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匍匐茎草本金戴戴对基质盐分含量的表型可塑性(英文) 被引量:9
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作者 于飞海 董鸣 +1 位作者 张称意 张淑敏 《植物生态学报》 CAS CSCD 北大核心 2002年第2期140-148,共9页
研究了匍匐茎型克隆草本金戴戴 (Halerpestesruthenica) 4种基株 (基因型 )对不同盐分处理 (0 ,85 .5 ,171.0 ,2 5 6 .5和 34 2 .0mMNaCl)的表型可塑性。随着盐分浓度的增加 ,实验植物与生长相关的性状指标 (如植株干重、总叶面积、分... 研究了匍匐茎型克隆草本金戴戴 (Halerpestesruthenica) 4种基株 (基因型 )对不同盐分处理 (0 ,85 .5 ,171.0 ,2 5 6 .5和 34 2 .0mMNaCl)的表型可塑性。随着盐分浓度的增加 ,实验植物与生长相关的性状指标 (如植株干重、总叶面积、分株数和总匍匐茎长度 )显著减小。植株干重、总叶面积和总匍匐茎长度具有显著的基株间差异。实验植物与形态相关的性状指标 (如平均叶柄长和根冠比 )对盐分梯度具有可塑性并具有显著的基株间差异 ;而其它形态指标 (如平均节间长、比节间长和比叶柄长 )对盐分梯度和基株效应反应均不显著。同时 ,植株干重、总叶面积、分株数和总匍匐茎长度以及平均叶柄长和根冠比对盐分梯度的可塑性格局在所研究 4种基株之间存在显著的差异。结合本实验 ,对金戴戴在不同生境下的适应对策 ,以及其对盐分可塑性格局的基株间差异在种群小进化上的意义进行了讨论。 展开更多
关键词 克隆生长 克隆形态 表型可塑性 金戴戴 盐分 基株效应 匍匐茎草本
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Effect of Light Intensity and Nutrient Availability on Clonal Growth and Clonal Morphology of the Stoloniferous Herb Halerpestes ruthenica 被引量:8
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作者 于飞海 董鸣 《Acta Botanica Sinica》 CSCD 2003年第4期408-416,共9页
In a greenhouse experiment plasticity of clonal growth and clonal morphology of the stoloniferous rosette herb Halerpestes nahenica Ovcz. in response to differing levels of light intensity and nutrient availability wa... In a greenhouse experiment plasticity of clonal growth and clonal morphology of the stoloniferous rosette herb Halerpestes nahenica Ovcz. in response to differing levels of light intensity and nutrient availability was studied. Total plant dry weight, leaf area of primary ramets, total number of ramets and of stolons, and total stolon length were significantly reduced, while specific internode length and specific petiole length significantly increased under deep shading (6.25% of high light intensity, 5.3% of full daylight) or under low nutrient availability. Under low nutrient availability, mean stolon internode length of H. ruthenica was significantly larger while branching intensity and number of ramets smaller than those under high nutrient availability. These responses are consistent with the foraging model of clonal plants, indicating that H. nahenica is able to forage nutrients through the plastic responses of clonal growth and clonal. morphology when it grows in heterogeneous environments. However, under deep shading, both mean stolon internode length and mean petiole length were significantly reduced, which disagrees with the findings of many other stoloniferous herbs in response to low or medium levels of shading (ca. 13%-75% of high light intensity, >10% of full daylight), suggesting that under deep shading stoloniferous herbs may not forage light through the plastic responses of spacer length. Many traits such as total plant dry weight, total number and length of stolons, total length of secondary and tertiary stolons. total number of ramets, leaf area of primary ramets and branching intensity were markedly influenced by the interaction effect of light intensity and nutrient availability. Under high light intensity nutrient availability affected these traits more pronouncedly, however under low light intensity nutrient availability either did not affect or affected less markedly on these traits, indicating that fight intensity had significant effect on nutrient foraging in H. nahenica. Under deep shading or low nutrient availability, H. ruthenica may increase its mean stolon internode length by means of thinning stolon internodes (i.e., an increase in specific internode length), which provides it with more chance to escape from resource-poor sites. 展开更多
关键词 clonal growth clonal morphology foraging behavior Halerpestes ruthenica LIGHT NUTRIENT PLASTICITY
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Intraclonal Resource Sharing and Functional Specialization of Ramets in Response to Resource Heterogeneity in Three Stoloniferous Herbs 被引量:8
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作者 于飞海 董鸣 张称意 《Acta Botanica Sinica》 CSCD 2002年第4期468-473,共6页
Environments with reciprocal patchiness of resources, in which the availability of two resources such as light and soil nutrients are patchily distributed in horizontal space and negatively correlated in each patch, a... Environments with reciprocal patchiness of resources, in which the availability of two resources such as light and soil nutrients are patchily distributed in horizontal space and negatively correlated in each patch, are common in many ecosystems. The strategies by which clonal plants adapt to this type of heterogeneous environment were examined in three stoloniferous herbs,Potentilla reptans L. var. sericophylla Franch., P. anserina L. and Halerpestes ruthenica (Jacq.) Qvcz., commonly inhabiting forest understories, grasslands and low saline meadows, respectively. As pairs of connected ramets were subjected to reciprocal patchiness of light and nutrients, stolon connection between the two ramets significantly enhanced biomass of both ramet growing in low light intensity but high soil nutrient condition (LH ramet) and ramet growing in high light intensity but low soil nutrient condition (HL ramet) as well as whole ramet pairs (consisting of LH ramets and HL ramets). Additionally, stolon connection greatly increased root/shoot ratio of LH ramet while significantly decreased that of HL ramet. The results indicate that a reciprocal transportation of resources between interconnected ramets and a functional specialization of ramets in uptake of abundant resources occurred. By resource sharing and functional specialization, clonal plants can efficiently acquire locally abundant resources and buffer the stress caused by reciprocal patchiness of resources. 展开更多
关键词 Halerpestes ruthenica Potentilla anserina P. reptans var. sericophylla functional specialization light intensity nutrient content reciprocal patchiness of resources resource sharing
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