2020•PubMedRequires access

[Impacts of combined N and Zn application on Zn translocation, partitioning, and accumulation in Triticum aestivum].

Xiwen Yang, Miao Song, Qiu-Jie Li, Sumei Zhou, Shaoyu Han, Xu Chen, Lili Xu, Dexian He

Open publisher page 3 citations

Abstract

, which was significantly increased in the grain by foliar Zn application. Therefore, Zn concentration and Zn accumulation in wheat grain could be increased by maintaining the high-yield N fertilization and combining the foliar Zn application in the late growth stage, which would improve Zn nutritional quality of wheat grain.

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What this paper is about

, which was significantly increased in the grain by foliar Zn application. Therefore, Zn concentration and Zn accumulation in wheat grain could be increased by maintaining the high-yield N fertilization and combining the foliar Zn application in the late growth stage, which would improve Zn nutritional quality of wheat grain.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

, which was significantly increased in the grain by foliar Zn application. Therefore, Zn concentration and Zn accumulation in wheat grain could be increased by maintaining the high-yield N fertilization and combining the foliar Zn application in the late growth stage, which would improve Zn nutritional quality of wheat grain.

Key concepts: Human fertilization, Zinc, Fertilizer, Chemistry, Grain yield, Chromosomal translocation, Animal science, Agronomy

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[Impacts of combined N and Zn application on Zn translocation, partitioning, and accumulation in Triticum aestivum]. — Research Paper | ScholarLens