4.7 Review

Research Progress in Crop Root Biology and Nitrogen Uptake and Use, with Emphasis on Cereal Crops

Journal

AGRONOMY-BASEL
Volume 13, Issue 7, Pages -

Publisher

MDPI
DOI: 10.3390/agronomy13071678

Keywords

root morphology; root physiology; nitrogen efficiency; microorganism

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The biological characteristics of crop roots are closely related to the efficient utilization of nitrogen and have become a research hotspot in agricultural cultivation and breeding. The root system and root microbiota play a crucial role in plant growth and development in response to environmental changes. This study explores the interaction mechanism between crop root biology and nitrogen absorption and utilization, providing a theoretical basis for reducing nitrogen fertilizer application and selecting nitrogen-efficient varieties.
The biological characteristics of crop roots are closely related to the efficient utilization of nitrogen and have become a research hotspot in agricultural cultivation and breeding in recent years. The root system and root microbiota play a crucial role in both the basic and the plastic growth and development of plants in response to external environmental changes. Nitrogen is an indispensable nutrient element for crop growth, and the efficient utilization of nitrogen is the key to achieving the high yield and quality of crops and establishing environmentally friendly agricultural production. The nitrogen absorbed and utilized by rice mainly enters the aboveground part of the plant through the root system from within the soil. This process is explored from the perspective of root biology (root morphology, physiological and biochemical characteristics, root growth and development process and regulation, rhizosphere microorganisms, and their symbiotic systems), which is in line with the directions of less investment, increased production, environmental protection, and sustainable development in China. Based on the research status in this field at present, this article explored the interaction mechanism between crop root biology and nitrogen absorption and utilization, and looks forward to the future research directions for root biology. This study provides a theoretical basis for reducing nitrogen fertilizer application, optimizing nitrogen-efficient cultivation management techniques, and selecting nitrogen-efficient varieties.

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