Results 211 to 220 of about 4,269,474 (262)

The use of increasing proportions of N-NH4+ among the total applied inorganic N to improve acidification and the nutritional status and performance of blueberry plants in soilless culture

, 2021
The increased demand for blueberries and limited availability of low-pH soils have led to the increased use of soilless culture systems. The objective of this study was to evaluate the effect of a wide range of RNH4+ [RNH4+ = 100*N-NH4+/(N-NH4++N-NO3 ...
G. Tamir   +4 more
semanticscholar   +1 more source

Differences in response to drought stress among highbush blueberry plants propagated conventionally and by tissue culture

, 2021
The effects of drought stress on the morphological and physiological features of highbush blueberry Brigitta Blue plants were investigated. The plants were propagated conventionally by stem cutting (SC) and tissue culture (TC).
Marzena Mazurek   +3 more
semanticscholar   +1 more source

Histochemical detection of Blueberry latent virus in highbush blueberry plant

Journal of General Plant Pathology, 2011
Blueberry latent virus (BBLV) was detected in 27 of 95 asymptomatic highbush blueberry trees in a blueberry field in Japan. In situ hybridization showed that the viral RNAs were detected in the palisade mesophyll, spongy mesophyll and vascular bundle of leaves.
Masamichi Isogai   +5 more
openaire   +1 more source

Uptake of ammonium‐nitrogen by blueberry plants

Journal of Plant Nutrition, 1993
Abstract Blueberry plants (Vaccinium ashei Reade cv. Tifblue) and Citrus natsudaidai Hayata were compared in terms of their ability to regulate the uptake of ammonium‐nitrogen (NH4‐N). Plants of both species were grown in N‐free nutrient solutions for three days and then transferred to nutrient solutions that contained various concentrations of NH4‐N ...
Nobuo Sugiyama, Mikiya Hirooka
openaire   +1 more source

Chlorosis in blueberries: A soil‐plant investigation*

Journal of Plant Nutrition, 1982
Abstract The highbush blueberry (Vaccinium corymbosum L.), which has been cultivated commercially in northwest Arkansas for about ten years, is rapidly gaining popularity in this area. However, problems are becoming apparent with regard to the delicate nutritional balance required by this plant.
J.T. Arnold, L.F. Thompson
openaire   +1 more source

Uptake of nitrate‐nitrogen by blueberry plants

Journal of Plant Nutrition, 1994
Abstract Kinetic parameters of the uptake of nitrate‐nitrogen (NO3‐N) by rabbiteye blueberry plants (Vaccinium ashei Reade cv. Tifblue) were studied. Plants were grown in nitrogen (N)‐free nutrient solution for three days and then transferred to nutrient solutions that contained various concentrations of NO3‐N.
Nobuo Sugiyama, Kouichi Ishigaki
openaire   +1 more source

Analysis of Blueberry Plant Rhizosphere Bacterial Diversity and Selection of Plant Growth Promoting Rhizobacteria

Current Microbiology, 2022
Microbial metabolites in rhizosphere soil are important to plant growth. In this study, microbial diversity in blueberry plant rhizosphere soil was characterized using high-throughput amplicon sequencing technology. There were 11 bacterial phyla and three fungal phyla dominating in the soil. In addition, inorganic-phosphate-solubilizing bacteria (iPSB)
Mengjiao Wang, Haiyan Sun, Zhimin Xu
openaire   +2 more sources

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