Levels of organisation
FoundationUse this when revising cell, tissue, organ and organ-system basics.
- Cell structure and tissue type questions often start from this ladder.
- Useful for physiology and anatomy-based elimination.

Ultra-detailed topic weightage, repeat clusters, 65th-71st shift, 71st-specific fingerprint, and micro-revision strategy.
This page maps the uploaded 35-page Biology/Life Science compilation as a question bank, not as a textbook. The aim is to identify where BPSC repeatedly returns, what has become more conceptual in recent papers, and exactly what an aspirant should revise inside each topic.
The source is a compiled PYQ bank, so the page distinguishes printed question entries from identifiable exam-reference tags. This prevents false precision.
Use bank density to identify recurring conceptual zones. For final BPSC CCE revision, give extra weight to themes that recur in core Prelims and also appear again in 65th-71st papers. Allied questions are useful because they reveal BPSC's broader question-writing vocabulary, especially in biology definitions, human physiology, and plant science.
Because this is a Biology page, these compact diagrams give a fast visual memory hook for the exact kinds of zones the PYQ bank repeatedly touches—foundations, genetics/biotech, and plant physiology.
Use this when revising cell, tissue, organ and organ-system basics.
A clean memory route for DNA, RNA, gene expression, mutation, and biotechnology questions.
A one-look reminder for root uptake, xylem flow, photosynthesis zone and food transport.
When the 22 micro-segments are grouped into six preparation blocks, one fact becomes obvious: Biology in this compilation is not evenly distributed.
Skeleton, digestion, vitamins, respiration, circulation, excretion, nervous, endocrine and reproduction.
Photosynthesis, plant transport, hormones, morphology, reproduction and economic botany.
Biology branches, evolution, classification, taxonomy and organism diversity.
MRI, vaccines, cloning, gene mapping, medical technology, applied biology and mixed science.
Viruses, bacteria, malaria, vectors, TB, vaccines, deficiency and non-infectious disorders.
Cell structure, DNA/RNA, heredity, codons, organic farming and biofertilisers.
The most useful comparison is not “Botany vs Zoology.” It is the micro-density inside each block.
Some low-count topics have become more valuable recently. Genetics has only seven entries in its dedicated section, yet the 68th, 69th and 71st papers move toward DNA/RNA, codons, membranes and molecular function. The same is true for plant transport and symbiosis.
| # | Micro-segment | Entries | Bank share | What repeats inside it | Revision signal |
|---|---|---|---|---|---|
| 1 | Diseases & health | 27 | 9.9% | malaria, TB, HIV/AIDS, bacterial disease, vectors, vaccines, cancer, deficiency | Very High |
| 2 | Vitamins & nutrition | 24 | 8.8% | source-deficiency-chemical name-function matching | Very High |
| 3 | Circulation, blood & immunity | 20 | 7.3% | blood groups, Rh, plasma, Hb, valves, BP, WBC/lymphocyte | Very High |
| 4 | Plant nutrition & morphology | 20 | 7.3% | xylem, osmosis, transpiration, plant hormones, modified stems, edible parts | Very High + Recent |
| 5 | Economic / applied botany | 19 | 6.9% | spices, medicinal plants, fibres, scientific names, antibiotics | High |
| 6 | Classification & diversity | 17 | 6.2% | plant groups, phyla, lichen, mycorrhiza, characteristic features | High + 71st |
| 7 | Skeletal & muscular | 16 | 5.8% | bones, cartilage, tendon/ligament, muscle proteins, joints | High |
| 8 | Photosynthesis & plant physiology | 15 | 5.5% | chloroplast, chlorophyll, light/dark reaction, ATP, auxin, osmosis | High + Recent |
| 9 | Digestive system | 12 | 4.4% | insulin metabolism, liver, enzymes, HCl, pancreas, taste | High |
| 10 | Endocrine system | 11 | 4.0% | insulin, TSH, thyroxine, pituitary, estrogen, oxytocin, endocrine glands | High + 71st |
| 11 | Biology branches | 9 | 3.3% | genetics, ornithology, pomology, osteology, plant physiology | Medium |
| 12 | Evolution | 7 | 2.6% | natural selection, mutation, human ancestry, Archaeopteryx | Medium |
| 13 | Cell biology | 7 | 2.6% | cell unit, mitochondria, membranes, cell wall, permanent tissue | Medium + Recent linkage |
| 14 | Genetics & molecular | 7 | 2.6% | Mendel, DNA, double helix, codons, DNA/RNA, heredity | High recent signal |
| 15 | Nervous system | 7 | 2.6% | EEG, hypothalamus, reflex, cerebellum/balance, CNS | Medium-High |
| 16 | Biotech / genetic engineering | 7 | 2.6% | MRI, vaccination, cloning, gene mapping, mRNA, Khorana | High recent signal |
| 17 | Plant reproduction | 6 | 2.2% | vegetative propagation, false fruits, ovary-fruit, pollination | Medium |
| 18 | Respiratory system | 5 | 1.8% | diaphragm, breathing, aerobic respiration, CO2 release | Medium |
| 19 | Excretory system | 4 | 1.5% | kidney blood flow, nephron, excretion, adrenal location | Medium |
| 20 | Human reproduction & embryology | 4 | 1.5% | ultrasound, fertilisation, embryo, genetic variation | Medium |
| 21 | Biofertiliser / organic agriculture | 3 | 1.1% | organic farming, mycorrhizal fungi, blue-green algae | Low count, useful linkage |
| 22 | Mixed applied biology | 27 | 9.9% | vaccines, temperature, biocontrol, medical science, ecology, plant facts | Mixed / revision pool |
Only core references with printed ordinal numbers are placed into eras. Unnumbered labels such as “BPSC (Pre) 2016” are deliberately kept separate rather than guessed.
Older bank: direct definitions, organ facts, classic vitamins, diseases, evolution and simple plant physiology.
This looks small because multiple entries are printed only as “BPSC (Pre) 2016” without the ordinal. We do not force them into a guessed bucket.
The compilation is strongly enriched with recent BPSC: more five-option stems, functional physiology, cell/molecular detail and applied biology.
Core Prelims references whose year is printed but ordinal is not. Kept separate for methodological honesty.
The source contains nine 71st reference appearances, but one herpes-host interaction item is duplicated. Using eight unique concepts gives a cleaner fingerprint.
Use of vascular-tissue traits in plant classification.
Mineral absorption and protection from root-borne disease.
Recognition of UAA as a stop codon.
Lipid-protein combinations / fluid-mosaic logic.
Hormones as secretions of endocrine glands.
Water + dissolved mineral transport from roots upward.
Edible fleshy part of mango = mesocarp.
Herpes simplex virus and human host framed through parasitism.
Four of eight unique 71st concepts are directly plant/systematics/transport/morphology linked: de Candolle, mycorrhiza, xylem and mesocarp.
Stop codon and biological membrane composition show a move beyond purely school-level organism facts.
One endocrine definition plus one virus-host interaction. Recent Biology is broad, but asks exact functional language.
Each panel combines bank density, repeat pattern, recent signal, and a compact memory chain.
A++
Stable + recurring
Source / chemical name / deficiency / function / pair-matching
Instead of rereading chapters, revise the exact relationship chains that generate multiple MCQs.
This is the practical layer: what should be mastered first if revision time is limited?
High density and/or strong recent signal. These should be recall-ready, not merely familiar.
Large stable banks that frequently generate direct and functional MCQs.
Lower bank count, but easy marks if prepared as small tables and chains.
For post-65th questions, do not memorize only “name → answer.” Build the function and contrast pair: xylem vs phloem, tendon vs ligament, B vs T lymphocyte, vitamin source vs deficiency, virus vs bacteria, endocrine vs exocrine.
These are representative questions from the uploaded compilation, selected to show the shift from static memory to exact functional concepts.
The drill intentionally mixes 71st-style plant/molecular questions with the largest repeated clusters.
Question 1 of 10 • Select the correct answer
The schedule is weighted by bank density rather than chapter order.
Build source-name-deficiency-function tables.
RBC/WBC/plasma, groups, Rh, BP, heart.
Agent-vector-organ-vaccine-treatment chains.
Gland → hormone → function → deficiency/excess.
Enzymes, liver, pancreas, HCl, breathing mechanics.
Bone/joint/tissue pairs + brain/reflex/balance.
Chloroplast, chlorophyll, ATP, dark reaction, auxin.
Xylem/phloem, osmosis, transpiration, hormones, edible parts.
Spices, medicinal plants, fibres, scientific names.
Plant groups, phyla, lichen, mycorrhiza, organism traits.
DNA/RNA, codons, membranes, organelles, heredity.
MRI, vaccines, gene mapping, cloning, mRNA.
Compact revision of lower-density predictable facts.
Re-solve recent concepts and all wrong PYQs.
Write 10 “A → B → C” Biology relationships from memory.
The compilation shows a clear hierarchy: Human physiology + nutrition is the largest bank, but the most important recent shift is toward plant function, molecular/cell biology, exact physiology, and applied disease/vaccine concepts . The 71st paper is especially revealing: half of its unique Biology concepts in this compilation are plant-facing, while stop codons and membrane composition push molecular precision upward. Therefore, prepare Biology as relationship chains and function contrasts, not as isolated one-line facts.