欢迎访问《生态学杂志》官方网站,今天是 分享到:

生态学杂志

• 研究报告 • 上一篇    下一篇

干旱荒漠区不同生活型植物生长对降雨量变化的响应

张浩1,2,王新平1**,张亚峰1,虎瑞1,潘颜霞1,陈宁1,2   

  1. 1中国科学院寒区旱区环境与工程研究所沙坡头沙漠研究试验站, 兰州 730000; 2中国科学院大学, 北京 100049)
  • 出版日期:2015-07-10 发布日期:2015-07-10

Responses of plant growth of different life forms to rainfall amount changes in an arid desert area.

ZHANG Hao1,2, WANG Xin-ping1**, ZHANG Ya-feng1, HU Rui1, PAN Yan-xia1, CHEN Ning1,2   

  1. (1Shapotou Desert Research and Experimental Station, Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou 730000, China; 2University of Chinese Academy of Sciences, Beijing 100049, China)
  • Online:2015-07-10 Published:2015-07-10

摘要:

降水是荒漠生态系统过程和功能的最重要限制因子,荒漠生态系统中的植物物种对生长季降雨的变化极端敏感。根据生长季内每次降雨量,进行不同梯度的人工模拟降雨试验(减雨50%、减雨25%、增雨25%、增雨50%、增雨100%),以自然降雨为对照,研究植物生长对降雨量变化的响应。结果表明:生长季降雨量影响植物的生长和初级生产力,不同生活型植物对降雨量变化的响应显著不同;减雨处理减缓了柠条、油蒿新枝生长,但影响不显著;增雨25%未能显著促进柠条、油蒿新枝生长;50%增雨未能促进柠条新枝生长而能促进油蒿的新枝生长;5—7月,增雨100%能显著增加油蒿新枝生长量,仅能增加柠条6—7月生长量;1年生草本植物地上部分生物量随降雨量增加呈线性增加趋势,减雨50%显著降低了草本植物株高,而其他降雨处理对株高影响不显著。
 

关键词: 保护酶, 品质, 化控时期, 花生, 产量, 代谢酶

Abstract: Precipitation is the chief limiting factor for the processes and functions of desert ecosystems, and the plant species are extremely sensitive to precipitation variations during growing seasons. Artificial rainfall simulation experiments were conducted upon desert plants of different life forms to assess the responses of plant growth to rainfall changes. According to the rainfall amount in the growing season of 2013, rainfall amount was reduced by 25% or 50%, or increased by 25%, 50% or 100%, with natural rainfall as the control. The results showed that precipitation changes in growing season affected the growth of plants and the primary productivity, and significant differences were found in the response to rainfall amount between plants of varying life forms. Reduced precipitation slowed down the new branch growth of Caragana korshinskii and Artemisia ordosica, though the change was not significant. Rainfall increase by 25% did not significantly promote the growth of C. korshinskii and A. ordosica. Rainfall increase by 50% significantly promoted the new branch growth of A. ordosica, but not C. korshinskii. Between May and July, rainfall increase by 100% significantly promoted the new branch growth of A. ordosica, and so was it for C. korshinskii between June and July. The aboveground biomass of annual herbaceous plants significantly linearly increased with rainfall amount in the growing season and plant height significantly decreased only in plots with rainfall reduction by 50%.

Key words: metabolic enzymes, protective enzymes, chemical control period, quality., peanut, yield