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塔里木河上游典型荒漠植物叶片性状及其与土壤因子的关系 被引量:6
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作者 李蕊希 吴雪 贡璐 《生态学报》 CAS CSCD 北大核心 2022年第13期5360-5370,共11页
为了了解塔里木河上游地区荒漠植物叶片的功能性状及其对不同生境的生态适应性,以花花柴(Karelinia caspica)和骆驼刺(Alhagi sparsifolia)两种典型荒漠植物为研究对象,分析沙地和盐碱地等不同生境下两种荒漠植物叶片的结构性状和化学性... 为了了解塔里木河上游地区荒漠植物叶片的功能性状及其对不同生境的生态适应性,以花花柴(Karelinia caspica)和骆驼刺(Alhagi sparsifolia)两种典型荒漠植物为研究对象,分析沙地和盐碱地等不同生境下两种荒漠植物叶片的结构性状和化学性状,并结合冗余分析探讨了其与土壤因子的关系。结果表明:(1)研究区花花柴、骆驼刺两种荒漠植物的叶厚度(LT)、叶面积(LA)、比叶面积(SLA)及叶组织密度(LTD)等结构性状在不同物种之间存在显著差异(P<0.05),而叶片有机碳(LOC)、氮(LN)、磷(LP)含量等化学性状在不同生境之间存在显著差异(P<0.05),其平均值分别为417.67g/kg、15.14g/kg及1.12g/kg,低于全球植物叶片平均水平。(2)在沙地和盐碱地等不同生境下两种荒漠植物叶片LA、SLA及LTD等均呈极显著负相关(P<0.01),LA和N/P是两种生境下植物叶片性状中综合排名前三的共同指标因子。(3)冗余分析结果表明,土壤因子中的土壤含水量(SWC)、土壤有机碳(SOC)和土壤氮(SN)对荒漠植物叶片性状变异起到了较好的解释。本研究表明不同荒漠植物在长期进化过程中形成了相对稳定的叶片结构性状特征,而叶片化学性状对生境土壤因子的变化则较为敏感。 展开更多
关键词 塔里木河上游 荒漠植物 叶片结构性状 叶片化学性状 土壤因子
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Age-related changes of leaf traits and stoichiometry in an alpine shrub(Rhododendron agglutinatum) along altitudinal gradient 被引量:9
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作者 WANG Meng LIU Guo-hu +4 位作者 JIN Tian-tian LI Zong-shan GONG Li WANG Hao YE Xin 《Journal of Mountain Science》 SCIE CSCD 2017年第1期106-118,共13页
Leaf morphological and stoichiometric characteristics are considered to represent both the interior inheritable characters in the plant and its adaptations to specific exterior environments. Rhododendron agglutinatum,... Leaf morphological and stoichiometric characteristics are considered to represent both the interior inheritable characters in the plant and its adaptations to specific exterior environments. Rhododendron agglutinatum,an evergreen alpine shrub species,occupies a wide range of habitats above timberline in the Miyaluo Natural Reserve,southwestern China. Along an altitudinal gradient ranging from 3700 to 4150 m,we measured leaf morphological characters including leaf dry matter content(LDMC),leaf dry mass per unit area(LMA),and one leaf area(OLA),as well as carbon(C) and nutrient(N,P) contents in leaves of three different age groups(juvenile leaves,mature leaves and senescent leaves). We also calculated the stoichiometric relationships among carbon and nutrients(C/N,C/P and N/P). Results showed thatboth age and altitude affected the leaf morphological and stoichiometric properties of R. agglutinatum. Mature leaves possessed the highest LDMC,LMA and C contents both on a dry mass basis and on a unit area basis. Younger leaves possessed higher contents of nutrients. OLA as well as ratios between carbon and nutrients(C/N,C/P) increased with ages. Juvenile leaves possessed lowest ratio between nitrogen and phosphorus. In juvenile leaves,nutrients increased with altitudinal elevation,whereas other traits decreased. In mature leaves,nutrients and their ratios with carbon showed consistent trends with juvenile leaves along increasing altitude,whereas LMA and carbon on a unit area basis showed opposite trends with juvenile leaves along increasing altitude. In senescent leaves,only content of phosphorus on a unit area basis and N/P were found linearly correlated with altitude. Our results demonstrated a clear pattern of nutrient distribution with aging process inleaves and indicated that a high possibility of N limitation in this region. We also concluded that younger leaves could be more sensitive to climate changes due to a greater altitudinal influence on the leaf traits in younger leaves than those in elder leaves. 展开更多
关键词 Leaf traits Stoichiometry Rhododendron agglutinatum Altitude Age Alpine Shrub
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