Showing posts with label nitrogen. Show all posts
Showing posts with label nitrogen. Show all posts

Saturday, April 24, 2021

EFFECTS OF NITROGEN FORMS AND RATES ON Fusarium culmorum GROWTH, FITNESS, AGGRESSIVENESS AND WHEAT, BARLEY AND TRITICALE RESISTANCE TO CROWN ROT DISEASE | PLANT CELL BIOTECHNOLOGY AND MOLECULAR BIOLOGY

 Management of wheat crown rot disease relies mostly on cultural techniques. However, nitrogen’s effect on host susceptibility and Fusarium culmorum is not fully examined. Therefore, a series of experiments dealt with rates of nitrogenous fertilizers effect on pathogen fitness and varietal resistance of some small grain cereals. These experiments served as frameworks to examine the patterns of varietal defense against the causal agent. Nitrogen rates were studied for their effect on fungus growth under two temperatures, and on aggressiveness and disease resistance. This research adopted data mining analysis of experimental data to describe and model varietal resistance. The form and rates of nitrogen fertilizers significantly affected fungus growth, aggressiveness and varietal resistance. Forms of nitrogen use at (24 g/L) greatly biased disease resistance, and urea increased Fusarium culmorum fitness and aggressiveness, especially at 20-25°C. However, a reasonable nitrogen fertilization based on ammonium nitrate reduced these characteristics, resulting in a subsequently decrease in disease severity and a reliable expression of disease resistance. Integration of decision tree analysis and the methodology developed herein for selecting small grain germplasm should enable breeders to improve resistance to F. culmorum. Furthermore, to bring this disease under control, the use of ammonium nitrate as top dressing fertilizer in disease prone semi-arid regions are highly recommended.


Please see the link :-
https://www.ikprress.org/index.php/PCBMB/article/view/5675

Wednesday, March 24, 2021

EFFECT OF VESICULAR ARBUSCULAR MYCORRHIZAL FUNGAL ON GROWTH OF RICE CROP AND SOIL PROPERTY | PLANT CELL BIOTECHNOLOGY AND MOLECULAR BIOLOGY

 Because vesicular arbuscular mycorrhizal (VAM) fungi are an essential component of the soil-plant interface, their reactions to nutrient availability may mediate ecosystem function shifts. We investigated the effects of nitrogen (N) and phosphorus (P) additions on the growth and community of VAM by measuring the initial soil nutrient availability. Physico-chemical characteristics such as pH, EC, OC, N, P, and K, as well as available VAM, were measured in 15 soil samples from rice-growing fields in the Jamtara district of Jharkhand. All 15 soil samples were spread on Potato Dextrose Agar medium and tested with various fertiliser doses on rice crops based on batter response. The growth of VAM and rice crops was found to have a substantial relationship with soil property.


Please see the link :-
https://www.ikprress.org/index.php/PCBMB/article/view/5556

Friday, January 22, 2021

THE EFFECT OF Azotobacter chroococcum (A22 ISOLATE) ON IMPROVING THE GROWTH AND NUTRIENTS ABSORPTION OF MAIZE PLANTS TREATED WITH DIFFERENT LEVELS OF NITROGEN AND GROWN UNDER DIFFERENT SALT LEVELS | PLANT CELL BIOTECHNOLOGY AND MOLECULAR BIOLOGY

During the 2018 season, the pots experiment was performed in the canopy wired, College of Agriculture, University of Basrah, to determine the impact of Azotobacter chroococcum (A22 isolate) to boost the growth of maize grown in salt-affected soils, the experiment included four nitrogen levels 0, 50, 75 and 100 percent of the 150 kg N.ha-1 recommendation of nitrogen fertiliser, with three nitrogen levels. The results showed that A22 isolation inoculate increased dry weight by 22.25 percent and N, P and K absorbed by 37.04, 89.4 and 27.6 percent, respectively, compared to control un inoculates, inoculation with this isolate A22 decreased the recommendation for nitrogen fertiliser by 25 percent and improved maize growth under conditions of salt stress.

Please see the link :- https://www.ikprress.org/index.php/PCBMB/article/view/5376

Thursday, January 23, 2020

IMPACT OF MINERAL FERTILIZERS ON LEAF MINERAL CONTENT (CV NENDRAN) AND NUTRIENT STATUS OF THE STUDIED SOIL

Nendran is the popular variety grown commercially in different regions due to its wider adaptability and high degree of tolerance to drought in a perennial cropping system. A field experiment was performed in randomized block design with ten treatments of various ratios of nitrogen and potassium to study their nutrient concentrations in banana leaves and soil at vegetative and harvesting stage. The results revealed that the treatment 9 with the ratio of N250P80K400 showed the highest mineral content in leaves at both the vegetative and harvesting stage. Therefore the fertilizers with the dosage of N250P80K400 are optimum for growing the plants.

Please read full article : - www.ikprress.org