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人工模拟降水格局变化对醉马草种子萌发和幼苗生长的影响

岳永寰,靳瑰丽*,宫珂,董乙强,韩万强,刘文昊,吴雪儿   

  1. (新疆农业大学草业与环境科学学院/新疆草地资源与生态重点实验室, 乌鲁木齐 830052)
  • 出版日期:2020-03-10 发布日期:2020-03-10

Effects of simulated precipitation pattern changes on seed germination and seedling growth of Achnatherum inebrians.

YUE Yong-huan, JIN Gui-li*, GONG Ke, DONG Yi-qiang, HAN Wan-qiang, LIU Wen-hao, WU Xue-er   

  1. (College of Grassland and Environmental Science, Xinjiang Agricultural University/Key Laboratory of Grassland Resources and Ecology of Xinjiang, Urumqi 830052, China).
  • Online:2020-03-10 Published:2020-03-10

摘要: 降水格局的变化会影响到植物种子萌发出苗过程及幼苗的更新。本研究以呈扩张趋势的草原毒害草醉马草(Achnatherum inebrians)种子为材料,利用环境控制培养箱进行降水量(W60%,W30%,W,W+30%,W+60%)和降水间隔(T5,T10)的双因素控制实验,探讨醉马草种子萌发和幼苗生长对降水格局变化的响应规律,以期为探索醉马草的发生规律及预测其潜在分布范围提供科学依据。结果表明:(1)在相同降水间隔条件下,醉马草的出苗速度和出苗率随着总降水量的增加而提高;延长降水间隔促进W和W+30%条件下醉马草出苗,加快出苗进程。(2)无论降水间隔是否变化,总降水量增加60%(W+60%)使出苗势和出苗指数显著提高(P<0.05);在W和W+30%条件下,延长降水间隔使出苗率、出苗势和出苗指数显著提高(P<0.05)。(3)无论降水间隔是否变化,总降水量减少30%(W30%)显著抑制幼根和幼苗的生长,总降水量增加60%(W+60%)显著促进幼苗的生长(P<0.05);但总降水量增加30%(W+30%)和60%(W+60%)均显著降低根苗比(P<0.05)。降水量增加或减少不同程度地影响醉马草的出苗和生长,但在一定降水范围内,延长降水间隔则促进醉马草的出苗和幼苗生长。

关键词: 固碳, 土壤有机碳,  , 土壤颗粒, 沙漠化逆转

Abstract: Changes in precipitation patterns affect seed germination and seedling renewal. In this study, we examined the responses of seed germination and seedling growth of Achnatherum inebrians, an expanding grassland poisonous weed, to simulated precipitation pattern changes, with the aim to provide scientific basis for exploring the occurrence of A. inebrians and predicting its potential distribution range. Twofactor control experiments of precipitation (W60%, W30%, W, W+30%, W+60%) and precipitation interval (T5, T10) were carried out using an environmentally controlled incubator. The results showed that: (1) Under the same precipitation interval, the emergence speed and emergence rate of A. inebrians seeds were enhanced by increasing total precipitation. Wider precipitation interval promoted the emergence of A. inebriansand acce lerated emergence process under W and W+30% conditions. (2) Irrespective of the precipitation interval changes, increasing total precipitation by 60% (W+60%) significantly enhanced emergence energy and emergence index (P<0.05), while prolonging precipitation interval significantly enhanced emergence rate, emergence energy and emergence index under the conditions of W and W+30% (P<0.05). (3) Whether the precipitation interval changes or not, 30% reduction of total precipitation (W30%) significantly restrained the growth of radicle and seedlings. The growth of seedlings was significantly promoted by 60% increases of total precipitation (P<0.05), but the root seedling ratios were significantly reduced by increasing the total precipitation by 30% (W+30%) and 60% (W+60%) (P<0.05). Therefore, increasing or decreasing precipitation will affect the emergence and growth of A. inebrians. However, in a certain range of precipitation, prolonging precipitation interval will promote the emergence and seedling growth of A. inebrians.

Key words: soil organic carbon, carbon sequestration., reversion of desertification, soil particle