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沙埋诱导的克隆生长形式变化促进了短尖苔草对竞争的适应。

Changed clonal growth form induced by sand burial facilitates the acclimation of Carex brevicuspis to competition.

作者信息

Li Feng, Xie Yonghong, Zhu Lianlian, Jiang Li, Chen Xinsheng, Pan Baihan, Deng Zhengmiao

机构信息

Key Laboratory of Agro-ecological Processes in Subtropical Region, The Chinese Academy of Sciences, Hunan 410125, China; Dongting Lake Station for Wetland Ecosystem Research, Institute of Subtropical Agriculture, Changsha, 410125, China.

Key Laboratory of Agro-ecological Processes in Subtropical Region, The Chinese Academy of Sciences, Hunan 410125, China; Dongting Lake Station for Wetland Ecosystem Research, Institute of Subtropical Agriculture, Changsha, 410125, China; University of the Chinese Academy of Sciences, Beijing 100049, China.

出版信息

PLoS One. 2015 Mar 30;10(3):e0121270. doi: 10.1371/journal.pone.0121270. eCollection 2015.

Abstract

Both competition and burial are important factors that influence plant growth and structuring plant communities. Competition intensity may decline with increased burial stress. However, experimental evidence is scarce. The aim of this study was to elucidate the role of burial stress in influencing plant competition by investigating biomass accumulation, biomass allocation, and clonal growth performance of Carex brevicuspis, one of the dominant species in the Dongting Lake wetland in China. The experiment was conducted with two typical wetland species, C. brevicuspis (target plant) and Polygonum hydropiper (neighbor plant), in a target-neighbor design containing three densities (0, 199, and 398 neighbor plants m-2) and two burial depths (0 and 12 cm). The biomass accumulation of C. brevicuspis decreased with increment of P. hydropiper density in the 0 cm burial treatment. However, in the 12 cm burial treatment, biomass accumulation of C. brevicuspis did not change under medium and high P. hydropiper densities. The relative neighbor effect index (RNE) increased with enhancement of P. hydropiper density but decreased with increasing burial depth. The shoot mass fraction decreased with P. hydropiper density in the 12 cm burial treatments, but the root mass fraction was only affected by burial depth. However, the rhizome mass fraction increased with both P. hydropiper density and burial depth. The number of ramets decreased with increasing P. hydropiper density. With increasing burial depth and density, the proportion of spreading ramets increased from 34.23% to 80.44%, whereas that of clumping ramets decreased from 65.77% to 19.56%. Moreover, increased P. hydropiper density and burial depth led to greater spacer length. These data indicate that the competitive effect of P. hydropiper on C. brevicuspis was reduced by sand burial, which was reflected by different patterns of biomass accumulation and RNE at the two burial depth treatments. A change from a phalanx to a guerrilla growth form and spacer elongation induced by sand burial helped C. brevicuspis to acclimate to competition.

摘要

竞争和掩埋都是影响植物生长及构建植物群落的重要因素。随着掩埋胁迫的增加,竞争强度可能会下降。然而,实验证据却很匮乏。本研究的目的是通过调查中国洞庭湖湿地优势物种之一短尖苔草的生物量积累、生物量分配和克隆生长表现,来阐明掩埋胁迫在影响植物竞争中的作用。该实验以两种典型湿地物种——短尖苔草(目标植物)和水蓼(邻体植物)进行,采用目标 - 邻体设计,包含三种密度(0、199和398株邻体植物/平方米)和两种掩埋深度(0和12厘米)。在0厘米掩埋处理中,短尖苔草的生物量积累随水蓼密度的增加而减少。然而,在12厘米掩埋处理中,在中等和高水蓼密度下,短尖苔草的生物量积累并未改变。相对邻体效应指数(RNE)随水蓼密度的增加而增加,但随掩埋深度的增加而降低。在12厘米掩埋处理中,地上部分质量分数随水蓼密度降低,而根质量分数仅受掩埋深度影响。然而,根茎质量分数随水蓼密度和掩埋深度的增加而增加。分株数量随水蓼密度的增加而减少。随着掩埋深度和密度的增加,匍匐分株的比例从34.23%增加到80.44%,而丛生分株的比例从65.77%下降到19.56%。此外,水蓼密度和掩埋深度的增加导致间隔物长度增加。这些数据表明,沙埋降低了水蓼对短尖苔草的竞争效应,这在两种掩埋深度处理下不同的生物量积累模式和RNE中得到体现。沙埋诱导的从密集型到游击型生长形式的转变以及间隔物伸长帮助短尖苔草适应竞争。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a787/4379005/65df6d05e8d0/pone.0121270.g001.jpg

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