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在较低水温下提高耐淹植物芒萁的耐淹能力和碳水化合物状况。

Improved flooding tolerance and carbohydrate status of flood-tolerant plant Arundinella anomala at lower water temperature.

机构信息

Institute of Subtropical Forestry, Chinese Academy of Forestry/ Research Station of Hangzhou Bay Wetlands Ecosystem, National Forestry Bureau, Fuyang, China.

Key Laboratory of Eco-environments in Three Gorges Reservoir Region (Ministry of Education), Chongqing Key Laboratory of Plant Ecology and Resources in Three Gorges Reservoir Region, School of Life Sciences, Southwest University, Chongqing, China.

出版信息

PLoS One. 2018 Mar 21;13(3):e0192608. doi: 10.1371/journal.pone.0192608. eCollection 2018.

Abstract

BACKGROUND

Operation of the Three Gorges Reservoir (TGR, China) imposes a new water fluctuation regime, including a prolonged winter submergence in contrast to the natural short summer flooding of the rivers. The contrasting water temperature regimes may remarkably affect the survival of submerged plants in the TGR. Plant survival in such prolonged flooding might depend on the carbohydrate status of the plants. Therefore, we investigated the effects of water temperature on survival and carbohydrate status in a flood-tolerant plant species and predicted that both survival and carbohydrate status would be improved by lower water temperatures.

METHODOLOGY

A growth chamber experiment with controlled water temperature were performed with the flood-tolerant species Arundinella anomala from the TGR region. The plants were submerged (80 cm deep water above soil surface) with a constant water temperature at 30°C, 20°C or 10°C. The water temperature effects on survival, plant biomass and carbohydrate content (glucose, fructose and sucrose and starch) in the viable and dead tissues were investigated.

PRINCIPAL FINDINGS

The results showed that the survival percentage of A.anomala plants was greatly dependent on water temperature. The two-month submergence survival percentage was 100% at 10°C, 40% at 20°C and 0% at 30°C. Decreasing the water temperature led to both later leaf death and slower biomass loss. Temperature decrease also induced less reduction in glucose, fructose and sucrose in the roots and leaves (before decay, p < 0.05), but only marginally significant in the stems (p < 0.05). However, the starch content level did not differ significantly between the water temperature treatments (p > 0.05). Different water temperatures did not alter the carbon pool size in the stems, leaves and whole plants (p > 0.05), but a clear difference was found in the roots (p < 0.05), with a larger pool size at a lower temperature.

CONCLUSIONS/SIGNIFICANCE: We concluded that (1) A. anomala is characterized by high flooding tolerance and sustained capability to mobilize carbohydrate pool. (2) The survival percentage and carbohydrate status of submerged A. anomala plants were remarkably improved by lower water temperatures. The survival of submergence seemed to be closely associated with the sugar content and carbohydrate pool size of the roots, which contained the lowest amount of carbohydrates. Three Gorges reservoir impoundment in winter is beneficial to the survival of submerged A. anomala in riparian area of the reservoir due to the low water temperature.

摘要

背景

三峡水库(中国)的运行形成了新的水位波动格局,包括冬季长时间蓄水,与河流自然的夏季短暂洪水形成对比。这种对比鲜明的水温格局可能会显著影响三峡水库中淹没植物的生存。在这种长时间的洪水淹没中,植物的生存可能取决于植物的碳水化合物状况。因此,我们研究了水温对一种耐洪水植物物种的生存和碳水化合物状况的影响,并预测较低的水温会提高生存和碳水化合物状况。

方法

对来自三峡地区的耐洪水植物种 Arundinella anomala 进行了具有受控水温的生长室实验。将植物淹没(土壤表面以上 80 厘米深的水),水温恒定在 30°C、20°C 或 10°C。研究了水温对生存、植物生物量和可存活组织和死亡组织中碳水化合物含量(葡萄糖、果糖和蔗糖以及淀粉)的影响。

主要发现

结果表明,A.anomala 植物的存活率高度依赖于水温。在 10°C 下,两个月的淹没存活率为 100%,在 20°C 下为 40%,在 30°C 下为 0%。水温下降不仅导致叶片较晚死亡,而且生物量损失也较慢。温度下降还导致根和叶中的葡萄糖、果糖和蔗糖减少较少(在腐烂前,p<0.05),但在茎中仅略有显著差异(p<0.05)。然而,淀粉含量水平在不同水温处理之间没有显著差异(p>0.05)。不同的水温并没有改变茎、叶和整株植物的碳库大小(p>0.05),但在根中发现了明显的差异(p<0.05),较低的温度下碳库较大。

结论/意义:我们得出结论:(1)A. anomala 具有高耐洪水性和持续调动碳水化合物库的能力。(2)较低的水温显著提高了淹没的 A. anomala 植物的存活率和碳水化合物状况。淹没的生存似乎与根中的糖含量和碳水化合物库大小密切相关,根中碳水化合物含量最低。由于冬季水库蓄水水位较低,三峡水库蓄水对水库沿岸淹没的 A. anomala 的生存有利。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50a7/5862403/82ea8f294884/pone.0192608.g001.jpg

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