Horticulture and Botanical Classification of
Horticultural Crops
India
has a wide range of growing environments, ranging from dry conditions in
subtropical plains and plateaus to humid tropical coastal regions, while hilly
and high-altitude areas experience cool to severely cold conditions. These
diverse eco-edaphic conditions support a rich diversity of plant wealth in the
country. A large number of fruits, vegetables, spices, plantation crops and
other economically important plants are cultivated under different growing
conditions.
Considerable
variation exists among plants in their growth habit, flowering and fruiting
behaviour, nutritional quality, response to environment and other
characteristics. Studying each plant separately can therefore become difficult
and repetitive. To overcome these difficulties, plants are grouped according to
their similarities and dissimilarities in various characteristics. Such
grouping of plants into different categories is referred to as classification.
The main objective of classification is to systematize the study and make the
identification, comparison and study of plants easy and convenient.
Objective of classification
Classification
of plants means grouping different plants having some characteristics in
common. It is a relatively dynamic process and undergoes changes with the
advancement of knowledge.
- To
get familiar with the different horticultural crops.
- To
identify and classify different horticultural crops.
- To
know their economic value and importance.
- To
determine their adaptability to the local environment.
- To
facilitate easy and quick cultural operations.
- To
facilitate breeding and the development of new varieties.
- To
facilitate propagation of crops.
- To
facilitate effective control of pests and diseases.
- To
help in cultivating crops suitable for different climatic conditions.
Nomenclature and Basic Taxonomic Classification
Early
classification started with the Greek philosopher Theophrastus, who
classified all plants into annuals, biennials, and perennials according to life
spans, and into herbs, shrubs, and trees according to their growth habits.
Modern
taxonomy for plant classification is based on Linnaeus (an 18th-century*
Swedish physician, now considered “Father of taxonomy”) who
revolutionized the fields of plant and animal classification.
Horticulture
deals mostly with family, genus, species and cultivars. Scientific names
of species are generally binomial. The genus and species are written in italics
(or underlined when handwritten), whereas family and cultivar names are not
italicized or underlined.
Classification of Horticultural Crops
Horticultural crops are broadly classified into the following groups:
- Vegetable Crops
- Fruit Crops
- Floricultural
- Plantation Crops
- Medicinal Crops
- Aromatic Crops
- Spice Crops
Part 1. Vegetable Crops
Classification is the systematic method of grouping different plant species for identifying and cataloguing information about cultivated plants and crops.
According
to Kees and Dais (1985–1996), about 392 vegetable crops are
cultivated worldwide, belonging to around 70 families and 225 genera.
Vegetable crops are diverse in their edible parts, including leaves, young
shoots, fruits, roots, tubers, rhizomes, corms and stolons. Many vegetable
crops also have more than one edible part. The importance of individual
vegetable crops varies among countries according to their dietary patterns
and food habits.
Botanical
classification is largely based on morphological variability among plants, with
reference to flower type, morphology and sexual compatibility. The basic and useful taxonomic
groups are family, genus, species and cultivar. The binomial system of nomenclature was presented in Species Plantarum, published by Linnaeus
in 1753**, and became a foundation of modern botanical
nomenclature.
The
International Code of Botanical Nomenclature (ICBN), Atrect,
(Netherland) now known as the International Code of Nomenclature for algae,fungi, and plants (ICN), is a set of rules and recommendations governing
the scientific names of algae, fungi and plants. The name was changed from
ICBN to ICN at the XVIII International Botanical Congress held in Melbourne
in 2011.
The
International Code of Nomenclature for Cultivated Plants (ICNCP), also
known as the Cultivated Plant Code, provides rules and
recommendations for the naming of cultivated plants (cultigens) whose
origin or selection is primarily due to intentional human activity. It
particularly deals with cultivated plant categories such as cultivars.
Vegetable crops can be classified in different ways based on their botanical relationships, temperature tolerance, soil and environmental requirements, edible parts, cultural practices, physiological characteristics and other important traits. The major classifications of vegetable crops are as follows:
A. Botanical, Climatic and Environmental Classification
- Based on Botanical Relationship
- Based on Climatic Zones
- Based on Temperature Requirement (Thermoclassification)
- Based on Growing Seasons
- Based on Hardiness
- Based on Tolerance to Soil Acidity
- Based on Tolerance to Soil Salinity/Soil Salt Content
- Based on Tolerance to Salt (NaCl Concentration)
- Based on Soil Factor
- Based on Water Relationship
- Based on Water Requirement
- Based on Rainfall and Irrigation Requirement
- Based on Root Depth in Soil
- Based on Lime Requirement
B. Edible, Chemical and Nutritional Classification
16. Based on Predominant Organic Acid Present
17. Based on Vitamins and Nutritional Value
18. Based on Plant Pigments
19. Based on Toxic Substances Present in Vegetable Crops
C. Seed, Propagation and Crop Establishment Classification
22. Based on Propagation Materials
23. Based on Transplanting Requirement
24. Based on Suitable Age for Transplanting
25. Based on Forcing Requirement
26. Based on Seed Rate
27. Based on Nursery Bed Requirement
28. Based on Isolation Distance
29. Based on Optimum Soil Moisture Requirement
D. Physiological and Reproductive Classification
31. Based on Photosynthetic Pathway
32. Based on Sex Form
33. Based on Pollination Mechanism
34. Based on Mode of Pollination
35. Based on Floral Biology and Reproductive Behaviour
36. Based on Self-Incompatibility
37. Based on Male Sterility
E. Seed and Genetic/Breeding Classification
39. Based on Seed Germination
40. Based on Food Storage in Seeds
41. Based on Morphological Markers
42. Based on Combining Ability
F. Respiration and Post-harvest Classification
44. Based on Respiratory Behaviour
45. Based on Ethylene Production
46. Based on Storage Life of Vegetable Produce
47. Based on Storage Temperature
G. Morphological Classification
49. Based on Inflorescence Type
50. Based on Tendril Type in Cucurbit Vegetables
51. Based on Modification of Plant Parts
H. Cultural Classification of Vegetable Crops
I. Vegetable Garden Classification
A. 1. Based on Botanical Relationship
Vegetable crops are broadly classified into Monocotyledons and Dicotyledons based on their botanical relationship.
A. Monocotyledons
|
S. No. |
Family |
Crop |
Botanical Name |
Chromosome Number (2n) |
Origin |
|
1 |
Amaryllidaceae (Alliaceae) |
Onion |
Allium cepa |
16 |
Central Asia |
|
Garlic |
Allium
sativum |
16 |
Central
Asia |
||
|
Leek |
Allium porrum |
2n=4x=32 (tetraploid) |
Central Asia |
||
|
Shallot |
Allium
cepa var. ascalonicum |
16 |
Central/South-West
Asia |
||
|
Chive |
Allium schoenoprasum |
16, 24, 32 |
Asia & Europe |
||
|
Welsh
onion |
Allium
fistulosum |
16 |
China |
||
|
Kurrat / Egyptian leek |
Allium ampeloprasum
var. kurrat |
2n=4x=32 (tetraploid) |
Southern Europe to Western Asia |
||
|
2 |
Araceae |
Elephant
foot yam |
Amorphophallus
companulatus |
28 |
India/Sri
Lanka |
|
Colocasia / Taro |
Colocasia esculenta spp. /Colocasia esculenta (L.)
Schott |
2n=2x=28*** (diploid), 2n=2x=42 (triploid) |
Sri Lanka / Southeast Asia |
||
|
Tannia |
Xanthosoma
sagittifolium |
26 |
South
America |
||
|
Giant taro |
Alocasia macrorrhizos |
28 |
Rainforest of Borneo & Queensland |
||
|
Swamp
taro |
Cyrtosperma
merkusii |
26 |
Western
Malaysia |
||
|
3 |
Dioscoreaceae |
Lesser yam |
Dioscorea esculenta |
2n=2x=40 |
Indo-Burma |
|
Greater
yam |
Dioscorea
alata |
2n=2x=40 |
Indo-Burma/Southeast
Asia |
||
|
White yam |
Dioscorea rotundata |
2n=2x=40 |
Indo-Burma/West Africa |
||
|
4 |
Poaceae
(Gramineae) |
Sweet
corn |
Zea
mays var. rugosa |
20 |
Mexico1/Central
America/peru |
|
5 |
Liliaceae |
Asparagus |
Asparagus officinalis |
20 |
Mediterranean region |
|
6 |
Cannaceae |
Queensland
Arrowroot |
Canna
indica |
18**** |
South
America |
|
7 |
Cyperaceae |
Chinese water chestnut |
Eleocharis dulcis |
— |
Asia (China) |
|
S. No. |
Family |
Crop |
Botanical Name |
Chromosome Number (2n) |
Origin |
|
1 |
Amaryllidaceae (Alliaceae) |
Top onion |
Allium cepa
var. viviparum |
16 |
Central Asia |
|
|
|
Multiplier onion |
Allium cepa var. aggregatum |
16 |
South-West Asia/Central Asia |
B. Dicotyledons
|
S. No. |
Family |
Crop |
Botanical Name |
Chromosome Number (2n) |
Origin |
|
1 |
Aizoaceae15 |
New Zealand spinach |
Tetragonia tetragonioides |
32 |
New Zealand/Australia2 |
|
2 |
Amaranthaceae |
Chhoti chaulai |
Amaranthus blitum |
32 |
India |
|
Badi chaulai |
Amaranthus tricolor |
32 |
India |
||
|
3 |
Basellaceae |
Indian spinach (Malabar night shade) |
Basella alba (green), Basella rubra (red) |
44, 483 |
India |
|
4 |
Chenopodiaceae14 |
Spinach |
Spinacia oleracea |
12 |
Iran/Central Asia4 |
|
French spinach |
Atriplex hortensis |
18 |
Europe & Asia |
||
|
Palak/beet leaf/spinach beet |
Beta vulgaris var.
bengalensis |
18 |
Indo-China |
||
|
Beetroot |
Beta vulgaris var. rubra |
18 |
Mediterranean region |
||
|
Swiss chard5 |
Beta vulgaris var. cicla |
18 |
Mediterranean region |
||
|
5 |
Compositae (Asteraceae) |
Lettuce |
Lactuca sativa |
18 |
Mediterranean region |
|
Chicory |
Cichorium intybus |
18 |
Europe/Mediterranean region |
||
|
Endive |
Cichorium endivia |
18 |
Mediterranean region |
||
|
Globe artichoke |
Cynara scolymus |
34 |
Mediterranean region |
||
|
Jerusalem artichoke |
Helianthus tuberosus |
2n=6x=102 (hexaploid) |
North America/ USA |
||
|
6 |
Convolvulaceae |
Sweet potato |
Ipomoea batatas |
2n=6x=90 (hexaploid) |
South America |
|
7 |
Cruciferae (Brassicaceae) |
Cabbage |
Brassica oleracea var. capitata |
18 |
Mediterranean region |
|
Cauliflower |
Brassica oleracea var.
botrytis |
18 |
Mediterranean region |
||
|
Knol-khol |
Brassica oleracea var. gongylodes |
18 |
Mediterranean region |
||
|
Sprouting broccoli |
Brassica oleracea var.
italica |
18 |
Mediterranean region |
||
|
Brussels sprout |
Brassica oleracea var. gemmifera |
18 |
Mediterranean region |
||
|
Kale |
Brassica oleracea var.
acephala |
18 |
Mediterranean region |
||
|
Radish |
Raphanus sativus |
18 |
Europe |
||
|
Turnip |
Brassica rapa |
20 |
Asia |
||
|
Chinese cabbage |
Brassica chinensis/Brassica rapa
subsp. Pekinensis6 |
20 |
China |
||
|
Rutabaga (Swede)-Man made vegetable |
Brassica napus var. napobrassica |
38 |
|||
|
Leaf mustard |
Brassica juncea var. cunefolia |
36 |
Central Asia7 |
||
|
8 |
Cucurbitaceae |
Cucumber |
Cucumis sativus |
14 |
India |
|
Musk melon |
Cucumis melo |
24 |
Tropical Africa |
||
|
Snap melon (Phoot) |
Cucumis melo var.
momordica |
24 |
Tropical Africa |
||
|
Long melon (Kakri) |
Cucumis melo var. utilissimus |
24 |
Tropical Africa |
||
|
Gherkin |
Cucumis anguria |
24 |
Tropical Africa |
||
|
Watermelon |
Citrullus lanatus |
22 |
Tropical Africa |
||
|
Tinda (Round melon) |
Citrullus lanatus var. fistulosus |
22 |
India |
||
|
Bottle gourd |
Lagenaria siceraria |
22 |
South Africa/India |
||
|
Bitter gourd |
Momordica charantia |
22 |
Indo-Burma |
||
|
Kakrol (Sweet gourd) |
Momordica cochinchinensis |
28 |
|||
|
Spine gourd (Kartoli) |
Momordica dioica |
28 |
|||
|
Teasle gourd |
Momordica subangulata ssp. renigera |
56 |
South/Southeast Asia |
||
|
Ridge gourd |
Luffa acutangula |
26 |
Asia/India |
||
|
Sponge gourd |
Luffa aegyptiaca Milli (luffa
cylindrica)8 |
26 |
Assam |
||
|
Pumpkin |
Cucurbita moschata |
40 |
Tropical America/ Mexico |
||
|
Summer squash |
Cucurbita pepo |
40 |
Mexico/Central America |
||
|
Winter squash |
Cucurbita maxima |
40 |
Bolivia to northern
Argentina9/South America |
||
|
Buffalo gourd |
Cucurbita ficifolia |
40 |
North America |
||
|
Cooking melon |
Cucumis melo subsp. Agrestis
var. conomon |
24 |
Africa & Asia |
||
|
Pointed gourd |
Trichosanthes dioica |
22 |
India |
||
|
Chow-chow / Chayote |
Sechium edule |
28 |
Central America/ Mexico |
||
|
Snake gourd |
Trichosanthes cucumerina (Trichosanthes
augunia) |
22 |
India/Southeast Asia |
||
|
Wax gourd (Ash gourd) |
Benincasa hispida |
24 |
Java, Japan |
||
|
Ivy gourd (Kundru) |
Coccinia grandis |
24 |
India |
||
|
9 |
Euphorbiaceae |
Tapioca / Cassava |
Manihot esculenta |
36 |
South America/ Brazil |
|
Chekurmanis |
Sauropus androgynus |
36 |
Indo-Burma |
||
|
10 |
Lamiaceae (Labiatae) |
Chinese potato |
Plectranthus rotundifolius/Coleus parviflorus |
2n= 56, 64 |
Tropical Africa |
|
|
|
Chinese artichoke (Japanese
artichoke)10 |
Stachys affinis |
2n= 66-70 |
China |
|
11 |
Lauraceae |
Bay leaf |
Laurus nobilis |
42 |
Mediterranean region |
|
12 |
Fabaceae (Leguminosae) |
Garden pea |
Pisum sativum var. hortense |
14 |
Central Asia |
|
French bean |
Phaseolus vulgaris |
22 |
Mexico |
||
|
Lima bean |
Phaseolus lunatus |
22 |
Guatemala/Tropical America |
||
|
Cluster bean |
Cyamopsis tetragonolobus |
14 |
India/Africa |
||
|
Lab lab bean (Dolichos bean) |
Lablab purpureus |
22 |
Africa/India |
||
|
Cowpea |
Vigna unguiculata |
22 |
Africa |
||
|
Sword bean |
Canavalia gladiata |
22 |
Tropical Asia/Africa (Old world) |
||
|
Jack bean |
Canavalia ensiformis |
22 |
South & central America |
||
|
Winged bean |
Psophocarpus tetragonolobus |
18 |
New Guinea |
||
|
Broad bean |
Vicia faba |
12 |
Africa (Old world)/Southwest Asia |
||
|
Soybean |
Glycine max |
40 |
China |
||
|
Fenugreek (Methi) |
Trigonella foenumgraecum |
16 |
Europe |
||
|
Agathi |
Sesbania grandiflora |
2n=4x=24 (tetraploid) |
South East Asia |
||
|
13 |
Malvaceae |
Okra |
Abelmoschus esculentus |
130 |
Africa |
|
14 |
Moringaceae |
Drumstick |
Moringa oleifera |
28 |
India |
|
15 |
Polygonaceae |
Rhubarb |
Rheum rhabarbarum |
2n=2x=44 |
Central Asia |
|
Sorrel11 |
Rumex acetosa |
14, 15 |
Europe/Asia |
||
|
16 |
Portulacaceae12 |
Purslane/Pursley |
Portulaca oleracea L. |
18,36,45,54 |
|
|
17 |
Solanaceae |
Potato |
Solanum tuberosum |
2n=2x=48 |
South America |
|
Brinjal / Eggplant |
Solanum melongena |
24 |
India |
||
|
Tomato |
Solanum lycopersicum |
24 |
South America |
||
|
Chilli / Hot pepper |
Capsicum annuum var. longum |
24 |
Mexico |
||
|
Bell pepper/Sweet pepper |
Capsicum annuum var. grossum |
24 |
Mexico |
||
|
18 |
Apiaceae (Umbelliferae) |
Carrot |
Daucus carota |
18 |
Afghanistan |
|
Parsley |
Petroselinum crispum |
44 |
Mediterranean region |
||
|
Celery |
Apium graveolens |
22 |
Italy |
||
|
Parsnip |
Pastinaca sativa |
22 |
Europe |
||
|
Coriander |
Coriandrum sativum |
22 |
Mediterranean region |
||
|
Dill13 |
Anethum graveolens |
22 |
Mediterranean region |
||
|
|
|
Skirret |
Sisum sisarum |
22 |
China |
|
19 |
Rutaceae |
Curry leaf |
Murraya koenigii |
18 |
India/Sri Lanka |
Notes:
*18th
century – Refers
to the period in which Carl Linnaeus lived and developed his system of
plant classification.
**1753 – Refers specifically to the
publication year of Species Plantarum by Linnaeus, associated
with the formal establishment of the binomial system of botanical
nomenclature.
14Beetroot
is traditionally placed in Chenopodiaceae in many older horticulture
textbooks; in modern classification it is included in Amaranthaceae.
11In
Rumex acetosa (sorrel), chromosome number differs between sexes: female
plants have 2n = 14 (12A + XX), whereas male plants have 2n = 15 (12A + XY₁Y₂).
References:
1. Australian Plant Census. Tetragonia tetragonioides
(Pall.) Kuntze.
2. Capraru, G., Cimpeanu, M.,
Cimpeanu, C., & Toma, C. (2004).
Comparative karyotype analysis in members of Umbelliferae (Apiaceae) family. Proceedings
of the 3rd CMAPSEEC, 114–119. ¹³
3. Gupta, S. N. Instant Horticulture. Jain
Brothers.
4. International Association for
Plant Taxonomy (IAPT). 2011.
International Code of Nomenclature for algae, fungi and plants (Melbourne
Code).
5. International Society for
Horticultural Science (ISHS). 2016.
International Code of Nomenclature for Cultivated Plants (ICNCP), 8th
Edition.
6. Iwatsubo, Y. (2021). Chromosome study of Rumex
acetosa with a missing Y chromosome. Chromosome Science, 24(3–4),
63–65. https://doi.org/10.11352/scr.24.63 ¹¹
7. Kew Science. (2026). Brassica rapa subsp. pekinensis
(Lour.) Hanelt. Plants of the World Online. Royal Botanic Gardens, Kew.
⁶
8. Kew Science. (2026). Cucurbita maxima Duchesne. Plants
of the World Online. Royal Botanic Gardens, Kew. ⁹
9. Kew Science. (2026). Luffa aegyptiaca Mill. Plants
of the World Online. Royal Botanic Gardens, Kew. ⁸
10. Kew Science. (2026). Spinacia oleracea L. Plants
of the World Online. Royal Botanic Gardens, Kew. ⁴
11. Kew Science. (2026). Zea mays L. Plants of
the World Online. Royal Botanic Gardens, Kew. ¹
12. Khedikar, Y. P., et al. (2021). Genomic insights into the origin,
domestication and diversification of Brassica juncea. Nature Genetics.
⁷
13. Muthukumar, P. Fundamentals of Horticulture.
14. Plant Resources of Tropical
Africa (PROTA). (n.d.).
Beta vulgaris L. In PROTA4U. ⁵
15. PROSEA. (1997). Stachys sieboldii Miquel. Plant
Resources of South-East Asia No. 8: Vegetables. ¹⁰
16. Rahmansyah, M. (1993). Basella alba L. In J. S.
Siemonsma & K. Piluek (Eds.), Plant Resources of South-East Asia No. 8:
Vegetables (pp. 93–95). Pudoc Scientific Publishers. ³
17. Siemonsma, J. S. (1993). Portulaca L. In J. S.
Siemonsma & K. Piluek (Eds.), Plant Resources of South-East Asia No. 8:
Vegetables. Pudoc Scientific Publishers. ¹²
18. Singh, Jitendra. 2025. Basic Horticulture. (6th
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Tomar, H. 2024.
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Matoba, H., & Koyama, T. (2009).
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Systematics and Evolution, 280, 45–51. https://doi.org/10.1007/s00606-009-0165-9. ****
21. Tetragonia tetragonioides (Pall.) Kuntze-New Zealand
spinach is placed in Aizoaceae; its chromosome number is 2n = 32.
PROSEA records it under Aizoaceae with 2n = 32. ¹⁵
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3 Comments
Very informative article on the botanical classification of horticultural crops. The systematic classification of fruits, vegetables, and other horticultural crops makes it easier to understand their botanical relationships, characteristics, and practical importance in agriculture. A useful reference for agriculture and horticulture students as well as field professionals.
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