期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Physiological responses of artificial moss biocrusts to dehydration-rehydration process and heat stress on the Loess Plateau, China 被引量:8
1
作者 BU Chongfeng WANG Chun +2 位作者 YANG Yongsheng ZHANG Li Matthew A BOWKER 《Journal of Arid Land》 SCIE CSCD 2017年第3期419-431,共13页
Ex-situ cultivation of biological soil crusts (biocrusts) is a promising technology to produce materials that can induce the recovery of biocrusts in the field for the purposes of preventing soil erosion and improvi... Ex-situ cultivation of biological soil crusts (biocrusts) is a promising technology to produce materials that can induce the recovery of biocrusts in the field for the purposes of preventing soil erosion and improving hydrological function in degraded ecosystems. However, the ability of artificially cultivated biocrusts to survive under adverse field conditions, including drought and heat stresses, is still relatively unknown. Mosses can bolster biocrust resistance to the stresses (e.g., drought and heat) and the resistance may be introduced prior to field cultivation. In this study, we subjected the well-developed artificial moss biocrusts (dominant species of Didjmodon vinealis (Brid.) Zand.) that we cultivated in the phytotron to a dehydration-rehydration experiment and also a heat stress experiment and measured the activities of protective enzymes (including peroxidase (POD), superoxide dismutase (SOD), and catalase (CAT)) and the contents of osmoregulatory substances (including soluble proteins and soluble sugars) and malondialdehyde (MDA, an indicator of oxidative stress) in the stem and leaf fragments of mosses. The results showed that, during the dehydration process, the activities of protective enzymes and the contents of osmoregulatory substances and MDA gradually increased with increasing duration of drought stress (over 13 days). During the rehydration process, values of these parameters decreased rapidly after 1 d of rehydration. The values then showed a gradual decrease for 5 days, approaching to the control levels. Under heat stress (45℃), the activities of protective enzymes and the content of soluble proteins increased rapidly within 2 h of heat exposure and then decreased gradually with increasing duration of heat exposure. In contrast, the contents of soluble sugars and MDA always increased gradually with increasing duration of heat exposure. This study indicates that artificial moss biocrusts possess a strong drought resistance and this resistance can be enhanced after a gradual dehydration treatment. This study also indicates that artificial moss biocrusts can only resist short-term heat stress (not long-term heat stress). These findings suggest that short-term heat stress or prolonged drought stress could be used to elevate the resistance of artificial moss biocrusts to adverse conditions prior to field reintroduction. 展开更多
关键词 dehydration-rehydration heat stress didymodon vinealis brid.) zand. RESISTANCE Loess Plateau
下载PDF
UV-B辐射增强对土生对齿藓(Didymodon vinealis)结皮生理代谢及光系统相关蛋白表达的影响 被引量:1
2
作者 回嵘 李新荣 +3 位作者 陈翠云 赵锐明 赵昕 李培广 《生态学杂志》 CAS CSCD 北大核心 2013年第3期583-590,共8页
以中国科学院沙坡头沙漠试验研究站人工固沙植被区的土生对齿藓(Didymodon vinealis(Brid.)Zand.)结皮为试验材料,通过室内模拟UV-B4个辐射强度[2.75(对照)、3.08、3.25和3.41W·m-2]的处理,研究了UV-B辐射增强对土生对齿藓结皮生... 以中国科学院沙坡头沙漠试验研究站人工固沙植被区的土生对齿藓(Didymodon vinealis(Brid.)Zand.)结皮为试验材料,通过室内模拟UV-B4个辐射强度[2.75(对照)、3.08、3.25和3.41W·m-2]的处理,研究了UV-B辐射增强对土生对齿藓结皮生理代谢及光系统相关蛋白表达的影响。结果表明:随着UV-B辐射强度增加,丙二醛(MDA)含量呈增加趋势;叶绿素a荧光诱导动力学参数、可溶性蛋白质及类囊体膜蛋白表达量随着辐射强度的增加而降低,且与辐射强度呈反比。模拟UV-B辐射增强促进了土生对齿藓结皮活性氧的代谢速率,导致了膜脂过氧化,可溶性蛋白质含量减少,进而降低PSII反应中心活性,最终导致光合作用能力下降,这一结果对于进一步理解生物土壤结皮对UV-B辐射的响应机制,探索应用生物土壤结皮进行荒漠化治理具有重要的理论与实践意义。 展开更多
关键词 土生对齿藓结皮 UV-B辐射 叶绿素a荧光诱导动力学参数 类囊体膜 蓝绿温和聚丙烯酰胺凝胶电泳(BN-PAGE)
原文传递
黄土丘陵区藓结皮优势种形态结构差异 被引量:12
3
作者 杨雪伟 赵允格 许明祥 《生态学杂志》 CAS CSCD 北大核心 2016年第2期370-377,共8页
藓结皮对黄土丘陵区生态修复与重建有重要意义。以黄土丘陵区藓结皮优势种土生对齿藓(Didymodon vinealis(Brid.)Zand.)、短叶对齿藓(Didymodon tectorum(C.Mull.)Saito)、扭口藓(Barbula unguiculata Hedw.)和银叶真藓(Bryum argenteum... 藓结皮对黄土丘陵区生态修复与重建有重要意义。以黄土丘陵区藓结皮优势种土生对齿藓(Didymodon vinealis(Brid.)Zand.)、短叶对齿藓(Didymodon tectorum(C.Mull.)Saito)、扭口藓(Barbula unguiculata Hedw.)和银叶真藓(Bryum argenteum Hedw.)为研究对象,通过形态解剖结构观察分析,研究了4个藓种形态结构差异。结果表明:土生对齿藓株高(6.1 mm)、茎直径(298.6μm)、中肋宽(65.5μm)以及叶宽(590.9μm)、叶片厚度(14.8μm)显著高于其他3个藓种,茎表皮细胞壁增厚且皮部细胞镶嵌排列;短叶对齿藓株高、茎、叶片及毛尖结构无显著优势;土生对齿藓茎和叶片结构粗壮,适应水分变异性大的环境,耐旱能力强;扭口藓叶片长度(3.2 mm)和叶片下部细胞面积(191.2μm2)显著大于其他3种藓类并含有大量叶绿体,中肋深陷呈"v"型,适宜水分充足环境,集水能力强但耐干性弱;银叶真藓茎皮部细胞面积987.8μm2,单个皮部细胞面积占茎横切面积的3.1%,毛尖长度(274μm)显著大于其他3个藓种且叶片上部细胞与毛尖呈透明状,耐旱并抵御强光辐射。以上结果表明,黄土丘陵区4个藓种的茎叶形态结构存在差异,适应水分、光照条件不同,体现了藓种的生态适应性差异,可为藓结皮耐旱藓种和人工培养藓种选择提供参考。 展开更多
关键词 黄土丘陵区 土生对齿藓 短叶对齿藓 扭口藓 银叶真藓
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部