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首页> 外文期刊>Botanical Journal of the Linnean Society >Full spectrum X-ray mapping reveals differential localization of salt in germinating seeds of differing salt tolerance
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Full spectrum X-ray mapping reveals differential localization of salt in germinating seeds of differing salt tolerance

机译:全光谱X射线映射揭示了盐在不同耐盐性的发芽种子中的差异化定位

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摘要

Seeds of many coastal plants can survive exposure to seawater and may be dispersed long distances by the ocean. The salt tolerance or avoidance strategies of seeds are poorly understood, even though these traits may fundamentally influence dispersal and recruitment in coastal dunes. This research aimed to demonstrate how salt exclusion or localization within germinating seeds may affect salt tolerance. To determine the response of seeds to external salinity during imbibition (water uptake), it was necessary to quantify uptake and spatially resolve the internal distribution of salt. Flame photometry was used to quantify salt concentration in imbibing seeds and a new application of full-spectrum X-ray mapping allowed visualization of the spatial distribution and relative abundance of salt. As external salinity increased, salt-sensitive Spyridium globulosum (Rhamnaceae) seeds accumulated sodium and chlorine in the seed embryo, while potassium was increasingly displaced and germination was reduced. Conversely, salt-tolerant Ficinia nodosa (Cyperaceae) seeds avoided ion uptake and germination was not affected by imbibition in high sodium chloride (NaCl) concentrations. These results provide insight into mechanisms of salt tolerance/avoidance during imbibition and early germination and suggest that oceanic dispersal can be a viable explanation for the distribution of some plant species
机译:许多沿海植​​物的种子可以在暴露于海水中幸存下来,并可能被海洋分散很长距离。尽管这些特性可能从根本上影响沿海沙丘的扩散和补充,但对种子的耐盐性或避免策略却知之甚少。这项研究旨在证明发芽种子中的排盐或局部盐分如何影响耐盐性。为了确定吸水期间种子对外部盐分的响应(水的吸收),有必要量化吸收并在空间上解析盐的内部分布。火焰光度法用于定量吸收种子中的盐浓度,全光谱X射线映射的新应用允许可视化盐的空间分布和相对丰度。随着外部盐度的增加,盐敏感的球孢Spyridium globulosum(Rhamnaceae)种子在种子胚中积累了钠和氯,而钾却越来越多地被置换,发芽减少。相反,耐盐的Ficinia nodosa(莎草科)种子避免了离子吸收,并且在高氯化钠(NaCl)浓度下吸收不会影响发芽。这些结果提供了对吸水和早期萌发期间耐盐/避免盐的机制的洞察力,并表明海洋扩散可能是某些植物物种分布的可行解释。

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