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Biopesticides

Abamectin

(71751-41-2)
Avermectin has a good control effect on the pests of citrus, vegetables, cotton, apples, tobacco, soybeans, tea plants and other crops and delays drug resistance. Avermectin is a sixteen-membered macrolide with strong insecticidal, acaricidal, and nematicidal activity, a dual-purpose antibiotic for agriculture and livestock. Broad spectrum, efficient and safe. It has stomach poisoning and contact killing effect, and cannot kill eggs. Its mechanism of action is to interfere with neurophysiologic

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(+)-Gibberellic acid

(77-06-5)
Gibberellic Acid is a a pentacyclic diterpene acid. Gibberellic Acid is a hormone that is found in plants which promotes the growth and elongation of cells. Gibberellic acid acts as a plant growth regulator on account of its physiological and morphological effects in extremely low concentrations. Generally Gibberellic acid affects only the plant parts above the soil surface.

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Emamectin benzoate

(155569-91-8)
As a new type of antibiotic bio-sourced insecticide, emamectin benzoate has the advantages of broad-spectrum, high efficiency, low toxicity, and low residue. It has a good insecticidal effect on lepidopteran pests, and emamectin benzoate on some lepidopteran insects The LC90 value range is 0.002~0.89mg/L. Compared with its lead compound, abamectin, emamectin salt has lower toxicity, and its toxicity to rats is only 1/6 of that of abamectin. It is safe for humans, animals, etc., and is easily deg

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Matrine

(519-02-8)
Antifungal, nematocide Antibacterial and anti-inflammatory drugs, used to treat chronic cervicitis, bacillary dysentery, enteritis and other diseases. Diuretic effect, anti-pathogen effect

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Nitenpyram

(150824-47-8)
Nitenpyram is a chloronicotinyl insecticide; orally administered flea adulticide. Nitenpyram is used as an ectoparasiticide.

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Physcion

(521-61-9)
A natural anthraquinone derivative, on the infection process of Blumeria graminis on wheat. Physcion is one of the important active ingredients of ethanol extract from the roots of Chinese rhubarb (Rheum officinale) for controlling powdery mildew.

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Validamycin A

(37248-47-8)
Validamycin A is the major analogue of a family of cyclitol disaccharides isolated from Streptomyces hygroscopicus var. limoneus by researchers at Takeda in 1970. Although commonly regarded as an aminoglycoside, validamycin shares little in common with conventional aminoglycosides such as streptomycin and gentamicin. Validamycin A is a potent antifungal agent and is used to control fungi in crop production. Validamycin A acts as a potent inhibitor of trehalase, an important enzyme in carbohydrat

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Bacillus thuringiensis

(68038-71-1)
It is a pollution-free biological insecticide, mainly used to control lepidopteran pests of crops such as grain, cotton and apple

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Pyrethrins

(8003-34-7)
Household insecticide (flies, mosquitoes, gar- den insects, etc.). Pyrethrum is used to control a wide range of insects and mites in public health, stored products, animal houses and on domestic and farm animals. It is used on glasshouse crops but has relatively limited use on field crops, vegetables and fruit. It is normally used with synergists such as piperonyl butoxide which inhibits metabolic detoxification. Pyrethrins are used to kill a number of different flying and crawling insects and

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Biopesticides refer to the use of living organisms (fungi, bacteria, insect viruses, genetically modified organisms, natural enemies, etc.) or their metabolites (pheromone, auxin, naphthalene acetic acid, 2,4-D, etc.) against agricultural pests Agents that kill or inhibit. Biological pesticides, also known as natural pesticides, play an important role in the integrated pest management system (IPM) used in organic agriculture.

Frequently Asked Questions

What are biopesticides and how do they work?

Biopesticides are pest control agents derived from natural materials such as animals, plants, bacteria, and certain minerals. They work by targeting specific pests through biological mechanisms—like disrupting insect growth, repelling pests, or introducing beneficial microbes—without harming non-target organisms. Common types include microbial biopesticides (e.g., Bacillus thuringiensis), biochemical pesticides (e.g., insect pheromones), and plant-incorporated protectants.

What are the advantages of using biopesticides over synthetic chemical pesticides?

Biopesticides offer several benefits compared to conventional chemical pesticides:1. They are generally safer for humans, animals, and the environment due to lower toxicity.2. They degrade more quickly, reducing residue accumulation in soil and water.3. They often target specific pests, preserving beneficial insects like pollinators and natural predators.4. They help manage pesticide resistance when used in integrated pest management (IPM) programs.These advantages make biopesticides a sustainable choice for modern agriculture.

How effective are biopesticides in real-world farming conditions?

Biopesticides can be highly effective when applied correctly under appropriate environmental conditions. Their performance depends on factors such as timing, application method, pest life stage, and compatibility with other crop protection strategies. While they may act more slowly than synthetic chemicals, consistent use within an Integrated Pest Management (IPM) framework enhances their efficacy and contributes to long-term pest suppression with minimal ecological impact.

What certifications or regulations apply to biopesticide products?

Biopesticide products are regulated by governmental agencies such as the U.S. Environmental Protection Agency (EPA), the European Food Safety Authority (EFSA), or equivalent bodies in other countries. In the U.S., biopesticides fall under FIFRA and must undergo evaluation for safety and efficacy before registration. Many biopesticides also qualify for organic certification under standards like USDA Organic or EU Organic, provided they meet strict ingredient and production criteria.

How should farmers choose the right biopesticide for their crops?

Farmers should consider several key factors when selecting a biopesticide:1. Identify the target pest and ensure the product is labeled for that specific pest and crop.2. Check compatibility with existing IPM practices and other inputs (e.g., fertilizers or fungicides).3. Review shelf life, storage requirements, and application instructions.4. Prefer products from reputable suppliers with third-party testing data and regulatory approvals.Consulting agronomists or extension services can further support informed decision-making.

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