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反复浸水对湿地松幼苗养分元素积累和释放的影响。

Effects of repetitive submergence on the accumulation and release of nutrient elements in Pinus elliottii seedlings.

机构信息

Key Laboratory of Forest Ecology and Environment of National Forestry and Grassland Administration, Research Institute of Forest Ecology, Environment and Protection, Chinese Academy of Forestry, Beijing, 100091, China.

Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing, 210037, China.

出版信息

Environ Sci Pollut Res Int. 2021 Jun;28(21):27420-27431. doi: 10.1007/s11356-021-12528-2. Epub 2021 Jan 28.

Abstract

Pinus elliottii is an evergreen coniferous tree. It is considered a potential species for ecological restoration in the Three Gorges Reservoir Area (TGRA). To classify the effects of different degrees of flooding stress in winter on nutrient accumulation in Pinus elliottii after experiencing early drought stress in summer, simulated water treatments of deep submergence (DS) and moderate submergence (MS) were imposed after the summer drought period. The results indicated that the survival rate of seedlings was 95.3%, and the accumulation trend of the flooded plants was rapid at an average rate of 1.99 ± 0.33% in the early stage of flooding (stage I: 0-7 days), a rapid release rate in the second stage (stage II: 7-60 days), and an average rate of only 0.07 ± 0.04% in the later stage (stage III: 60-150 days). After 150 days of flooding, the leaves of Pinus elliottii released an average of 7.156 ± 0.4 g kg of organic carbon, 8.839 ± 0.6 g kg of nitrogen, 0.781 ± 0.1 g kg of phosphorus, and 2.985 ± 0.3 g kg of potassium of macroelement content, and an average of 0.201 ± 0.03 g kg manganese, 0.147 ± 0.04 g kg iron, 0.002 g kg copper, and 0.023 g kg of zinc of microelement contents. Our results also demonstrated that after 150 days of flooding, the C/N, N/P, and C/P ratios of the nutrient element content of Pinus elliottii in the water-level fluctuation zone of the TGRA were 0.810%, 11.32%, and 9.16%, respectively. The absorption and release of nutrients under water flooding are generally divided into three stages: first, the early storage stage (the first stage: 0 to 7 days, optional), then the rapid release (the second stage: 7 to 60 days), and the later stage slow release phase (third stage: 60 to 150 days). Water flooding reduced the contents of C, N, P, and K and affected the absorption of nutrient elements in the plant. At the same time, soluble Mn and Fe over absorbed during flooding could cause toxicity to leaf tissues. At the same time, Pinus elliottii selected to reduce Cu in leaves to ensure that the root has a strong redox capacity and improve nitrogen utilization, thereby preventing the long-term flooding of toxic cations and acid substances. Taken together, our results conclude that increased drought stress can reduce the ability of Pinus elliottii seedlings to withstand flooding stress; the seedlings of Pinus elliottii can maintain their growth by accumulating certain nutrient elements under submerged conditions, which implies that this species would be a suitable candidate for reforestation in the TGRA because of its tolerance to submergence.

摘要

湿地松是一种常绿针叶树。它被认为是三峡库区(TGRA)生态恢复的潜在物种。为了分类冬季不同程度洪水胁迫对夏季经历早期干旱胁迫后湿地松养分积累的影响,在夏季干旱期后对其进行了深淹没(DS)和适度淹没(MS)的模拟水处。结果表明,幼苗的存活率为 95.3%,水淹植物的积累趋势在早期(第 I 期:0-7 天)迅速,平均为 1.99±0.33%,在第二期(第 II 期:7-60 天)迅速释放,后期(第 III 期:60-150 天)平均仅为 0.07±0.04%。洪水后 150 天,湿地松叶片释放的有机碳、氮、磷和大量元素的钾含量平均分别为 7.156±0.4gkg、8.839±0.6gkg、0.781±0.1gkg 和 2.985±0.3gkg,中微量元素锰、铁、铜和锌的含量平均分别为 0.201±0.03gkg、0.147±0.04gkg、0.002gkg 和 0.023gkg。我们的结果还表明,在洪水后 150 天,三峡库区水位波动带湿地松养分元素含量的 C/N、N/P 和 C/P 比分别为 0.810%、11.32%和 9.16%。水淹条件下的养分吸收和释放一般分为三个阶段:第一,早期储存阶段(第一阶段:0 至 7 天,可选),然后快速释放(第二阶段:7 至 60 天),后期缓慢释放阶段(第三阶段:60 至 150 天)。洪水降低了 C、N、P 和 K 的含量,并影响了植物对养分元素的吸收。同时,洪水期间过量吸收的可溶性 Mn 和 Fe 会对叶片组织造成毒性。同时,湿地松选择减少叶片中的 Cu,以确保根部具有较强的氧化还原能力,提高氮的利用率,从而防止长期洪水造成的有毒阳离子和酸物质。综上所述,干旱胁迫的增加会降低湿地松幼苗对洪水胁迫的承受能力;湿地松幼苗在淹没条件下可以通过积累一定的养分元素来维持生长,这意味着该物种因其对淹没的耐受性而成为 TGRA 重新造林的合适候选者。

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