Linked from
The 105 pages that link to Crop rotation, each with the reason it gives.
Smallholder agricultureRelated: Rotations can maintain soil fertility and interrupt crop-specific pests and diseases.
Virgin Lands campaignCompared with: Rotation can sustain soil fertility, unlike repeated grain cultivation on newly plowed steppe.
CanolaRelated: Canola is grown in rotations that can diversify cereal-dominated farming systems.
ChernozemRelated: Rotation can sustain chernozem productivity and reduce pressure from pests and nutrient depletion.
Jethro TullRelated: Tull’s emphasis on cultivation contrasted with the crop-rotation reforms associated with his era.
MycotoxinRelated: Rotation can reduce plant disease pressures associated with some toxin-producing fungi.
Sugar beetRelated: Sugar beet commonly occupies a place in rotations that manage weeds, pests, and soil use.
MilletRelated: Rotating millet with other crops can help manage weeds, pests, and soil fertility.
Weed controlRelated: Changing crops disrupts weed species adapted to one crop and its management routine.
African agricultureRelated: Rotations can interrupt pests and diseases and help replenish nutrients, especially when legumes are included.
Colorado potato beetleRelated: Rotating potatoes away from last year's fields can obstruct adults emerging from nearby soil.
Crop diversificationRelated: Rotating crops diversifies production over time and can interrupt pests and replenish soil nutrients.
Phytophthora infestansRelated: Rotation can reduce disease pressure where infected plant material persists.
WatermelonRelated: Rotating watermelon with unrelated crops can reduce disease and pest buildup in fields.
Agricultural landRelated: Rotation manages soil nutrients, pests, and disease across cultivated fields.
Agriculture in UkraineRelated: Rotating cereals with oilseeds and other crops helps manage soil fertility and disease pressure.
Biodynamic agricultureRelated: Rotations support soil fertility and pest management within biodynamic farming.
George Washington CarverRelated: Carver promoted rotating cotton with legumes to help restore depleted Southern soils.
Mount VernonRelated: Washington used rotation to manage soil fertility and diversify production.
Multiple croppingCompared with: Unlike multiple cropping, rotation need not grow more than one crop on a field in the same year.
Agricultural scienceBroader topic: Rotation can alter soil fertility, pests, and subsequent crop performance.
Arab Agricultural RevolutionRelated: Changing crop sequences could support more continuous cultivation.
CloverRelated: Farmers include clover in rotations to add nitrogen and break crop cycles.
Downy mildewRelated: Rotation can reduce disease pressure when a downy mildew pathogen depends on particular hosts.
LentilRelated: Farmers may rotate lentils with cereals to diversify production and manage soil fertility.
Three-field systemNarrower topic: The system is a specific rotation that assigns each plot a new use each year.
Beta vulgarisRelated: Sugar beet is commonly managed within rotations that help control pests and sustain soil.
British Agricultural RevolutionNarrower topic: Rotations replenished or managed soil nutrients and helped sustain higher yields.
Green beanRelated: Rotating legumes such as beans can support soil fertility and disrupt pests.
History of foodRelated: Rotations helped sustain agricultural output and shape historical farming calendars.
OlericultureRelated: Rotations help manage soil fertility, weeds, and crop-specific pests and diseases.
Environmental impact of agricultureBroader topic: Rotations can improve soil fertility and interrupt pests, reducing some input needs.
Fusarium wiltRelated: Rotation with nonhost crops can reduce disease pressure, though persistent Fusarium may survive for years.
GardeningRelated: Changing plant families between beds can reduce recurring pests and soil-borne disease.
Norfolk four-course systemNarrower topic: The Norfolk system is a particularly influential four-stage rotation.
Agriculture in ancient RomeRelated: Alternating crops helped Roman farmers maintain yields and reduce soil exhaustion.
FarmerRelated: Farmers use rotation to manage soil nutrients, pests, and crop diseases.
FonioRelated: Fonio can be included in West African rotations alongside other food crops.
History of agricultureRelated: Rotations helped maintain soil fertility and manage weeds and pests.
RhizobiaRelated: Including legumes can add biologically fixed nitrogen to rotations.
Stardew ValleyRelated: Seasonal planting turns crop timing into a central farm-planning decision.
Vicia fabaRelated: As a legume, faba bean can add biologically fixed nitrogen to rotations.
Agricultural cycleRelated: Changing crops between cycles can maintain soil fertility and interrupt pests and diseases.
Agriculture in the Middle AgesNarrower topic: Medieval rotations linked planting choices to soil fertility and fallow periods.
Black turtle beanRelated: Rotating beans with other crops can diversify fields and contribute nitrogen to farming systems.
Common sunflowerRelated: Sunflowers enter rotations as an oilseed crop, with their own disease and soil-management considerations.
Helminthosporium solaniRelated: Rotation can reduce field inoculum, though infected seed tubers remain a key source.
History of fertilizerRelated: Rotations with legumes helped maintain soil fertility without manufactured inputs.
History of organic farmingRelated: Rotations supplied fertility and pest control before synthetic inputs became widespread.
LoamRelated: Rotation helps maintain productive loam by diversifying nutrient demand and interrupting some pests.