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克隆整合增强了克隆植物物种在土壤碱度胁迫下的表现。

Clonal integration enhances the performance of a clonal plant species under soil alkalinity stress.

作者信息

Zhang Wenjun, Yang Gaowen, Sun Juanjuan, Chen Jishan, Zhang Yingjun

机构信息

Department of Grassland Science, China Agricultural University, Beijing, China.

Department of Grassland Science, China Agricultural University, Beijing, China; College of Agro-grassland Science, Nanjing Agricultural University, Nanjing, China.

出版信息

PLoS One. 2015 Mar 19;10(3):e0119942. doi: 10.1371/journal.pone.0119942. eCollection 2015.

Abstract

Clonal plants have been shown to successfully survive in stressful environments, including salinity stress, drought and depleted nutrients through clonal integration between original and subsequent ramets. However, relatively little is known about whether clonal integration can enhance the performance of clonal plants under alkalinity stress. We investigated the effect of clonal integration on the performance of a typical rhizomatous clonal plant, Leymus chinensis, using a factorial experimental design with four levels of alkalinity and two levels of rhizome connection treatments, connected (allowing integration) and severed (preventing integration). Clonal integration was estimated by comparing physiological and biomass features between the rhizome-connected and rhizome-severed treatments. We found that rhizome-connected treatment increased the biomass, height and leaf water potential of subsequent ramets at highly alkalinity treatments but did not affect them at low alkalinity treatments. However, rhizome-connected treatment decreased the root biomass of subsequent ramets and did not influence the photosynthetic rates of subsequent ramets. The biomass of original ramets was reduced by rhizome-connected treatment at the highest alkalinity level. These results suggest that clonal integration can increase the performance of clonal plants under alkalinity stress. Rhizome-connected plants showed dramatically increased survival of buds with negative effects on root weight, indicating that clonal integration influenced the resource allocation pattern of clonal plants. A cost-benefit analysis based on biomass measures showed that original and subsequent ramets significantly benefited from clonal integration in highly alkalinity stress, indicating that clonal integration is an important adaptive strategy by which clonal plants could survive in local alkalinity soil.

摘要

研究表明,克隆植物能够通过原株与分株之间的克隆整合,在包括盐胁迫、干旱和养分贫瘠在内的胁迫环境中成功存活。然而,关于克隆整合是否能提高克隆植物在碱胁迫下的性能,人们了解得相对较少。我们采用析因实验设计,研究了克隆整合对典型的根茎型克隆植物羊草性能的影响,该实验设计包含四个碱度水平和两个根茎连接处理水平,即连接(允许整合)和切断(阻止整合)。通过比较根茎连接处理和根茎切断处理之间的生理和生物量特征来估计克隆整合。我们发现,在高碱度处理下,根茎连接处理增加了后续分株的生物量、高度和叶片水势,但在低碱度处理下对其没有影响。然而,根茎连接处理降低了后续分株的根生物量,并且没有影响后续分株的光合速率。在最高碱度水平下,根茎连接处理降低了原株的生物量。这些结果表明,克隆整合可以提高克隆植物在碱胁迫下的性能。根茎连接的植株显示出芽的存活率显著提高,但对根重有负面影响,这表明克隆整合影响了克隆植物的资源分配模式。基于生物量测量的成本效益分析表明,在高碱胁迫下,原株和后续分株都从克隆整合中显著受益,这表明克隆整合是克隆植物在局部碱性土壤中生存的一种重要适应策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d40/4366383/1188a5198465/pone.0119942.g001.jpg

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