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Effect of floral traits mediated by plant-soil feedback on the relationship between plant density and fecundity: Case study of Tamarix chinensis in the Yellow River Delta, China

机译:植物土反馈介导的花卉特征对植物密度与繁殖力关系的影响 - 中国黄河三角洲茶园案例研究

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Density-dependent fecundity is important for the successful recruitment and reproduction of plant populations, especially for plants inhabiting saltmarshes with highly varied environmental gradients. The highest fecundity of plants at intermediate densities is usually correlated with high pollinator visitation rates mediated by floral displays of medium density. However, little data explains the mechanism that floral traits and pollinator visitation optimize at intermediate densities. Here, we investigated how the density of Tamarix chinensis (in the Yellow River Delta) influence soil conditions, floral traits, pollinator visitation rates, and plant fecundity in environments with different soil salinity and moisture. At all sites, soil moisture and floral traits (number and length of racemes, amounts of floral volatiles) increased parabolically with increasing density, whereas soil salinity declined. Soil conditions and floral traits of T. chinensis were optimal at intermediate plant densities, which, in turn, maximized pollinator visitation and seed set. Reduced fecundity at plant densities that were higher than optimal was related with higher soil salinity, shorter raceme length, and lower amounts of floral volatiles in T. chinensis . Regular freshwater restoration showed a positive impact on pollinator visitation and fecundity of T. chinensis . Consequently, positive plant-soil feedback enhanced floral traits and pollinator visitation, which are related with the optimal fecundity of T. chinensis at intermediate densities. Thus, the density of T. chinensis should be managed in restoration projects of the T. chinensis population through artificial transplantation. The transplanting density of T. chinensis should be strictly controlled in harsh environment, while this requirement could be relaxed in mild conditions.
机译:密度依赖性的繁殖力对于成功招募和繁殖植物种群的植物植物,特别是对于植物居住的植物植物,特别是环境梯度高度多变。中间密度植物的最高繁殖率通常与由培养基密度的花卉显示器介导的高级传导士访问率相关。然而,很少的数据解释了花卉特征和粉刷师探视在中间密度优化的机制。在这里,我们调查了Tamarix Chinensis(黄河三角洲)的密度如何影响土壤条件,花卉特征,粉刷师探访,在不同土壤盐度和水分的环境中的植物繁殖力。在所有地点,土壤水分和花卉特征(种子的数量和长度,花卉挥发物的数量)随着密度的增加而增加,而土壤盐度下降。中华植物密度的土壤条件和T.Chinensis的花卉特征是最佳的,反过来,最大化的人机探访和种子集。降低植物密度的繁殖力,高于最佳的植物密度与较高的土壤盐度,短的成气度长度和较低的花卉挥发物有关。常规淡水恢复对Tupensis的粉刷探视和繁殖力进行了积极影响。因此,正植物 - 土壤反馈增强了花卉特征和粉丝师探访,这与中间密度的T.Chinensis的最佳繁殖率有关。因此,通过人工移植,应在T.Chinensis人群的恢复项目中管理T.Chinensis的密度。 Chinensis的移植密度应严格控制在恶劣的环境中,同时可以在温和条件下放松此要求。

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