Current Progress and Future Prospect of Wheat Genetics Research towards an Enhanced Nitrogen Use Efficiency

Author:

Zhao Yun12,Islam Shahidul13ORCID,Alhabbar Zaid4ORCID,Zhang Jingjuan1ORCID,O’Hara Graham1,Anwar Masood1,Ma Wujun15ORCID

Affiliation:

1. Food Futures Institute & College of Science, Health, Engineering and Education, Murdoch University, Perth 6150, Australia

2. Institute of Cereal and Oil Crops, Hebei Academy of Agriculture and Forestry Sciences, Laboratory of Crop Genetics and Breeding of Hebei, Shijiazhuang 050035, China

3. Department of Plant Sciences, North Dakota State University, Fargo, ND 58108, USA

4. Department of Field Crops, College of Agriculture and Forestry, University of Mosul, Mosul 41002, Iraq

5. College of Agronomy, Qingdao Agriculture University, Qingdao 266109, China

Abstract

To improve the yield and quality of wheat is of great importance for food security worldwide. One of the most effective and significant approaches to achieve this goal is to enhance the nitrogen use efficiency (NUE) in wheat. In this review, a comprehensive understanding of the factors involved in the process of the wheat nitrogen uptake, assimilation and remobilization of nitrogen in wheat were introduced. An appropriate definition of NUE is vital prior to its precise evaluation for the following gene identification and breeding process. Apart from grain yield (GY) and grain protein content (GPC), the commonly recognized major indicators of NUE, grain protein deviation (GPD) could also be considered as a potential trait for NUE evaluation. As a complex quantitative trait, NUE is affected by transporter proteins, kinases, transcription factors (TFs) and micro RNAs (miRNAs), which participate in the nitrogen uptake process, as well as key enzymes, circadian regulators, cross-talks between carbon metabolism, which are associated with nitrogen assimilation and remobilization. A series of quantitative genetic loci (QTLs) and linking markers were compiled in the hope to help discover more efficient and useful genetic resources for breeding program. For future NUE improvement, an exploration for other criteria during selection process that incorporates morphological, physiological and biochemical traits is needed. Applying new technologies from phenomics will allow high-throughput NUE phenotyping and accelerate the breeding process. A combination of multi-omics techniques and the previously verified QTLs and molecular markers will facilitate the NUE QTL-mapping and novel gene identification.

Funder

Grains Research and Development Corporation

HAAFS Science and Technology Innovation Special Project

Talents Construction Project of Science and Technology Innovation

Science and Technology Program of Hebei

Project for Hebei Scientific and Technological Innovation Team of Modern Wheat Seed Industry

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

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