Brassicaceae
The Brassicaceae family, historically known as Cruciferae, comprises a diverse group of essential agricultural crops. This family includes staples such as cabbage, broccoli, cauliflower, radish, rapeseed, and mustard. These plants are globally significant due to their nutritional value, industrial applications, and high economic yield in modern farming systems.
Main sections
What the section contains
Draba hoppeana
Draba hoppeana
Draba incompta
Draba incompta
Draba kotschyi
Draba kotschyi
Draba loiseleurii
Draba loiseleurii
Draba longisiliqua
Draba longisiliqua
Draba nuda
Draba nuda
Draba oligosperma
Draba oligosperma
Draba ossetica
Draba ossetica
Draba oxycarpa
Draba oxycarpa
Draba polytricha
Draba polytricha
Draba rosularis
Draba rosularis
Draba sakuraii
Draba sakuraii
Draba scardica
Draba scardica
Draba siliquosa
Draba siliquosa
Draba stylaris
Draba stylaris
Draba subcapitata
Draba subcapitata
Draba subnivalis
Draba subnivalis
Draba vesicaria
Draba vesicaria
Drabopsis
Drabopsis
Eigia
Eigia
1 item
Elongated mustard
Brassica elongata
Enarthrocarpus
Enarthrocarpus
4 items
Eremobium
Eremobium
1 item
Eremophyton
Eremophyton
1 item
Erucaria
Erucaria
6 items
Erucastrum
Erucastrum
1 item
Erucastrum nasturtiifolium
Erucastrum nasturtiifolium
Erucastrum strigosum
Erucastrum strigosum
Erucastrum varium
Erucastrum varium
Erysimum arbuscula
Erysimum arbuscula
Erysimum callicarpum
Erysimum callicarpum
Erysimum canum
Erysimum canum
Erysimum capitatum
Erysimum capitatum
Erysimum collinum
Erysimum collinum
Erysimum comatum
Erysimum comatum
Erysimum crassipes
Erysimum crassipes
Erysimum crepidifolium
Erysimum crepidifolium
Erysimum cuspidatum
Erysimum cuspidatum
Erysimum duriaei
Erysimum duriaei
Erysimum grandiflorum
Erysimum grandiflorum
Erysimum hybrids
Erysimum hybrids
Erysimum ibericum
Erysimum ibericum
Erysimum incanum
Erysimum incanum
Erysimum lagascae
Erysimum lagascae
Erysimum leptostylum
Erysimum leptostylum
Erysimum leucanthemum
Erysimum leucanthemumm
Erysimum merxmuelleri
Erysimum merxmuelleri
Erysimum montosicolum
Erysimum montosicolum
Erysimum myriophyllum
Erysimum myriophyllum
Erysimum pectinatum
Erysimum pectinatum
Erysimum perofskianum
Erysimum perofskianum
Erysimum pulchellum
Erysimum pulchellum
Erysimum pusillum
Erysimum pusillum
Erysimum quadrangulum
Erysimum quadrangulum
Erysimum raulinii
Erysimum raulinii
Erysimum siliculosum
Erysimum siliculosum
Erysimum talijevii
Erysimum talijevii
Erysimum ucrainicum
Erysimum ucrainicum
Erysimum verrucosum
Erysimum verrucosum
Brassicaceae
The origins of the Brassicaceae family are traced back to the Mediterranean region and parts of Asia, where they were domesticated thousands of years ago. Today, their range of cultivation extends to almost every climate zone, from temperate Northern Europe to arid regions of the Southern Hemisphere. Their wide adaptability has made them a cornerstone of global agriculture.
Botanically, these plants are identified by their four-petaled flowers arranged in a cross-like pattern, which serves as the primary diagnostic feature. They produce fruit in the form of a silique or silicle. Many species are biennial, developing a vegetative rosette in the first year and producing flowers and seeds in the second, although many modern cultivars are annuals bred for rapid harvest.
The cultivation requirements for Brassicaceae include fertile, well-draining soil with a near-neutral pH. They are notably sensitive to soil acidity, which can facilitate the spread of clubroot, a serious fungal disease. Consistent moisture and moderate temperatures are preferred, as high heat can negatively impact the quality and yield of leafy and cruciferous vegetable parts.
- Cruciferous flea beetles as primary pests
- Management of clubroot and downy mildew
- High density of planting and rotation needs
- Rich in antioxidants and glucosinolates
Economically, Brassicaceae plants serve various purposes: from fresh vegetable consumption to industrial oil production and green manure application. As cover crops, they are highly valued for their ability to suppress weeds and improve soil structure. Continuous research into disease-resistant varieties ensures that this family remains a pillar of food security and sustainable farming worldwide.