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生态学杂志 ›› 2025, Vol. 44 ›› Issue (5): 1448-1455.doi: 10.13292/j.1000-4890.202505.023

• 研究报告 • 上一篇    下一篇

不同龄级胡杨叶片解剖结构及与耐盐性的关联分析

宋双飞,王杰,黄文娟*,焦培培,姚诗雨,彭承志,张海龙   

  1. (塔里木大学生命科学与技术学院/塔里木盆地生物资源保护利用省部共建国家重点实验室, 新疆 阿拉尔 843300)
  • 出版日期:2025-06-10 发布日期:2025-05-08

Leaf anatomical structure of Populus euphratica at different age classes and its correlation with salt resistance.

SONG Shuangfei, WANG Jie, HUANG Wenjuan*, JIAO Peipei, YAO Shiyu, PENG Chengzhi, ZHANG Hailong   

  1. (College of Life Science and Technology, Tarim University/National Key Laboratory for Conservation and Utilization of Biological Resources in Tarim Basin, Alar 843300, Xinjiang, China).

  • Online:2025-06-10 Published:2025-05-08

摘要: 以新疆沙雅县分布的天然胡杨为研究对象,采用常规石蜡切片法对胡杨5个不同生长发育阶段的叶片解剖结构进行研究,选择叶片厚度,上、下角质层厚度,上、下表皮厚度,海绵组织厚度,栅栏组织厚度,栅栏组织与海绵组织之比等10个指标进行测量;结合变异系数和主成分分析的方法,筛选出叶片厚度、海绵组织、栅栏组织、中脉维管束面积4项与耐盐性相关的重要指标,并结合模糊数学的隶属函数法对胡杨不同发育阶段的耐盐性能评分排序。结果表明:(1)胡杨叶片表皮组织随发育阶段的变化而越来越发达,而叶片厚度、栅栏组织、海绵组织呈先降低后上升趋势,分别在成熟木、近熟木阶段最低,均在过熟木阶段最高,且各阶段其栅/海比均大于2.58,表明胡杨在各发育阶段面临盐胁迫环境下都有较好的适应性。(2)胡杨5个不同发育阶段的耐盐性由强到弱排序依次为:过熟木>成熟木>幼苗>近熟木>幼木。叶片解剖结构指标能够有效反映胡杨的耐盐特性,可作为评价其耐盐能力的指标,在不同发育阶段中过熟木和成熟木阶段的耐盐能力较强。


关键词: 胡杨, 发育阶段, 叶片, 解剖结构, 耐盐性

Abstract: Leaf anatomical structure of Populus euphratica naturally distributed in Shaya County, Xinjiang at five different developmental stages was examined using conventional paraffin section method. We measured leaf thickness, upper and lower cuticle thickness, upper and lower epidermis thickness, spongy tissue thickness, palisade tissue thickness, and the ratio of palisade tissue to spongy tissue. Combining the methods of coefficient of variation and principal component analysis, four important indicators related to salt tolerance, namely leaf thickness, spongy tissue, palisade tissue, and midvein vascular bundle area, were identified. The salt tolerance of Populus euphratica at different developmental stages was evaluated and ranked using the fuzzy mathematical membership function. The results showed that: (1) The epidermal tissue of leaves became more developed with the developmental stages, while leaf thickness, palisade tissue, and spongy tissue showed a decreasing and then increasing trend. They were lowest at the mature stage, near-mature stage, respectively, and highest in the over-mature stage. The ratio of palisade to spongy was greater than 2.58 in each developmental stage, indicating good adaptability of Populus euphratica to saline stress across various developmental stages. (2) The salt tolerance of Populus euphratica at five different developmental stages was ranked from strong to weak as follows: over-mature > mature > seedling > near-mature > young. Leaf anatomical structure indicators can effectively reflect the salt tolerance characteristics of Populus euphratica and serve as an evaluation index for salt tolerance. Over-mature and mature stages exhibited stronger salt tolerance.


Key words: Populus euphratica, developmental stage, leaf blade, anatomical structure, salt tolerance