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中国农学通报 ›› 2017, Vol. 33 ›› Issue (24): 68-73.doi: 10.11924/j.issn.1000-6850.casb16070109

所属专题: 农业气象

• 资源 环境 生态 土壤 气象 • 上一篇    下一篇

荒漠草本植物生长对干旱胁迫的反应

蒋菊芳,陈雷,丁文魁,张宇林,,魏育国   

  1. 甘肃省武威市气象局,甘肃省武威市气象局,甘肃省武威市气象局,甘肃省武威市气象局,武威市气象局,甘肃省武威市气象局
  • 收稿日期:2016-07-21 修回日期:2017-08-15 接受日期:2016-11-21 出版日期:2017-09-05 发布日期:2017-09-05
  • 通讯作者: 蒋菊芳
  • 基金资助:
    公益性行业(气象)科研专项(重大专项)GYHY201506001-2;国家自然科学41275118;干旱基金 IAM201507;甘肃省气象局科研面上项目GSMAMs2016-13。

Response of Desert Herbaceous Plants to Drought Stress

陈雷,丁文魁,张宇林, and 魏育国   

  • Received:2016-07-21 Revised:2017-08-15 Accepted:2016-11-21 Online:2017-09-05 Published:2017-09-05

摘要: 为认识区域荒漠生态系统干旱致灾过程和干旱对冰草、刺蓬生长的影响及解除机制,笔者设计干旱胁迫、补充灌水和自然生长3种处理,比较了2种荒漠草本植物的外部形态、产量和土壤水分指标的变化。结果表明:干旱胁迫使黄枯期提前,补水推迟黄枯期,并且干旱胁迫推迟刺蓬进入开花期,缩短生殖生长期。受干旱胁迫影响,荒漠刺蓬和冰草的生长高度、干物质、覆盖度和土壤水分贮存量均减小,且随生育进程影响逐渐增大。受干旱胁迫影响,返青73天是刺蓬生长高度的起始拐点,返青88天是冰草生长高度的起始拐点。返青106~121天是干旱胁迫对刺蓬干物质积累影响关键期,对冰草干物质积累影响关键期在返青181~197天。干旱胁迫对土壤水分贮存量的影响,刺蓬开花期开始显著,冰草展叶盛期后差异明显,且随深度增加,土壤水分贮存量减小幅度增大。

关键词: 丛生竹, 丛生竹, 纤维素酶水解, 燃料乙醇, 工艺参数

Abstract: The paper aims to know the process of drought disaster in desert ecosystem and the effect of drought on the growth of Agropyron cristatum and Cornulaca alaschanica and the release mechanism. The authors designed 3 kinds of treatments, which were drought stress, supplement irrigation and natural growth, and compared the changes of external morphology, yield and soil moisture index of the 2 herbaceous plants. Theresults showed that: the drought stress led to yellow withered stage in advance and the supplement irrigation made yellow withered stage delay; the drought stress delayed the flowering stage and shortened the reproductive period of Cornulaca alaschanica. Affected by drought stress, the growth height, dry matter, cover and soil water storage capacity of Agropyron cristatum and Cornulaca alaschanica decreased, and the effects of drought stress on the growth process gradually increased; 73 days and 88 days of turning green were start turning point of height growth of Cornulaca alaschanica and Agropyron cristatum, respectively. Affected by drought stress, 106- 121 days and 181- 197 days of turning green were the critical period of dry matter accumulation of Cornulaca alaschanica and Agropyron cristatum, respectively. Drought stress effect on soil water storage capacity was showed significantly from the flowering period of Cornulaca alaschanica, and had significant differences from the end of leaf expansion period of Agropyron cristatum, and with depth increasing, the decrease range of soil moisture storage capacity increased.