1997•Journal of Plant NutritionRequires access

Nitrogen fertilization and elemental composition affects fruit quality of ‘Fuji’ apples

John Thomas Raese, Stephen R. Drake

Open publisher page 58 citations

Abstract

In 1989 to 1995, five rates of nitrogen (N) fertilizer were applied to ‘Fuji’ apple trees grafted on ‘Delicious’ and ‘Granny Smith’ interstems and grown on M.26 rootstock to determine fruit quality and yield. Fruit weight was increased by N fertilizer rate, but fruit production was not influenced appreciably by rate of N fertilizer, for the one year (1994) it was observed. Highest fruit quality was achieved with the lowest N fertilizer rate of 25 lbs.A‐1 (28.4 kg.ha‐1). Fruit quality was negatively related to N in leaves and fruit peel and cortex as well as leaf boron (B), fruit peel copper (Cu), magnesium (Mg) and fruit cortex Mg, and manganese (Mn) for both interstems. Lower rates of N fertilizer were related to lower concentrations of leaf and fruit N, “redder”; fruit skin color, greater fruit firmness and soluble solids concentration, higher fructose levels, and a lower incidence of bitter pit and scald than the higher rates of 100 or 150 lbs N A‐1 (113.6 or 170.5 kg N ha‐1).

About this research paper

What this paper is about

In 1989 to 1995, five rates of nitrogen (N) fertilizer were applied to ‘Fuji’ apple trees grafted on ‘Delicious’ and ‘Granny Smith’ interstems and grown on M.26 rootstock to determine fruit quality and yield. Fruit weight was increased by N fertilizer rate, but fruit production was not influenced appreciably by rate of N fertilizer, for the one year (1994) it was observed. Highest fruit quality was achieved with the lowest N fertilizer rate of 25 lbs.A‐1 (28.4 kg.ha‐1). Fruit quality was negatively related to N in leaves and fruit peel and cortex as well as leaf boron (B), fruit peel copper (Cu), magnesium (Mg) and fruit cortex Mg, and manganese (Mn) for both interstems. Lower rates of N fertilizer were related to lower concentrations of leaf and fruit N, “redder”; fruit skin color, greater fruit firmness and soluble solids concentration, higher fructose levels, and a lower incidence of bitter pit and scald than the higher rates of 100 or 150 lbs N A‐1 (113.6 or 170.5 kg N ha‐1).

Why it matters

OpenAlex reports 58 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In 1989 to 1995, five rates of nitrogen (N) fertilizer were applied to ‘Fuji’ apple trees grafted on ‘Delicious’ and ‘Granny Smith’ interstems and grown on M.26 rootstock to determine fruit quality and yield. Fruit weight was increased by N fertilizer rate, but fruit production was not influenced appreciably by rate of N fertilizer, for the one year (1994) it was observed. Highest fruit quality was achieved with the lowest N fertilizer rate of 25 lbs.A‐1 (28.4 kg.ha‐1). Fruit quality was negatively related to N in leaves and fruit peel and cortex as well as leaf boron (B), fruit peel copper (Cu), magnesium (Mg) and fruit cortex Mg, and manganese (Mn) for both interstems. Lower rates of N fertilizer were related to lower concentrations of leaf and fruit N, “redder”; fruit skin color, greater fruit firmness and soluble solids concentration, higher fructose levels, and a lower incidence of bitter pit and scald than the higher rates of 100 or 150 lbs N A‐1 (113.6 or 170.5 kg N ha‐1).

Key concepts: Fertilizer, Chemistry, Human fertilization, Horticulture, Nitrogen, Rootstock, Fructose, Fruit tree

Related papers

Back to paper searchBrowse research topicsOriginal source
Nitrogen fertilization and elemental composition affects fruit quality of ‘Fuji’ apples — Research Paper | ScholarLens