Xu Xinxiang, Zhang Xu, Ni Wei, Liu Chunling, Qin Hanhan, Guan Yafei, Liu Jingquan, Feng Ziquan, Xing Yue, Tian Ge, Zhu Zhanling, Ge Shunfeng, Jiang Yuanmao
College of Horticulture Science and Engineering, Shandong Agricultural University, Tai'an 271018, Shandong, China.
Apple Technology Innovation Center of Shandong Province, Tai'an 271018, Shandong, China.
Hortic Res. 2023 Nov 27;11(1):uhad253. doi: 10.1093/hr/uhad253. eCollection 2024 Jan.
Nitrogen (N) and potassium (K) are two important mineral nutrients in regulating leaf photosynthesis. However, the influence of N and K interaction on photosynthesis is still not fully understood. Using a hydroponics approach, we studied the effects of different N and K conditions on the physiological characteristics, N allocation and photosynthetic capacity of apple rootstock M9T337. The results showed that high N and low K conditions significantly reduced K content in roots and leaves, resulting in N/K imbalance, and allocated more N in leaves to non-photosynthetic N. Low K conditions increased biochemical limitation (), mesophyll limitation (), and stomatal limitation (). By setting different N supplies, lowering N levels under low K conditions increased the proportion of water-soluble protein N () and sodium dodecyl sulfate-soluble proteins () by balancing N/K and increased the proportion of carboxylation N and electron transfer N. This increased the maximum carboxylation rate and mesophyll conductance, which reduced and and alleviated the low K limitation of photosynthesis in apple rootstocks. In general, our results provide new insights into the regulation of photosynthetic capacity by N/K balance, which is conducive to the coordinated supply of N and K nutrients.
氮(N)和钾(K)是调节叶片光合作用的两种重要矿质营养元素。然而,氮钾交互作用对光合作用的影响仍未完全明确。采用水培法,我们研究了不同氮钾条件对苹果砧木M9T337生理特性、氮分配及光合能力的影响。结果表明,高氮低钾条件显著降低了根和叶中的钾含量,导致氮钾失衡,并使叶片中更多的氮分配到非光合氮中。低钾条件增加了生化限制()、叶肉限制()和气孔限制()。通过设置不同的氮供应水平,在低钾条件下降低氮水平可通过平衡氮钾增加水溶性蛋白氮()和十二烷基硫酸钠可溶性蛋白()的比例,并增加羧化氮和电子传递氮的比例。这提高了最大羧化速率和叶肉导度,降低了()和(),缓解了苹果砧木光合作用的低钾限制。总体而言,我们的研究结果为氮钾平衡对光合能力的调控提供了新的见解,有利于氮钾养分的协同供应。