AI Article Synopsis

  • Nitrogen is essential for cotton growth, and its deficiency leads to poor plant performance, prompting farmers to often apply excessive amounts to achieve higher yields, which can backfire by reducing quality and efficiency.
  • Improving Nitrogen Use Efficiency (NUE) is crucial for both minimizing environmental damage from nitrate pollution and enhancing the profitability of cotton farming, with management practices playing a significant role.
  • This study reviews factors affecting NUE and explores both agronomic and molecular strategies to improve nitrogen uptake and utilization in cotton, providing insights into the underlying mechanisms at play.

Article Abstract

Nitrogen is a vital nutrient for agricultural, and a defieciency of it causes stagnate cotton growth and yield penalty. Farmers rely heavily on N over-application to boost cotton output, which can result in decreased lint yield, quality, and N use efficiency (NUE). Therefore, improving NUE in cotton is most crucial for reducing environmental nitrate pollution and increasing farm profitability. Well-defined management practices, such as the type of sources, N-rate, application time, application method, crop growth stages, and genotypes, have a notable impact on NUE. Different N formulations, such as slow and controlled released fertilizers, have been shown to improve N uptake and, NUE. Increasing N rates are said to boost cotton yield, although high rates may potentially impair the yield depending on the soil and environmental conditions. This study comprehensively reviews various factors including agronomic and environmental constraints that influence N uptake, transport, accumulation, and ultimately NUE in cotton. Furthermore, we explore several agronomic and molecular approaches to enhance efficiency for better N uptake and utilization in cotton. Finally, this objective of this review to highlight a comprehensive view on enhancement of NUE in cotton and could be useful for understanding the physiological, biochemical and molecular mechanism of N in cotton.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9443504PMC
http://dx.doi.org/10.3389/fpls.2022.970339DOI Listing

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