Vol. 4 No. 02 (2024): Volume 04 Issue 02

Vol. 4 No. 02 (2024): Volume 04 Issue 02
Published: 01-02-2024

Articles

51-56 34 35

THE IMPACT OF TILLAGE AND PLANTING ON THE SOIL RESOURCE-INTENSIVE TECHNOLOGY IN THE REGION OF THE LOWLAND-STEPPE TULIP ON THE FIELD YIELD, SEEDLING NUMBER AND YIELD OF AUTUMN WHEAT

J. Nishanov, X. Yusupov

In multifactorial field experiments conducted in 2022-2023, the influence of different methods and depths of processing of typical rain fed serezems, mineral fertilizers on field seed germination, stem density and productivity of winter bread wheat variety “Istiklol- 6” was studied in the conditions of the flat-hill rainfed zone of Uzbekistan.

46-50 57 17

THE INFLUENCE OF THE USE OF GROWTH SUBSTANCES ON THE CHEMICAL COMPOSITION OF SULTANAS’ GRAPE JUICE

K.S. Sultanov, P.E. Egamberdiev, I.S. Jo‘lbekov

In this article, the effect of the application of growth substances on the chemical composition of grapes on the chemical composition of grapes is studied. The best result is that two times in the vineyard, the growth substances had a significant effect on the sugar content and acidity of the grape bunches.

06-10 43 21

NETTING SUCCESS: A HOLISTIC EVALUATION OF GILLNET-BASED MARINE CAPTURE FISHERIES IN BAAI ISLAND PORT, BENGKULU

Yohana Romdhon , Mustopa Sukiyono

This study presents a comprehensive evaluation of the performance of gillnet-based marine capture fisheries in the Baai Island Port of Bengkulu. Utilizing both financial and operational metrics, the analysis offers insights into the effectiveness and sustainability of this fishing method in the region. Through rigorous assessment, key factors influencing the success of gillnet fisheries are identified, providing valuable implications for fisheries management and policy formulation.

01-05 40 13

GROWTH PATTERNS OF LEGUME PLANTS UNDER VARIED LEVELS OF DROUGHT STRESS TREATMENT

Veronica Wahyuni

This study investigates the growth patterns of legume plants under different levels of drought stress treatment. Legume plants are crucial components of agricultural ecosystems, providing essential nutrients and contributing to soil fertility. However, their growth and productivity can be severely impacted by drought stress, which is becoming increasingly prevalent due to climate change. In this research, legume plants are subjected to various levels of drought stress treatment, and their growth parameters such as biomass accumulation, leaf area, and physiological responses are measured and analyzed. The findings contribute to our understanding of how legume plants respond to drought stress and provide insights into potential strategies for mitigating the adverse effects of drought on legume crop production.