植物生态学报 ›› 2005, Vol. 29 ›› Issue (2): 331-337.DOI: 10.17521/cjpe.2005.0043 cstr: 32100.14.cjpe.2005.0043
收稿日期:2004-05-08
接受日期:2004-09-28
出版日期:2005-05-08
发布日期:2005-03-10
作者简介:*E-mail:hxren@ibcas.ac.cn基金资助:
WANG Xiao-Feng1, REN Hong-Xu2,*(
), SUN Guo-Jun3
Received:2004-05-08
Accepted:2004-09-28
Online:2005-05-08
Published:2005-03-10
摘要:
以分布于乌鲁木齐河源区天山中段不同海拔高度的四裂红景天 (Rhodiolaquadrifida) (35 0 0~ 380 5m) 及长鳞红景天 (R.gelida) (380 5~ 4 0 10m) 为试材, 通过对比分析两种红景天在一连续的海拔梯度上种内及种间叶片膜脂过氧化及抗氧化保护系统的变化, 初步探讨植物对于高山极端环境的适应机制。结果显示, 分布于海拔较高的长鳞红景天其叶片中膜脂过氧化产物丙二醛 (MDA) 的含量明显高于分布海拔较低的四裂红景天, 而两种红景天种内膜脂过氧化水平则没有随海拔升高呈现出明显差异。此外, 抗氧化保护酶CAT, POD, SOD, GR和ASAPOD 的活性与非酶促抗氧化剂ASA、GSH的含量不仅在种间存在有明显差异, 长鳞红景天中明显高于四裂红景天, 而且在两种红景天种内亦随海拔升高有不同程度地提高。表明当海拔升高时, 虽然环境条件渐趋恶劣, 对植物造成的氧化胁迫增强, 但红景天脂膜保护系统的功能亦相应加强, 从而增强了其抵抗逆境胁迫的能力。其中以过氧化物酶POD的活性变化最为显著 :在 380 5m以下海拔区, 于四裂红景天叶片中均未检测到该酶活性, 而分布海拔较高的长鳞红景天叶片中该酶活性则随海拔升高明显增强, 推测POD可能在红景天适应特殊生境中起着重要的作用, 亦可能与高海拔区长鳞红景天取代四裂红景天有关。
汪晓峰, 任红旭, 孙国钧. 四裂红景天与长鳞红景天叶片中抗氧化系统随海拔梯度的变化. 植物生态学报, 2005, 29(2): 331-337. DOI: 10.17521/cjpe.2005.0043
WANG Xiao-Feng, REN Hong-Xu, SUN Guo-Jun. ALTITUDINAL VARIATION OF ANTIOXIDATIVE SYSTEM IN LEAVES OF RHODIOLA QUADRIFIDA AND R. GELIDA. Chinese Journal of Plant Ecology, 2005, 29(2): 331-337. DOI: 10.17521/cjpe.2005.0043
图1 不同海拔高度四裂红景天 (空心) 和长鳞红景天 (实心) 叶片MDA含量变化 具有相同字母的柱体间差异不显著 (p=0.05)
Fig.1 Content of MDA in leaves of Rhodiola quadrifida (open) and R. gelida (solid) grown at different altitudes Bars sharing the same letter are not different at p=0.05
图2 不同海拔高度四裂红景天 (空心) 和长鳞红景天 (实心) 叶片SOD活性变化 具有相同字母的柱体间差异不显著 (p=0.05)
Fig.2 Activity of SOD in leaves of Rhodiola quadrifida (open) and R. gelida (solid) grown at different altitudes Bars sharing the same letter are not different at p=0.05
图3 不同海拔高度四裂红景天 (空心) 和长鳞红景天 (实心) 叶片CAT活性变化 具有相同字母的柱体间差异不显著 (p=0.05)
Fig.3 Activity of CAT in leaves of Rhodiola quadrifida (open) and R. gelida (solid) grown at different altitudes Bars sharing the same letter are not different at p=0.05
图4 不同海拔高度四裂红景天 (空心) 和长鳞红景天 (实心) 叶片POD活性变化 具有相同字母的柱体间差异不显著 (p=0.05)
Fig.4 Activity of POD in leaves of Rhodiola quadrifida (open) and R. gelida (solid) grown at different altitudes Bars sharing the same letter are not different at p=0.05
图5 不同海拔高度四裂红景天 (空心) 和长鳞红景天 (实心) 叶片ASA-POD活性变化 具有相同字母的柱体间差异不显著 (p=0.05)
Fig.5 Activity of ASA-POD in leaves of Rhodiola quadrifida (open) and R. gelida (solid) grown at different altitudes Bars sharing the same letter are not different at p=0.05
图6 不同海拔高度四裂红景天 (空心) 和长鳞红景天 (实心) 叶片GR活性变化 具有相同字母的柱体间差异不显著 (p=0.05)
Fig.6 Activity of GR in leaves of Rhodiola quadrifida (open) and R. gelida (solid) grown at different altitudes Bars sharing the same letter are not different at p=0.05
图7 不同海拔高度四裂红景天 (空心) 和长鳞红景天 (实心) 叶片GSH含量变化 具有相同字母的柱体间差异不显著 (p=0.05)
Fig.7 Content of GSH in leaves of Rhodiola quadrifida (open) and R. gelida (solid) grown at different altitudes Bars sharing the same letter are not different at p=0.05
图8 不同海拔高度四裂红景天 (空心) 和长鳞红景天 (实心) 叶片ASA含量变化 具有相同字母的柱体间差异不显著 (p=0.05)
Fig.8 Content of ASA in leaves of Rhodiola quadrifida (open) and R. gelida (solid) grown at different altitudes Bars sharing the same letter are not different at p=0.05
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