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Clonal integration enhances flood tolerance of Spartina alterniflora daughter ramets.

机译:克隆整合增强了互花米草子代分株的抗洪能力。

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摘要

Recently, considerable attention has been paid to the invasion of the clonal plant Spartina alternifloro into coastal wetlands at lower elevations. In this experiment, we tested whether clonal integration improved flood tolerance in S. alterniflora daughter ramets. Daughter ramets at two growth stages (young and old ramets) were flooded to water levels of 0, 9 and 18 cm above the soil surface, and the rhizomes between mother and daughter ramets were either severed or left intact. Biomasses of connected ramets grown in controls or in shallow and deep water treatments were 119%, 108% and 149% higher in the old ramet group than those of severed ramets, respectively, whereas they were 3.0, 3.3 and 11.2 times higher in the young ramet group, respectively. At the end of the experimental period, the shoot height, connected with young ramets, in shallow and deep water treatments increased by 19% and 26%, respectively, over that in the control treatments, whereas the old ramets increased by 11% and 39%, respectively. in contrast, the shoot height of the severed young ramets was 27% and 26% lower in shallow and deep water treatments than in the control treatment, respectively. However, the shoot height of the severed old ramets remained constant with increasing water depth. We conclude that clonal integration enhances the flood tolerance of S. alterniflora daughter ramets, and the trait of clonal integration plays more important roles in severe flooding stress conditions and at early growth stages. Crown Copyright
机译:近来,已经对克隆植物互花米草(Spartina alternifloro)向低海拔沿海湿地的入侵给予了相当大的关注。在该实验中,我们测试了克隆整合是否能提高互花米草子代分株的耐水性。两个生长阶段的子母株(幼株和老母株)被淹没到土壤表面上方0、9和18 cm的水位,母子母株之间的根茎被切断或保持完整。在对照组或浅水和深水处理中生长的相连分株的生物量分别比旧分株高119%,108%和149%,而年轻分株则高3.0、3.3和11.2倍分met组。在试验期结束时,浅水和深水处理的嫩枝高度与幼株的分株相比,分别比对照高19%和26%,而老分株分别增加11%和39% %, 分别。相反,在浅水和深水处理中,被切断的幼株的分枝高分别比对照低27%和26%。然而,随着水深的增加,被切断的旧分枝的芽高保持恒定。我们得出的结论是,克隆整合增强了互花米草子代分株的抗洪能力,克隆整合的性状在严重的洪涝胁迫条件下和早期生长阶段起着更重要的作用。皇冠版权

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