botany-hz1 markMCQQ.Which of the following is a prokaryote?(a) Amoeba(b) Bacteria(c) Spirogyra(d) Euglena
›Reveal solutionSolution
Bacteria are prokaryotic (no true nucleus); Amoeba, Spirogyra and Euglena all possess a well-defined, membrane-bound nucleus and are therefore eukaryotic.
Cells are broadly of two types based on nuclear organisation:
- Prokaryotic cells lack a nuclear membrane, so the genetic material (nucleoid) lies directly in the cytoplasm; they also lack most membrane-bound cell organelles. Bacteria (Kingdom Monera) are the classic example.
- Eukaryotic cells possess a true nucleus enclosed by a nuclear membrane, along with membrane-bound organelles such as mitochondria, ER and Golgi bodies.
Checking each option:
- (a) Amoeba — a unicellular protozoan (Kingdom Protista), eukaryotic.
- (b) Bacteria — Kingdom Monera, prokaryotic.
- (c) Spirogyra — a filamentous green alga (Kingdom Plantae/Protista depending on scheme), eukaryotic.
- (d) Euglena — a flagellated protist (Kingdom Protista), eukaryotic.
Only bacteria among these are prokaryotic.
✓Final answerThe correct option is (b) Bacteria — the only prokaryote among the four; Amoeba, Spirogyra and Euglena are all eukaryotes.
- CBSE 2025Set ANNUAL1 markQ.Write the answer in one sentence: What is the extra circular DNA of bacteria called?
›Reveal solutionSolution
The extra circular DNA found in bacteria in addition to the main chromosome is called a plasmid.
Bacterial cells (Kingdom Monera) typically have a single, large, circular chromosome carrying most of their genes. In addition, many bacteria carry one or more small, independently-replicating circular DNA molecules called plasmids. Plasmids often carry genes that are not essential for normal growth but confer selective advantages, such as antibiotic resistance, and are widely used as vectors in genetic engineering.
✓Final answerThe extra circular DNA of bacteria is called a plasmid.
- CBSE 2022Set ANNUAL1 markMCQQ.Nuclear membrane is absent in(a) Monera(b) Protista(c) Fungi(d) Plantae
›Reveal solutionSolution
Prokaryotic kingdom lacking a nuclear membrane = Monera → (a).
-
In Whittaker's five-kingdom system, Kingdom Monera contains prokaryotes whose genetic material lies free in the cytoplasm — no nuclear membrane.
-
Protista, Fungi and Plantae are all eukaryotic with a true nucleus.
✓Final answer(a) Monera.
-
🎓Unlock everything free for 14 days
- ✓Full step-by-step solutions
- ✓Concept-first explanations
- ✓Methods, shortcuts & mistakes
- ✓PYQ mapping + timed mock tests
Full access for 14 days. No credit card required.