Interactive Effects of Calcium-Nitrogen Combined Stress and Nitrogen Forms on Nitrogen Metabolism and Physiological Ecological Response Mechanisms of Toona sinensis Seedlings
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Toona sinensis can achieve adaptive growth by adjusting its nitrogen utilization strategy under a normal calcium environment, while irreversible physiological collapse occurs under high-calcium stress. High calcium, by disrupting redox balance, interfering with nitrogen metabolism and ion homeostasis, becomes a key factor limiting the early establishment of seedlings. This study concludes that in normal-calcium soils in karst areas, a mixed fertilization with a nitrate-ammonium ratio of 1:1 can be adopted to optimize nitrogen efficiency and enhance stress resistance; whereas in habitats under high-calcium stress, priority should be given to alleviation measures such as calcium reduction or passivation to restore the basic metabolic functions of plants.



