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生态学杂志 ›› 2024, Vol. 43 ›› Issue (10): 3023-3030.doi: 10.13292/j.1000-4890.202410.015

• 研究论文 • 上一篇    下一篇

不同改良物料及其配施组合对河套平原盐碱土壤玉米光合与根系形态特征的影响

白小龙1,武晋民1,张家豪1,王腾1,杨正虎1,田丰2,赵卉2,王彬1*   

  1. 1宁夏大学农学院, 银川 750021; 2内蒙古包头市土默特右旗农技推广中心, 内蒙古包头 014100)

  • 出版日期:2024-10-10 发布日期:2024-10-11

Effects of different modified materials and their combinations on photosynthesis and root morphological characteristics of maize in saline-alkali soil of Hetao Plain.

BAI Xiaolong1, WU Jinmin1, ZHANG Jiahao1, WANG Teng1, YANG Zhenghu1, TIAN Feng2, ZHAO Hui2, WANG Bin1*   

  1. (1College of Agriculture, Ningxia University, Yinchuan 750021, China; 2Tumote Right Banner Agricultural Technology Extension Center, Baotou 014100, Inner Mongolia, China).

  • Online:2024-10-10 Published:2024-10-11

摘要: 为探究不同改良物料及其配施组合对玉米苗期光合性能和根系形态特征的影响,在内蒙河套平原盐碱地上进行试验。以玉米为研究对象,设置对照(CK)、脱硫石膏(T1)、土壤改良剂(T2)、有机肥(T3)、脱硫石膏配施土壤改良剂(T4)、脱硫石膏配施有机肥(T5)、土壤改良剂配施有机肥(T6)、脱硫石膏配施土壤改良剂和有机肥(T7)8个处理,对玉米苗期株高、光合性能及根系形态特征进行分析。结果表明:(1)配施T7处理对株高、茎粗和SPAD值促进效果最佳,相较CK处理分别增加30.0%、24.2%和27.8%。(2)与CK处理相比,配施处理均显著提高了苗期玉米净光合速率、气孔导度、胞间CO2浓度和叶片水分利用效率,但蒸腾速率在所有处理中均显著降低;配施处理对根系形态特征(根总长、表面积、数量、体积)的促进效果优于单施处理,根系分支数显著增加,直径<1 mm的侧根和根毛数量显著增多。(3)主成分分析表明,不同处理玉米光合性能、根系形态特征表现得分为T7>T4>T6>T5>T2>T3>T1>CK。综上,对比单施和配施2种改良物料,配施3种改良物料对玉米苗期叶片光合能力和根系形态特征的促进效果更好。


关键词: 土壤改良, 光合, 盐碱地, 玉米, 根系

Abstract: To explore the effects of different modified materials and their combined applications on the morphological characteristics of maize at seedling stage, an experiment was conducted on the saline-alkali land in Hetao Plain of Inner Mongolia. There were eight treatments, including control (CK), desulfurized gypsum (T1), soil ameliorant (T2), organic fertilizer (T3), desulfurized gypsum combined with soil ameliorant (T4), desulfurized gypsum combined with organic fertilizer (T5), soil ameliorant combined with organic fertilizer (T6), and desulfurized gypsum combined with soil ameliorant and organic fertilizer (T7). We measured plant height, photosynthetic rate and root morphological characteristics of maize seedlings. The results showed that: (1) the T7 treatment had the strongest promoting effect on plant height, stem diameter and SPAD value, with an increase of 30.0%, 24.2% and 27.8%, respectively. (2) The combined treatments significantly increased net photosynthetic rate, stomatal conductance, intercellular CO2 concentration, and leaf water use efficiency, but significantly decreased transpiration rate. The combined treatments had a better promoting effect on root morphological characteristics (total root length, surface area, number, volume) than the single treatments, with a significant increase in root branching and a significant increase in the number of lateral roots and root hairs with a diameter less than 1 mm. (3) Principal component analysis showed that the scores of maize photosynthetic performance and root morphological characteristics for different treatments were T7>T4>T6>T5>T2>T3>T1>CK. In conclusion, compared with single application and combined applications of two modified materials, the combined application of three modified materials had a stronger promoting effect on leaf photosynthetic capacity and root morphological characteristics of maize seedlings.


Key words: soil amelioration, photosynthesis, saline-alkali land, maize, root system