YAYUK MULYATI
Department of Science Education, Faculty of Mathematics and Natural Sciences, Universitas Negeri Malang. Jl. Semarang 5, Malang 65145, East Java, Indonesia

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Efficacy of bio-pesticide Lecanicillium lecanii against soybean-sucking bugs Riptortus linearis during field application YAYUK MULYATI; SITI ZUBAIDAH; YUSMANI PRAYOGO
Biodiversitas Journal of Biological Diversity Vol. 24 No. 9 (2023)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d240924

Abstract

Abstract. Mulyati Y, Zubaidah S, Prayogo Y. 2023. Efficacy of bio-pesticide Lecanicillium lecanii against soybean-sucking bugs Riptortus linearis during field application. Biodiversitas 24: 4829-4836. This study aimed to determine the effect of application time and surfactants on the efficacy of Lecanicillium lecanii strain Probolinggo in controlling the soybean pod-sucking bug Riptortus linearis in a field test. The study was conducted in a randomized block design consisting of two treatments, namely time of application (7 am, 10 am, 1 pm, and 4 pm) and type of surfactant (alkyl glycerol phthalate and alkylaryl polyglycol ether). Application time at 4 pm showed 93% highest mortality of R. linearis than the other treatments, with the lowest number of punctures (86 punctures) and the highest soybean dry weight (11.38 g), which were not significantly different from the application time of 10 am. The efficacy of L. lecanii increased by 74.3% after adding alkylaryl polyglycol ether. The efficacy of L. lecanii with alkyl glycerol phthalate was not significantly different from the control. In the parameters of the number of seed punctures and dry weight of soybeans, the surfactant treatment gave similar results to the control. The results showed that in the field test, the highest efficacy of L. lecanii against R. linearis occurred at 4 pm with alkil aril polyglycol ether surfactant.
Salicylic acid treatment induced change in the morphological, chlorophyll content, and phytochemical traits in two rice genotypes YAYUK MULYATI; SITI ZUBAIDAH; AFIFUDDIN LATIF ADIREDJO; MOCHAMMAD ROFIQ; NURUL JADID; TRIONO BAGUS SAPUTRO; ISNAWATI ISNAWATI; FITRIARI I. MUHAIMIN; FARAPTI FARAPTI; GADIS MEINAR SARI
Biodiversitas Journal of Biological Diversity Vol. 26 No. 2 (2025)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d260226

Abstract

Abstract. Mulyati Y, Zubaidah S, Adiredjo AL, Rofiq M, Jadid N, Saputro TB, Isnawati, Muhaimin FI, Farapti, Sari GM. 2025. Salicylic acid treatment induced change in the morphological traits and the content of chlorophylls and endogenous salicylic acid in two rice genotypes. Biodiversitas 26: 778-788. Salicylic acid (SA) plays a crucial role in rice plant resistance. At the same time, the elicitation mechanisms of its induction are not well understood. The exploration of rice's endogenous SA during the vegetative and generative phases in response to SA elicitation is a new area of study. Similarly, the correlation between SA and rice resistance characteristics is a fresh perspective that this research aims to address. The study focuses on the effect of exogenous salicylic acid (SA) elicitation on plant height, the content of chlorophyll a, b and total chlorophyll, endogenous SA, and the number of productive shoots and filled grains) characters in two rice genotypes, namely genotype A (Situbagendit×Cibogo3) and genotype B (Situbagendit×Ciherang8). SA at concentration 0-2.5 mg L?¹ was applied to the in vitro shoot culture of the rice varieties. The results showed that genotype B had significant content of chlorophyll a, total chlorophyll, endogenous SA content (generative phase), number of productive shoots, and filled rice grains compared to genotype A. SA concentration of 2 mg L?¹ was proven to be the optimal dose that could maximize the resistance and productivity characters of genotype B. Conversely, higher or lower concentrations tended to produce less significant or negative effects. A positive correlation between endogenous SA content and the number of productive shoots was found in genotype B. This study revealed the importance of genetic factors and elicitor concentration in improving rice resistance traits that affect productivity. These findings have practical implications, as they contribute to the development of superior rice cultivars that can support sustainable food security, offering hope for the future of agriculture.
Wing morphological changes in Drosophila melanogaster exposed to Bisphenol-A and Acrylamide SITI ZUBAIDAH; AHMAD FAUZI; DENY SETIAWAN; YAYUK MULYATI; NINDIANA CHOIRUNISA’; NATASYA ADIBA ZAHRAH
Biodiversitas Journal of Biological Diversity Vol. 26 No. 9 (2025)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d260928

Abstract

Abstract. Zubaidah S, Fauzi A, Setiawan D, Mulyati Y, Choirunisa’ N, Zahrah NA. 2025. Wing morphological changes in Drosophila melanogaster exposed to Bisphenol-A and Acrylamide. Biodiversitas 26: 4567-4576. Bisphenol-A (BPA) and acrylamide are two contaminants commonly found in processed food and beverage products. This study aimed to evaluate the impact of acute exposure to BPA and acrylamide contaminants on changes in Drosophila melanogaster wing morphology. The use of wings is based on their sensitivity to environmental changes and is one of the important organs for locomotion and mating in flies. In this study, the wild-type, black, and white strains of D. melanogaster were cultured for two generations to observe the acute exposure to these two contaminants. The statistical analysis showed that acute exposure to BPA and acrylamide for two generations did not correlate strongly with wing length and width changes in the population of the three D. melanogaster strains (p<0.01). We suspect that the lack of correlation may be influenced by the non-monotonic nature of BPA, the detoxification pathway of acrylamide, and exposure studies that are still limited to acute exposure. Of all flies observed, no wing morphological changes were found in the control group. However, <15% of the group exposed to BPA and acrylamide showed wing deformities (e.g., curled, wrinkled, and notched, broken wing veins, detachment, failure in growth, and imperfections in the formation of wing edges or wing cells). The results of this study require further studies, especially on other aspects of the study and exposure over several generations, long enough to see the impact of chronic exposure to BPA and acrylamide over the next few generations.