Guo C Y, Meng C J, Yue M
Key Laboratory of Resource Biology and Biotechnology in Western China, Northwest University, 710069 Xi'an City, Shaanxi Province, China.
School of Biological and Environmental Engineering, Xi'an University, 710065 Xi'an City, Shaanxi Province, China.
Photosynthetica. 2023 Apr 11;61(1):124-134. doi: 10.32615/ps.2023.012. eCollection 2023.
We examined the morphological and physiological responses of 'Yingui' (Yin) and 'Jingui' (Jin) to different NaCl concentrations. NaCl concentrations significantly affected plant height and leaf mass per area. Total biomass decreased by 22.8-41.8% under moderate and high NaCl which inhibited growth. The ratio of root to shoot biomass in Yin was 44.3% higher than that in Jin at high NaCl concentrations which suggested that Yin possesses conservative resource acquisition strategies to resist salt stress. Compared to Yin, Jin showed higher net photosynthesis, stomatal conductance, and intercellular CO concentration under high NaCl treatment. Jin exhibited also relatively higher proline, soluble sugar, K content, and K/Na under the treatments implying that acquisitive resource acquisition may be the main strategy for salt resistance in Jin. Our results demonstrated that Yin and Jin could be cultivated in saline land in a short time and the two cultivars respond to salinity by different morphological and physiological mechanisms.
我们研究了‘银桂’(Yin)和‘金桂’(Jin)对不同NaCl浓度的形态和生理响应。NaCl浓度显著影响株高和单位面积叶质量。在中度和高度NaCl胁迫下,总生物量下降了22.8 - 41.8%,抑制了生长。在高NaCl浓度下,Yin的根与地上部生物量比高于Jin 44.3%,这表明Yin拥有保守的资源获取策略来抵抗盐胁迫。与Yin相比,Jin在高NaCl处理下表现出更高的净光合速率、气孔导度和胞间CO₂浓度。在处理下,Jin还表现出相对较高的脯氨酸、可溶性糖、K含量和K/Na比,这意味着获取性资源获取可能是Jin耐盐的主要策略。我们的结果表明,Yin和Jin可以在短时间内在盐碱地种植,并且这两个品种通过不同的形态和生理机制对盐分作出响应。