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Comparisons in water relations of plants between newly formed riparian and non-riparian habitats along the bank of Three Gorges Reservoir, China

机译:中国三峡库区两岸新形成的河岸和非河岸生境之间植物水关系的比较

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摘要

The water table in the Three Gorges Reservoir (TGR) rose significantly since the construction of the Three Gorges Dam across the Yangtze River. Little is known about how such a change in local hydrological condition will affect the ecophysiology of plants along the bank of the world's largest reservoir. In this study, water relations of the dominant plants were investigated over an entire year period by comparing stable isotope compositions of xylem water, leaf water potentials and foliar carbon isotope ratios at a newly-formed riparian site near the river bank and two non-riparian sites at higher elevations. The isotopic compositions of xylem water indicated that the plants in the newly-formed riparian zone acquired water mainly from the soil previously infiltrated by local rain rather than the Yangtze River water. Predawn and midday water potentials of the riparian trees were also similar to those at the non-riparian sites. Leaf tp#pdC values of plants across the three sites also showed no difference, even though there was a significant difference among species. Our results indicate that plants at the newly formed transient riparian area along the bank of TGR do not depend on the Yangtze River water for their water sources and that rising water levels in this reservoir may not lead to immediate changes in water relations of the plants along the bank.
机译:自长江三峡大坝建设以来,三峡水库(TGR)的地下水位显着上升。人们对这种当地水文状况的变化将如何影响世界最大水库两岸植物的生态生理知之甚少。在这项研究中,通过比较河岸附近新形成的河岸站点和两个非河岸站点的木质部水的稳定同位素组成,叶片水势和叶碳同位素比,研究了全年优势植物的水关系。高海拔的地点。木质部水的同位素组成表明,新形成的河岸带中的植物主要从先前被局部雨水渗透的土壤中获取水,而不是从长江中获取水。河岸树木的黎明和中午水势也与非河岸地区的类似。即使物种间存在显着差异,但在这三个位置上植物的叶tp#pdC值也没有显示差异。我们的研究结果表明,沿TGR岸新形成的过渡河岸地区的植物的水源不依赖于长江水,而且该水库中水位的上升可能不会导致沿江植物的水关系立即变化。银行。

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