Efficacy of different Plant Extracts and Spinetoram (Radiant) Against Red Flour Beetle (Tribolium Castaneum (Herbst.) (Coleoptera: Tenebrionidae).

Authors

  • Habib-Ur- Rehman PARC-Arid Zone Research Centre, Dera Ismail Khan, KP, Pakistan.
  • Ashiq Saleem PARC-Arid Zone Research Centre, Dera Ismail Khan, KP, Pakistan.
  • Bibi Sadia Sardar Bahadur Khan Women’s University, Quetta, Balochistan, Pakistan.
  • Ijaz Ahmad PARC-Arid Zone Research Centre, Dera Ismail Khan, KP, Pakistan.
  • Muhammad Waqas PARC-Arid Zone Research Centre, Dera Ismail Khan, KP, Pakistan.
  • Imran Qazi PARC-Adaptive Research cum Demonstration Institute, Wana, KP, Pakistan.
  • Yusra kareem Department of Zoology, The University of Swabi, KP, Pakistan.
  • Aftab Ahmad PARC-Adaptive Research cum Demonstration Institute, Wana, KP, Pakistan.
  • Imtiaz Khan PARC-Adaptive Research cum Demonstration Institute, Miranshah, KP, Pakistan.

DOI:

https://doi.org/10.70749/ijbr.v2i02.141

Keywords:

Tribolium Castaneum, Bioassay, Botanicals, Chemical, Repellent, Laboratory

Abstract

Agriculture commodities infested by insect pest are being controlled by various methodologies for countering their drastic affects. One of the earliest methods is the use of insecticide against red flour beetle (Tribolium castaneum) insects have developed resistance against these insecticides, there for in the present research we were examine the mortality effect of two plants extracts (kaniar and shahtra) and spinetoram (radiant) against red flour beetle to compare the efficacy of these insecticide. The lethal effect of kaniar, shahtra and spinetoram were be evaluated using 6 concentrations 2.5, 5, 7.5, 10, 12.5 and 15 with 3 replications. The filter paper was used for bioassay evaluating the mortality after 24, 48, 72, and 96 hours. Statistical analysis was carried out for (ANOVA) using statistics 8 software. Mean of significant treatments were compared using Tukey HSD test. Mortality analysis showed that highest mortality was observed in case of spinetoram (radiant) (97%) at 150 ppm after 96-hour exposure following the plant extract Kaniar (70%) at 15% concentration after 96-hour exposure and shahtra (57%) at 15% concentration after 96-hour exposure, high repelancy was obtained by the plant extract, Shahtra (100%) after 60 minutes exposure followed by Kaniar (93%) after 60 min exposure. The results concluded that both the plants are highly effective than the insecticide against Tribolium castaneum and they can be safely used against stored product pests in commodities to conserve the food grains for future use without residual effects and other side effects related to health and food quality.

Downloads

Download data is not yet available.

References

Aboelhadid, S. M., & Youssef, I. M. I. (2021). Control of red flour beetle (Tribolium castaneum) in feeds and commercial poultry diets via using a blend of clove and lemongrass extracts. Environmental Science and Pollution Research, 1–10. https://doi.org/10.1007/s11356-021-12426-7

Ahmedani, M. S., Haque, M. I., Afzal, S. N., Iqbal, U. M. E. R., & Naz, S. (2008). Scope of commercial formulations of Bacillus thuringiensis Berliner as an alternative to methyl bromide against Tribolium castaneum adults. Pak J Bot, 40(5), 2149-2156. https://www.pakbs.org/pjbot/PDFs/40(5)/PJB40(5)2149.pdf

Ali, A. S. A. D., & Ali, H. I. R. A. D. (2015). Population dynamics of cereal aphids in wheat crop at District Swabi. Intl J of Agric and Environ Res, 1(1), 25-31.

Aliakbari, J., Fallahzadeh, M., Ghasemi, A., & Abdizadeh, R. (2010, July). Insecticidal activity of essential oil from Thymus daenensis Celak against Tribolium confusum Dur. In Proceeding of the 19th Iranian Plant Protection Congress.

Andric, G., Prazic-Golic, M., & Kljajic, P. (2015). Toxicity of several contact insecticides to Tribolium castaneum (Herbst) populations after selection with pirimiphos-methyl and deltamethrin. Pesticidi I Fitomedicina, 30(4), 209–216. https://doi.org/10.2298/pif1504209a

Arannilewa, S. T., Ekrakene, T., & Akinneye, J. O. (2006). Laboratory evaluation of four medicinal plants as protectants against the maize weevil, Sitophilus zeamais (Mots). AFRICAN JOURNAL of BIOTECHNOLOGY, 5(21), 2032–2036. https://doi.org/10.4314/ajb.v5i21.55935

Arthur, F. H. (2015). Residual efficacy of pyrethrin + methoprene for control of Tribolium castaneum and Tribolium confusum in a commercial flour mill. Journal of Stored Products Research, 64, 42–44. https://doi.org/10.1016/j.jspr.2015.08.001

Arthur, F. H., & Campbell, J. F. (2008). Distribution and efficacy of pyrethrin aerosol to control Tribolium confusum (Coleoptera: Tenebrionidae) in food storage facilities. Journal of Stored Products Research, 44(1), 58–64. https://doi.org/10.1016/j.jspr.2007.04.001

Arthur, F. H., & Fontenot, E. A. (2012). Residual Activity of Methoprene and Novaluron as Surface Treatments to Manage the Flour Beetles,Tribolium castaneumandTribolium confusum. Journal of Insect Science, 12(95), 1–11. https://doi.org/10.1673/031.012.9501

Athanassiou, C. G., Kavallieratos, N. G., Boukouvala, M. C., Mavroforos, M. E., & Kontodimas, D. C. (2015). Efficacy of alpha-cypermethrin and thiamethoxam against Trogoderma granarium Everts (Coleoptera: Dermestidae) and Tenebrio molitor L. (Coleoptera: Tenebrionidae) on concrete. Journal of Stored Products Research, 62, 101–107. https://doi.org/10.1016/j.jspr.2015.04.003

Babarinde, S. A., Kemabonta, K. A., Olatunde, O. Z., Ojutiku, E. O., & Adeniyi, A. K. (2021). Composition and toxicity of rough lemon (Citrus jambhiri Lush.) rind essential oil against red flour beetle. Acta Ecologica Sinica, 41(4), 325–331. https://doi.org/10.1016/j.chnaes.2020.07.001

Baliyarsingh, B., Mishra, A., & Rath, S. (2020). Evaluation of insecticidal and repellency activity of leaf extracts of Andrographis paniculata against Tribolium castaneum (red flour beetle). International Journal of Tropical Insect Science. https://doi.org/10.1007/s42690-020-00267-9

Benhalima, H., Chaudhry, M. Q., Mills, K. A., & Price, N. R. (2004). Phosphine resistance in stored-product insects collected from various grain storage facilities in Morocco. Journal of Stored Products Research, 40(3), 241–249. https://doi.org/10.1016/s0022-474x(03)00012-2

Bilal, H., Akram, W., Hassan, S. A., Zia, A., Bhatti, A. R., Mastoi, M. I., & Aslam, S. (2015). Insecticidal and repellent potential of citrus essential oils against Tribolium castaneum Herbst (Coleoptera: Tenebrionidae). Pakistan Journal of Zoology, 47(4), 997–1002.

Campbell, J. F., & Runnion, C. (2003). Patch exploitation by female red flour beetles, Tribolium castaneum. Journal of Insect Science, 3(1). https://doi.org/10.1093/jis/3.1.20

Campbell, J. F., Buckman, K. A., Fields, P. G., & Subramanyam, B. (2015). Evaluation of Structural Treatment Efficacy against Tribolium castaneum and Tribolium confusum (Coleoptera: Tenebrionidae) Using Meta-Analysis of Multiple Studies Conducted in Food Facilities. Journal of Economic Entomology, 108(5), 2125–2140. https://doi.org/10.1093/jee/tov215

CHOUPANIAN, M., & OMAR, D. (2018). Formulation and physicochemical characterization of neem oil nanoemulsions for control of Sitophilus oryzae (L., 1763) (Coleoptera: Curculionidae) and Tribolium castaneum (Herbst, 1797) (Coleoptera: Tenebrionidae). Turkish Journal of Entomology, 127–139. https://doi.org/10.16970/entoted.398541

Copping, L. G., & Menn, J. J. (2000). Biopesticides: a review of their action, applications and efficacy. Pest Management Science, 56(8), 651–676. https://doi.org/10.1002/1526-4998(200008)56:8%3C651::aid-ps201%3E3.0.co;2-u

Das, D. R., Parween, S., & Faruki, S. I. (2006). Efficacy of commercial neem-based insecticide, Nimbicidine against eggs of the red flour beetle Tribolium castaneum (Herbst). University Journal of Zoology Rajshahi University Zoological Society, 25, 51-55.

Devi, T. B., Raina, V., Sahoo, D., & Rajashekar, Y. (2021). Chemical composition and fumigant toxicity of the essential oil from Tithonia diversifolia (Hemsl.) A. Grey against two major stored grain insect pests. Journal of Plant Diseases and Protection, 128(2), 607–615. https://doi.org/10.1007/s41348-020-00424-9

El-Aziz, M. A., & El-Sayed, Y. (2009). Toxicity and biochemical efficacy of six essential oils against Tribolium confusum (du val) (Coleoptera: Tenebrionidae). Egyptian Academic Journal of Biological Sciences. A, Entomology, 2(2), 1–11. https://doi.org/10.21608/eajbsa.2009.15424

Elzaki, M. E. A., & Ali, A. M. (2015). Efficacy of neem, basil and chilli powders as antifeedant in the red flour beetle Tribolium castaneum (Herbst)(Coleoptera: Tenebrionidae). J. Environ. Agric. Sci, 2(9). https://www.agropublishers.com/files/Article%209.pdf

Gogate, S., Rahman, S., & Dutta, P. (2018). Efficacy of synthesized silver nanoparticles using Ocimum sanctum (L.) leaf extract against Corcyra cephalonica (S.). J. Entomol. Zoo. Stu, 6, 1149-1155. https://www.entomoljournal.com/archives/2018/vol6issue3/PartP/6-3-51-922.pdf

GOP. (2020). Pakistan economic survey, ministry of food, 2019-20 agricul and livest. finance division, economic advisor’s wing, Islamabad.

Guedes, R. N. C., Kambhampati, S., & Dover, B. A. (1997). Allozyme variation among Brazilian and US populations of Rhyzopertha dominica resistant to insecticides. Entomologia Experimentalis et Applicata, 84(1), 49-57. https://doi.org/10.1046/j.1570-7458.1997.00197.x

Guru-Pirasanna-Pandi, G., Adak, T., Gowda, B., Patil, N., Annamalai, M., & Jena, M. (2018). Toxicological effect of underutilized plant, Cleistanthus collinus leaf extracts against two major stored grain pests, the rice weevil, Sitophilus oryzae and red flour beetle, Tribolium castaneum. Ecotoxicology and Environmental Safety, 154, 92–99. https://doi.org/10.1016/j.ecoenv.2018.02.024

Habig, W. H., Pabst, M. J., & Jakoby, W. B. (1974). Glutathione S-Transferases: THE FIRST ENZYMATIC STEP IN MERCAPTURIC ACID FORMATION. Journal of Biological Chemistry, 249(22), 7130–7139. https://doi.org/10.1016/S0021-9258(19)42083-8

Hagstrum, D.W., Subramanyam, B. H. (2006). Fundamentals of Stored Product Entomology. Am. Assn. Cereal Chem.(AACC) Int., St. Paul, Minnesota, USA, 323.

Hameed, A. (2012). Toxicological effects of neem (Azadirachta indica), Kanair (Nerium oleander) and spinosad (Tracer 240 SC) on the red flour beetle (Tribolium castaneum) (Herbst.). AFRICAN JOURNAL of AGRICULTURAL RESEEARCH, 7(4), 555–560. https://doi.org/10.5897/ajar11.1054

Haroun, S. A., Elnaggar, M. E., Zein, D. M., & Gad, R. I. (2020). Insecticidal efficiency and safety of zinc oxide and hydrophilic silica nanoparticles against some stored seed insects. Journal of Plant Protection Research, 60(1), 77–85.

Hussain, R., Ashfaq, M., & Saleem, M. A. (2012). Effect of Abamectin on Body Protein Content and Activity of Selected Enzymes in Adults of Insecticide-Resistant and -Susceptible Strains of Tribolium castaneum (Herbst) (Coleoptera: Tenebrionidae). Pakistan Journal of Zoology, 44(4), 1159–1163.

Ibrahim, S. S., & Salem, N. Y. (2019). Insecticidal efficacy of nano zeolite against Tribolium confusum (Col., Tenebrionidae) and Callosobruchus maculatus (Col., Bruchidae). Bulletin of the National Research Centre, 43(1). https://doi.org/10.1186/s42269-019-0128-4

Islam, M. S., & Talukder, F. A. (2005). Toxic and residual effects of Azadirachta indica, Tagetes erecta and Cynodon dactylon seed extracts and leaf powders towards Tribolium castaneum. Journal of Plant Diseases and Protection, 112(6), 594–601. https://doi.org/10.1007/bf03356157

Islam, M. S., Hasan, M. M., Xiong, W., Zhang, S. C., & Lei, C. L. (2008). Fumigant and repellent activities of essential oil from Coriandrum sativum (L.) (Apiaceae) against red flour beetle Tribolium castaneum (Herbst) (Coleoptera: Tenebrionidae). Journal of Pest Science, 82(2), 171–177. https://doi.org/10.1007/s10340-008-0236-7

Isman, M. B. (2006). BOTANICAL INSECTICIDES, DETERRENTS, AND REPELLENTS IN MODERN AGRICULTURE AND AN INCREASINGLY REGULATED WORLD. Annual Review of Entomology, 51(1), 45–66. https://doi.org/10.1146/annurev.ento.51.110104.151146

Jembere, B., Getahun, D., Negash, M., & Seyoum, E. (2005, August). Toxicity of Birbira (Milletia ferruginea) seed crude extracts to some insect pests as compared to other botanical and synthetic insecticides. In Proceedings of the 11th NAPRECA Symposium on natural products and drug delivery (pp. 9-12).

Khaliq, A., Ullah, M. I., Afzal, M., Ali, S., Sajjad, A., Ahmad, A., & Khalid, S. (2020). Management of Tribolium castaneum using synergism between conventional fumigant and plant essential oils. International Journal of Tropical Insect Science, 40(4), 781–788. https://doi.org/10.1007/s42690-020-00131-w

Khan, H. A. A., Akram, W., Lee, S., Ahmad, T., Maqsood, K., Khan, H. A., Nazir, M. W., & Javaid, M. F. (2019). Toxic potential of some indigenous plant oils against the rice weevil, Sitophilus oryzae (Linnaeus). Entomological Research, 49(3), 136–140. https://doi.org/10.1111/1748-5967.12346

Khan, I., Ahmad, B., Saljoqi, A. U. A., & Khan, J. (2024). Efficacy of different IPM tools against P. perpusilla under lab and firld conditions. JPT&CP. 31(04) 1366-1382. https://doi.org/10.53555/jptcp.v31i4.5811

Khan, I., Qureshi, N., Khan, S. A., Ali, A., Ahmad, M., & Junaid, K. (2016). Efficacy of several plant extracts as growth inhibitors against red flour beetle, Tribolium castaneum (Herbst)(Coleoptera: Tenebrionidae). Acta Zoologica Bulgarica, 68(3), 443-450.

Kharel, K., Arthur, F. H., Zhu, K. Y., Campbell, J. F., & Subramanyam, B. (2014). Evaluation of Synergized Pyrethrin Aerosol for Control of Tribolium castaneum and Tribolium confusum (Coleoptera: Tenebrionidae). Journal of Economic Entomology, 107(1), 462–468. https://doi.org/10.1603/ec13355

Kim, H. G., Margolies, D., & Park, Y. (2015). The roles of thermal transient receptor potential channels in thermotactic behavior and in thermal acclimation in the red flour beetle, Tribolium castaneum. Journal of Insect Physiology, 76, 47–55. https://doi.org/10.1016/j.jinsphys.2015.03.008

Latif, A., Rehman, S., Afaq, S., & Siddiqui, N. (2011). Physico-chemical and phytochemical evaluation of Fumaria officinalis Linn.(Shahtra)–An important medicinal herbal drug. African Journal of Biotechnology, 10, 47-95.

Li, L., & Arbogast, R. T. (1991). The effect of grain breakage on fecundity, development, survival, and population increase in maize of Tribolium castaneum (Herbst) (Coleoptera: Tenebrionidae). Journal of Stored Products Research, 27(2), 87–94. https://doi.org/10.1016/0022-474x(91)90017-7

Lis, Ł., Bakuła, T., Baranowski, M., & Czarnewicz, A. (2011). The carcinogenic effects of benzoquinones produced by the flour beetle. Polish Journal of Veterinary Sciences, 14(1). https://doi.org/10.2478/v10181-011-0025-8

Lorini, I., & Ferreira Filho, A. (2006). Integrated pest management strategies used in stored grain in Brazil to manage pesticide resistance. https://citeseerx.ist.psu.edu/document?repid=rep1&type=pdf&doi=b9eaa73ba7770f05fa050337964545f8dbf53b4f

Mamun, M., Shahjahan, M., & Ahmad, M. (1970). Laboratory evaluation of some indigenous plant extracts as toxicants against red flour beetle, Tribolium castaneum Herbst. Journal of the Bangladesh Agricultural University, 7(1), 1–5. https://doi.org/10.3329/jbau.v7i1.4789

Mangang, I. B., Tiwari, A., Rajamani, M., & Manickam, L. (2019). Comparative laboratory efficacy of novel botanical extracts against Tribolium castaneum. Journal of the Science of Food and Agriculture. https://doi.org/10.1002/jsfa.10162

Marziyeh, C., Omar, D., & Basri, M. (2016). Toxicity of neem oil nano-emulsion formulations against adults of Sitophilus oryzae (L.) and Tribolium castaneum (Herbst).

Memon, S. ., Sahto, J. G. M. ., Bashir, L. ., Nizamani, I. A. ., & Rajput, A. Q. (2020). RELATIVE EFFICACY OF DIFFERENT CONCENTRATIONS OF MINT (MENTHA LONGIFOLIA) AGAINST TRIBOLIUM CONFUSUM (COLEOPTERA: TENEBRIONIDAE). Journal of Applied Research in Plant Sciences , 1(2), 59–64. https://doi.org/10.38211/joarps.2020.1.2.9

Naseem, M., Sadaf, S., Bibi, S., Rehman, H. -, Hassan, M. -, Aziz, S., & Ullah, I. (2019). Evaluation of a NIAB Gold castor variety for biodiesel production and bio-pesticide. Industrial Crops and Products, 130, 634–641. https://doi.org/10.1016/j.indcrop.2019.01.022

Nathan, S. S., Kalaivani, K., & Chung, P. G. (2005). The effects of azadirachtin and nucleopolyhedrovirus on midgut enzymatic profile of Spodoptera litura Fab. (Lepidoptera: Noctuidae). Pesticide Biochemistry and Physiology, 83(1), 46–57. https://doi.org/10.1016/j.pestbp.2005.03.009

Nebapure, M. S., Srivastava, C., & Walia, S. (2017). Insecticidal and repellency potential of glory lily, Gloriosa Superba Extracts against Red rust flour beetle Tribolium Castaneum. Indian Journal of Entomology, 79(4), 474. https://doi.org/10.5958/0974-8172.2017.00085.2

Nova, S. T. N., Mahboba, J., Alim, M. A., & Mandal, B. K. (2020). Management of the red flour beetle Tribolium castaneum (Herbst.)(Coleoptera: Tenebrinionidae) in stored wheat using dry dust of Neem (Azadirachta indica) and Jarul (Lagerstroemia speciosa) as repellants. https://www.entomoljournal.com/archives/2020/vol8issue3/PartAE/8-3-299-403.pdf

Papanikolaou, N. E., Kavallieratos, N. G., Boukouvala, M. C., & Malesios, C. (2021). (Quasi)-Binomial vs. Gaussian Models to Evaluate Thiamethoxam, Pirimiphos-Methyl, Alpha-Cypermethrin and Deltamethrin on Different Types of Storage Bag Materials Against Ephestia kuehniella Zeller (Lepidoptera: Pyralidae) and Tribolium confusum Jacquelin du Val (Coleoptera: Tenebrionidae). Insects, 12(2), 182. https://doi.org/10.3390/insects12020182

Qin, Y., Wu, Y., Wang, Q., & Yu, S. (2019). Method for pests detecting in stored grain based on spectral residual saliency edge detection. Grain & Oil Science and Technology, 2(2), 33–38. https://doi.org/10.1016/j.gaost.2019.06.001

Rajabpour, A., Abdali Mashahdi, A. R., & Ghorbani, M. R. (2019). Chemical compositions of leaf extracts from Conocarpus erectus L. (Combretaceae) and their bioactivities against Tribolium castaneum Herbst (Coleoptera: Tenebrionidae). Journal of Asia-Pacific Entomology, 22(1), 333–337. https://doi.org/10.1016/j.aspen.2019.01.015

Rajkumar, V., Gunasekaran, C., Christy, I. K., Dharmaraj, J., Chinnaraj, P., & Paul, C. A. (2019). Toxicity, antifeedant and biochemical efficacy of Mentha piperita L. essential oil and their major constituents against stored grain pest. Pesticide Biochemistry and Physiology, 156, 138–144. https://doi.org/10.1016/j.pestbp.2019.02.016

Ramesha, B., & Ramamurthy, V. V. (2012). Taxonomic Studies on the GenusAthesapeuta(Coleoptera: Curculionidae: Baridinae) from India with Description of Three New Species. Psyche a Journal of Entomology, 2012, 1–15. https://doi.org/10.1155/2012/604087

Ramsha, A., Saleem, K. A., & Saba, B. (2019). Repellent Activity of Certain Plant Extracts (Clove, Coriander, Neem and Mint) Against Red Flour Beetle. American Scientific Research Journal for Engineering, Technology, and Sciences, 55(1), 83–91.

Rizvi, S. A., Ayaz Ahmad, A. A., Azmi, M. A., Imtiaz Ahmad, I. A., & Kahkashan Akhtar, K. A. (2001). Determination of toxicity of Clarodenderum inerme and cypermethrin against Tribolium castaneum and their effects on acid phosphatase and cholinesterase enzymes. Proceed. Pak. Cong. ZooI. 175-180. https://www.cabidigitallibrary.org/doi/full/10.5555/20033089929

Saeed, Q., Iqbal, N., Ahmed, F., Rehman, S., & Alvi, A. M. (2016). Screening of different plant extracts against Tribolium castaneum (herbst.) Under laboratory conditions. Sci. Int.(Lahore), 28(2), 1219.

Sagheer, M., Ali, K., Rashid, A., Umair Sagheer, & Alvi, A. (2013). Repellent and Toxicological Impact of Acetone Extracts of Nicotiana tabacum, Pegnum hermala, Saussurea costus and Salsola baryosma against Red Flour Beetle, Tribolium castaneum (Herbst). Pakistan Journal of Zoology, 45(6), 1735–1739. http://www.zsp.com.pk/pdf45/1735-1739%20_33_%20PJZ-1166-1212%204-12-13.pdf

Sagheer, M., Hasan, M. -, Najam-ul-Hassan, M., Farhan, M., Khan, A., & Rahman, A. (2014). Repellent effects of selected medicinal plant extracts against Rust-Red Flour Beetle, Tribolium castaneum (Herbst) (Coleoptera: Tenebrionidae). Journal of Entomology and Zoology Studies, 2(3), 107–110.

Said, P. P., & Pashte, V. V. (2015). Botanicals: The protectants of stored grains pests. Trends in Biosciences, 8(15), 3750-3755. https://www.indianjournals.com/ijor.aspx?target=ijor:tbs&volume=8&issue=15&article=003

Shojaei, A., Talebi, K., Sharifian, I., & Ahsaei, S. M. (2017). Evaluation of detoxifying enzymes of Tribolium castaneum and Tribolium confusum (Col.: Tenebrionidae) exposed to essential oil of Artemisia dracunculus L. Biharean Biologist, 11(1), 5-9. https://biozoojournals.ro/bihbiol/cont/v11n1/bb_e151209_Shojaei.pdf

Singh, K. D., Mobolade, A. J., Bharali, R., Sahoo, D., & Rajashekar, Y. (2021). Main plant volatiles as stored grain pest management approach: A review. Journal of Agriculture and Food Research, 4, 100127. https://doi.org/10.1016/j.jafr.2021.100127

Stadler, T., Buteler, M., Valdez, S. R., & Gitto, J. G. (2018). Particulate Nanoinsecticides: A New Concept in Insect Pest Management. InTech EBooks. https://doi.org/10.5772/intechopen.72448

Subramanyam, B., & Hagstrum, D. W. (2000). Alternatives to Pesticides in Stored-Product IPM. In Springer eBooks. Springer Nature. https://doi.org/10.1007/978-1-4615-4353-4

Tchonkouang, R. D., Onyeaka, H., & Nkoutchou, H. (2024). Assessing the vulnerability of food supply chains to climate change-induced disruptions. Science of the Total Environment, 920(0048-9697), 171047. https://doi.org/10.1016/j.scitotenv.2024.171047

Vojoudi, S. (2012). Efficacy of some Insecticides Against Red Flour Beetle, Tribolium castaneum Herbst (Coleoptera... Journal of Life Sciences, 6, 405-410.

Wakil, W., Schmitt, T., & Kavallieratos, N. G. (2021). Persistence and efficacy of enhanced diatomaceous earth, imidacloprid, and Beauveria bassiana against three coleopteran and one psocid stored-grain insects. Environmental Science and Pollution Research, 28(18), 23459–23472. https://doi.org/10.1007/s11356-020-12304-8

Yang, F.-L., Zhu, F., & Lei, C.-L. (2010). Garlic essential oil and its major component as fumigants for controlling Tribolium castaneum (Herbst) in chambers filled with stored grain. Journal of Pest Science, 83(3), 311–317. https://doi.org/10.1007/s10340-010-0300-y

Yao, J., Chen, C., Wu, H., Chang, J., Silver, K., Campbell, J. F., Arthur, F. H., & Zhu, K. Y. (2019). Differential susceptibilities of two closely-related stored product pests, the red flour beetle (Tribolium castaneum) and the confused flour beetle (Tribolium confusum), to five selected insecticides. Journal of Stored Products Research, 84, 101524. https://doi.org/10.1016/j.jspr.2019.101524

Zhang, R., Guo, Q., Kennelly, E. J., Long, C., & Chai, X. (2020). Diverse alkaloids and biological activities of Fumaria (Papaveraceae): An ethnomedicinal group. Fitoterapia, 146, 104697. https://doi.org/10.1016/j.fitote.2020.104697

Downloads

Published

2024-10-26

How to Cite

Efficacy of different Plant Extracts and Spinetoram (Radiant) Against Red Flour Beetle (Tribolium Castaneum (Herbst.) (Coleoptera: Tenebrionidae). (2024). Indus Journal of Bioscience Research, 2(02), 73-86. https://doi.org/10.70749/ijbr.v2i02.141