Chili (Capsicum sp.) is widely grown in our country and around the world. This spice plant brings high economic value to many farmers. Currently, chili cultivation is facing difficulties due to the harmful effects of yellow wilt caused by Fusarium oxysporum and leaf spot disease caused by Cercospora sp. In addition, the abuse of fertilizers, chemical drugs and growth regulators during the production process to increase the yield of chili has left chemical residues in the product beyond the allowable threshold. In addition, the cultivation of crops under a number of clean agricultural programs and limited use of chemical drugs such as VietGap and Global Gap are becoming popular in our country. The use of beneficial microorganisms to replace chemical drugs is essential. Therefore, a study was performed to evaluate the effect of the beneficial fungus Penicillium on chili peppers. In which, the experiment to evaluate the effectiveness of Penicillium sp. For chili plants, it was shown that Penicillium fungus was able to promote IAA content at the germination stage of chili seeds when seeds were soaked in a suspension of Penicillium sp. The density of 106 cfu/ml showed high efficiency in terms of root length (19.66mm), stem length (19.87mm), root weight (0.31g) and stem weight (0.42g). Continuing the experiment under net house conditions, the fungus Penicillium sp. demonstrated the ability to help chili plants to resist pathogens when treated with a spore density of 106 cfu/ml and the experiment showed that Penicillium sp. Highly effective in helping pepper plants to resist yellow wilt caused by Fusarium oxysporum and leaf spot caused by Cercospora sp. The results showed that the infection rate and disease index were low in the treatment treatments compared with the control distilled water with high disease rate and disease index, respectively (68%), (46.67%) for yellow wilt disease and (91.43%) (26.67%) for leaf spot disease.
Tạp chí: EAI ICCASA 2021 - 10th EAI International Conference on Context-Aware Systems and Applications October 28-29, 2021 Ho Chi Minh City, Vietnam (online)
Tạp chí: 21st ACIS International Semi-Virtual Winter Conference on Software Engineering, Artificial Intelligence, Networking and Parallel/Distributed Computing (SNPD2021-Winter), January 28-30, 2021, Ho Chi Minh City, Vietnam
Tạp chí khoa học Trường Đại học Cần Thơ
Lầu 4, Nhà Điều Hành, Khu II, đường 3/2, P. Xuân Khánh, Q. Ninh Kiều, TP. Cần Thơ
Điện thoại: (0292) 3 872 157; Email: tapchidhct@ctu.edu.vn
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