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Functional coordination between leaf traits and biomass allocation and growth of four herbaceous species in a newly established reservoir riparian ecosystem in China

机译:中国新建水库河岸生态系统叶片性状与四种草种生物量分配与生长的功能协调

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摘要

The flood‐dry‐flood cycle in the reservoir riparian zone (RRZ) of the Three Gorges Dam has dramatically altered the riparian ecosystem structure and composition. Previous field studies have shown that leaf traits varied greatly and were restricted to the lower‐investment and faster‐return end of the global leaf spectrum, which are typical characteristics of fast‐growing species. However, it is unclear as to the mechanism underpinning the growth potential of these species and how it will respond to soil nutrient availability and temperature. Here, we linked the plant functional traits of four representative dominant C4 herbaceous species (Setaria viridis, Echinochloa crusgalli, Cynodon dactylon and Hemarthria altissima) to their relative growth rates (RGR) under ambient and elevated temperatures, with different nitrogen and phosphorus levels, to explore the potential mechanism of species growth in the newly established reservoir riparian ecosystem in the Three Gorges Reservoir Area, China. We grew seedlings of these species in four open‐top chambers, with three levels of nutrient supplies under two temperature gradients (ambient temperature and an elevated temperature of 4°C). We found that the responses of the RGR and plant traits to soil N and P supply levels and temperature varied considerably among studied species. E. crusgalli displayed the lowest RGR associated with relatively low specific leaf area (SLA), leaf nitrogen content (LN), stem mass ratio (SMR), and high leaf mass ratio (LMR) and was less affected by soil N and P supply levels and temperature. C. dactylon and H. altissima showed the highest RGR compared to the other two species grown at the substrate of N = 0.4 mg/g, P = 0.2 mg/g at ambient air temperature, associated with a relatively high SMR, low LMR and low plant carbon content (PCC). However, the RGR advantage of the two species was diminished at elevated temperatures, while S. viridis showed the highest RGR compared to the other species. Across all datasets, the RGR had no association with the leaf area ratio (LAR) and style="fixed-case">SLA. The style="fixed-case">RGR also showed no significant relationships with the style="fixed-case">LN and leaf phosphorus content ( style="fixed-case">LP). On the other hand, the style="fixed-case">RGR was captured adequately by the style="fixed-case">SMR, which can therefore be considered as a powerful functional marker of species’ functioning in this newly established reservoir riparian ecosystem. Our study provides some insight into the underlying mechanisms of species growth in reservoir riparian ecosystems.
机译:三峡大坝水库河岸带(RRZ)的洪水干涝循环极大地改变了河岸生态系统的结构和组成。先前的田间研究表明,叶片性状差异很大,并且仅限于全球叶片光谱的较低投资和较快回报的末端,这是快速生长物种的典型特征。但是,尚不清楚这些物种的生长潜力的支撑机制以及它如何对土壤养分的有效性和温度作出反应。在这里,我们将四种代表性的优势C4草本物种(狗尾草(Setaria viridis),E草(Echinochloa crusgalli),犬齿草(Cynodon dactylon)和海藻(Hemarthria altissima))的植物功能性状与它们在环境和高温下(具有不同的氮和磷水​​平)的相对生长速率(RGR)相关联。探索中国三峡库区新建立的库区河岸生态系统中物种生长的潜在机制。我们在四个敞开式室中种植了这些物种的幼苗,在两个温度梯度(环境温度和升高的温度4°C)下提供了三种水平的养分供应。我们发现,在研究的物种之间,RGR和植物性状对土壤氮和磷供应水平和温度的响应差异很大。景天E. crusgalli显示出最低的RGR,其相对较低的比叶面积(SLA),叶氮含量(LN),茎质量比(SMR)和高叶质量比(LMR)相关,并且受土壤氮和磷供应的影响较小水平和温度。与在环境空气温度下N = 0.4 mg / g,P = 0.2 mg / g的底物上生长的其他两个物种相比,达克梭菌和H. altissima表现出最高的RGR,这与相对较高的SMR,较低的LMR和植物碳含量低(PCC)。但是,在升高的温度下,这两个物种的RGR优势减弱了,而绿色链球菌的RGR最高。在所有数据集中,RGR与叶面积比(LAR)和 style =“ fixed-case”> SLA 没有关联。 style =“ fixed-case”> RGR 也与 style =“ fixed-case”> LN 和叶磷含量( style =“ fixed-case case“> LP )。另一方面, style =“ fixed-case”> RGR 被 style =“ fixed-case”> SMR 充分捕获,因此可以认为是功能强大的在这个新建立的水库河岸生态系统中,物种功能的功能标记。我们的研究为水库河岸生态系统中物种生长的潜在机制提供了一些见识。

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