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首页> 外文期刊>Journal of Plant Growth Regulation >Variation in the δ13C of Two Mangrove Plants is Correlated with Stomatal Response to Salinity
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Variation in the δ13C of Two Mangrove Plants is Correlated with Stomatal Response to Salinity

机译:两种红树林植物δ13 C的变化与盐度对气孔的响应相关

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To better understand the relationship between salinity and the carbon stable isotope composition (expressed as δ13C) of mangrove plants and to test whether the patterns of variation in δ13C of mangrove plants differ from those of nonhalophytes as response to salinity, the effect of salinity on leaf δ13C in two dominant mangrove species, Aegiceras corniculatum and Kandelia candel, was studied. Furthermore, to determine whether the variation in δ13C of mangrove species is adjusted by stomatal conductance, K. candel was selected as an example, and leaf gas-exchange characteristics of the seedlings were measured. It was observed that both mangrove species had a lower leaf δ13C under their optimum salinity (1.50% for Ae. corniculatum and 2.00% for K. candel). This variation in δ13C of mangrove plants was attributable largely to stomatal adjustment as for nonhalophytes in which a strong correlation between δ13C and relevant photosynthetic properties is observed. This result suggests that the different response pattern in δ13C was a consequence of the variation in stomata in relation to the different tolerance to salinity. The optimum salinity inferred by leaf δ13C provides a feasible method for comparing salt tolerance between mangrove plants belonging to different species, which is useful for mangrove restoration.
机译:为了更好地理解盐度与红树林植物碳稳定同位素组成(表示为δ13 C)之间的关系,并检验红树林植物的δ13 C的变化模式是否与非盐生植物不同。研究了盐分对盐分的响应,研究了盐分对两种优势红树林物种(Aegiceras corniculatum和Kandelia candel)叶片δ13C的影响。此外,为了确定是否通过气孔导度调节红树林物种的δ13C变化,以K.candel为例,并测量了幼苗的叶片气体交换特性。观察到,在最佳盐度下,这两种红树林物种的叶片δ13C均较低(Ae。corniculatum为1.50%,K。candel为2.00%)。红树林植物δ13C的这种变化主要归因于非盐生植物的气孔调节,其中观察到δ13C与相关光合特性之间有很强的相关性。该结果表明,δ13C中不同的响应模式是由于气孔变化与盐度耐受性不同而引起的。叶δ13C推断的最佳盐度为比较不同物种的红树林植物的耐盐性提供了一种可行的方法,这对于恢复红树林很有用。

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