欢迎访问《生态学杂志》官方网站,今天是

生态学杂志 ›› 2026, Vol. 45 ›› Issue (8): 2665-2671.doi: 10.13292/j.1000-4890.202607.018

• 研究论文 • 上一篇    下一篇

紫花苜蓿幼苗对多因子胁迫的形态和生理响应

李萌,胡明欣,陈佳慧,张宇,陆晟源,田雨*   

  1. (吉林农业大学林学与草学学院, 吉林省林草遗传育种重点实验室, 长春 130118)
  • 出版日期:2026-08-10 发布日期:2026-08-17

Morphological and physiological responses of Medicago sativa seedlings to multiple stresses.

LI Meng, HU Mingxin, CHEN Jiahui, ZHANG Yu, LU Shengyuan, TIAN Yu*   


  1. (College of Forestry and Grassland, Key Laboratory of Tree and Grass Genetics and Breeding, Jilin Agricultural University, Changchun 130118, China).


  • Online:2026-08-10 Published:2026-08-17

摘要: 随着全球气候变化和土地资源限制,紫花苜蓿的栽培与生长普遍面临多因素复合胁迫的挑战。本研究选择敖汉苜蓿为试验材料,以碱性盐(A,100 mmol·L-1 NaHCO3)、中性盐(S,100 mmol·L-1 NaCl)、缺磷(P, KH2PO4含量为10%的HoagLand营养液)、重金属(Cd,5 μmol·L-1 CdCl2)、干旱(D,30%浇水量)为胁迫因子,进行单因子及多因子胁迫,以无添加为对照组(CK,Hoagland营养液),探讨了紫花苜蓿幼苗在单一或复合胁迫下的生理生态响应。结果表明,多因子复合胁迫对植物的抑制效应显著高于单一胁迫,且碱性盐胁迫在各组合中起主导作用。以A+D+P胁迫为例,植株地上生长与光合能力严重受损,株高较对照降低43.05%,叶绿素相对含量显著衰减;地下部根系形态发生适应性重塑,根总长、表面积和体积分别下降83.74%、81.44%和78.92%,而根平均直径增粗16.22%。此外,为抵御氧化损伤,叶片超氧化物歧化酶活性比对照增加136.36%。这些响应表明,紫花苜蓿幼苗可以通过根系形态重塑和抗氧化调控的协同应对多重胁迫的不利影响。


关键词: 复合因子胁迫, 根系结构,  , 抗氧化酶活性

Abstract: Due to global climate change and the limitations of land resources, the cultivation and growth of Medicago sativa are influenced by multiple stresses. In this study, M. sativa cv. Aohan was subjected to various single and multifactorial stressors. The treatments included stressors of alkaline salt (A, 100 mmol·L-1 NaHCO3), neutral salt (S, 100 mmol·L-1 NaCl), phosphorus deficiency (P, 10% KH2PO4 in HoagLand nutrient solution), heavy metal (Cd, 5 μmol·L-1 CdCl2), and drought (D, 30% water supply), along with unstressed control (CK, Hoagland nutrient solution). This setup allowed for a comprehensive evaluation of the eco-physiological responses of M. sativa cv. Aohan seedlings to diverse abiotic stressors. The results showed that the inhibitory effects of multifactorial stresses on plants were significantly higher than those of single stress, with the alkaline salt stress playing a dominant role in all combinations. Taking A+D+P stress as an example, aboveground growth and photosynthetic capacity were severely impaired, with plant height reduced by 43.05% and significant decline in relative chlorophyll content. The morphogenesis of root system underwent adaptive reshaping, showing reductions in total root length, surface area, and volume by 83.74%, 81.44%, and 78.92%, respectively, while the average root diameter increased by 16.22%. In addition, to counteract oxidative damage, the superoxide dismutase activity in leaves increased by 136.36%. Our results indicate that M. sativa cv. Aohan seedlings can mitigate adverse effects of multiple stresses through synergistic responses involving root morphological reshaping and antioxidant regulation.


Key words: multifactorial stress combination, root system architecture, antioxidase enzyme activity