Fungicides
Fungicides are a large group of chemical or biological compounds designed to suppress the growth and development of pathogenic fungi that cause infectious diseases in plants. Depending on their chemical composition, they are classified into organic and inorganic preparations, each of which has a specific impact vector on the physiological processes of the fungal organism.
What the section contains
Tebuconazole
Триазолы
420 products
Flutriafol
Триазолы
168 products
Phenmedipham
Карбаматы
153 products
Azoxystrobin
Стробилурины
141 product
Desmedipham
Карбаматы
141 product
Carbendazim
Бензимидазолы
124 products
Propiconazole
Триазолы
124 products
Difenoconazole
Триазолы
114 products
Cyproconazole
Триазолы
108 products
Mancozeb
Карбаматы
103 products
Metalaxyl
Производные аминокислот. Фениламиды
74 products
Pyraclostrobin
Стробилурины
65 products
Epoxiconazole
Триазолы
63 products
Prothioconazole
Триазолы
62 products
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Бензимидазолы
62 products
Prochloraz
Имидазолы
60 products
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Бензимидазолы
60 products
Thiram
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43 products
Carboxin
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Imazethapyr
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39 products
Imazalil
Имидазолы
38 products
Trifloxystrobin
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Морфолины, ароматические оксимы
31 product
Propamocarb hydrochloride
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30 products
Boscalid
Производные аминокислот. Фениламиды
26 products
Cresolsulfonate-methyl
Стробилурины
25 products
Triadimefon
Триазолы
24 products
Captan
Фталимиды
22 products
Folpet
Фталимиды
20 products
Triadimenol
Триазолы
20 products
Metconazole
Триазолы
18 products
Spiroxamine
Морфолины, ароматические оксимы
18 products
Triticonazole
Триазолы
18 products
Penconazole
Триазолы
17 products
Cyprodinil
Пиримидинами
13 products
Benomyl
Бензимидазолы
12 products
Bixafen
Пиразолкарбоксамиды
12 products
Myclobutanil
12 products
Fluxapyroxad
11 products
Propineb
Карбаматы
11 products
Famoxadone
Ацетамиды и производные оксазолидина
10 products
Ipconazole
Триазолы
10 products
Fenpropidin
9 products
Picoxystrobin
9 products
Tetraconazole
Триазолы
8 products
Fenamidone
Имидозолиноны
7 products
Fenoxycarb
Карбаматы
7 products
Mandipropamid
Производные аминокислот. Фениламиды
7 products
Metiram
Карбаматы
7 products
Pencycuron
7 products
Pyroxsulam
Триазолпиримидины
7 products
Isopyrazam
6 products
Metrafenone
Бензофенонис
6 products
Pydiflumetofen
5 products
Hymexazol
Ацетамиды и производные оксазолидина
4 products
Iprovalicarb
Карбаматы
4 products
Paclobutrazol
Триазолы
4 products
Fenpropimorph
3 products
Potassium dithiocarbamate
Карбаматы
3 products
Products in this section · 12
Fungicides
The mechanism of action of fungicides is divided into contact and systemic. Contact preparations form a protective barrier on the plant surface, destroying pathogen spores upon direct contact, but they do not penetrate the tissues. Systemic fungicides are capable of penetrating the plant's vascular system, spreading throughout the organism, which ensures protection not only for existing organs but also for newly formed shoots.
Biochemically, fungicides affect the vital functions of pathogens: they inhibit respiration processes in fungal mitochondria, disrupt the biosynthesis of ergosterol in cell membranes, or block cell division. Many modern preparations possess translaminar activity, allowing the active ingredient to move from one side of the leaf to the other.
The effectiveness of using these substances largely depends on the preparation's ability to maintain stability in field conditions under the influence of ultraviolet light and precipitation. To prevent the formation of resistance in disease pathogens, agronomists recommend alternating fungicides from different chemical classes, which is critical in intensive protection schemes.
In addition to directly destroying fungal spores, some systemic fungicides have an additional curative effect, stopping mycelium development in the early stages of symptom manifestation. This allows for the salvation of crops even in the event of an epiphytotic outbreak, provided that the disease diagnosis is conducted in a timely manner.
This group of preparations is used to combat a wide spectrum of pathogens that cause such dangerous diseases as powdery mildew, cereal rust, late blight of nightshades, gray mold, and various types of leaf spots. Fungicides are effective against ascomycetes, basidiomycetes, and oomycetes that affect field, horticultural, and vegetable crops.
Fungicide application rates are calculated based on the degree of crop infestation, the biological characteristics of the crop, and its growth stage. Minimum dosages are used for preventive treatments, while for curative measures, the dose of the preparation is increased to achieve the necessary concentration of the active ingredient in plant tissues.
The application of fungicides requires strict adherence to safety measures and pre-harvest intervals (PHI). It is necessary to account for the timing of the last application before harvest to ensure the absence of pesticide residues in market produce. Handling chemicals must be performed using personal protective equipment to exclude toxic effects on personnel.