Root Nitrogen Assimilation in Winter Wheat Can Be Improved by Enhancing Carbon Skeleton Supply Through the Phosphoenolpyruvate Carboxylase Pathway and Transamination Under Waterlogging Conditions

Author:

Gao Jingwen,Su Yao,Zhang Xihua,Han Jihong,Liu Li,wang Feng

Publisher

Elsevier BV

Reference28 articles.

1. Natural variation in the long-distance transport of nutrients and photoassimilates in response to N availability;F Chardon;J. Plant Physiol,2022

2. Metabolic responses to potassium availability and waterlogging reshape respiration and carbon use efficiency in oil palm;J Cui;New Phytol,2019

3. Low nitrogen priming enhances photosynthesis adaptation to water-deficit stress in winter wheat;J Gao;Triticum aestivum L.) seedlings. Front. Plant Sci,2019

4. Potassium alleviates postanthesis photosynthetic reductions in winter wheat caused by waterlogging at the stem elongation stage;J Gao;Front. Plant Sci,2020

5. Improved leaf nitrogen reutilisation and RuBisCO activation under short-term nitrogen-deficient conditions promotes photosynthesis in winter wheat (Triticum aestivum L.) at the seedling stage;J Gao;Funct. Plant Biol,2018

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