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不同生境下细叶鸢尾表型可塑性及生物量分配差异性

卓露1,2,管开云1**,李文军1,2,段士民1   

  1. (1中国科学院干旱区生物地理与生物资源重点实验室, 中国科学院新疆生态与地理研究所, 乌鲁木齐 830011; 2中国科学院大学, 北京 100049)
  • 出版日期:2014-03-10 发布日期:2014-03-10

Phenotypic plasticity and biomass allocation of Iris tenuifolia Pall. in different habitats.

ZHUO Lu1,2, GUAN Kai-yun1**, LI Wen-jun1,2, DUAN Shi-min1   

  1. (1 Key Laboratory of Biogeography and Bioresource in Arid Land, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumchi 830011, China; 2University of Chinese Academy of Sciences, Beijing 100049, China)
  • Online:2014-03-10 Published:2014-03-10

摘要: 细叶鸢尾(Iris tenuifolia Pall.)为鸢尾科鸢尾属多年生草本,是干旱半干旱地区的野生观赏花卉之一。该植物在自然条件下萌发率极低,主要靠多年生根系进行繁殖。为了研究细叶鸢尾在异质性生境中的可塑性及其生态适应性,对3种不同生境(种群1:干旱严重;种群2:较干旱;种群3:相对湿润)中的细叶鸢尾自然分布种群的生物学特性,地上、地下生物量分配等进行比较。研究发现:3个不同生境的种群植株在外部形态上差异明显。种群1的根长与根冠比显著大于种群2和种群3,种群3的株高值较大;种群3地上生物量的比重显著大于种群1和种群2,但地下生物量与地上生物量分配呈反比。结果表明:细叶鸢尾植株具有较强的可塑性,在不同的环境条件下,通过外部形态结构和生物量的配比关系,能够形成有利于自身生长发育的适应对策。

关键词: 凋落叶分解, 凋落叶混合效应, 长白山, 冻结初期, 底栖动物

Abstract: Iris tenuifolia Pall. is distributed in arid regions as an ornamental flower species. The germination rate of I. tenuifolia seeds in nature is extremely low and the perennating rhizomes play an important role in its propagation. The purpose of this study was to understand the characteristics of phenotypic plasticity and ecological adaptation of I. tenuifolia. Three populations (populations 1, 2 and 3 represented severely dry, dry, and relatively humid habitats, respectively) in Xinjiang, China were chose to investigate the biological characteristics, above and underground biomass of I. tenuifolia. The results showed that the plant’s external morphology was significantly different among the three populations. The total root length and root/shoot ratio were significantly higher in population 1 than in the other two populations, but plant height was higher in population 3. Aboveground biomass of population 3 was significantly higher, but the underground biomass was lower. These findings indicated that, through adjusting the morphology and the allocation ratio of biomass, I. tenuifolia has better phenotypic plasticity to form adaptation strategies in favor of their growth and development at different soil moistures.

Key words: Changbai Mountains, litter decomposition, litter mixing effect, benthic macroinvertebrate., early frost period