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Systematic and morphologic survey of orbicules in allergenic angiosperms

机译:系统和形态学调查变应性被子植物中的小bic

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Orbicules are sub- or pauci-micronic sporopollenin-coated particles associated with pollen grains. Recent studies have highlighted their importance in terms of systematic value or as vectors of allergens that may trigger pollinosis. While orbicules have indeed been reported for most families and genera of allergological importance, their usefulness in systematics remains little explored. Our study aims: (a) to discover the presence/absence of orbicules in species of allergological interest hitherto overlooked regarding these particles; (b) to propose standard descriptors for orbicule morphology; and (c) to link the features of orbicules to a systematic framework. We observed or measured selected orbicule traits in SEM micrographs of pollen sacs and pollen grains of 23 species of 17 genera in Asteraceae, Betulaceae, Fagaceae, Oleaceae, Poaceae, Plantaginaceae and Polygonaceae families. Categorical and continuous traits were included in a matrix and then subjected to NMDS as ordination method to assess the usefulness of orbicule traits as systematic characters. We detected orbicules both on the locule wall and on the pollen exine in almost all investigated species and described unknown nanoparticles smaller than orbicules. Based on orbicules traits, NMDS separated the samples at species level. We detected and described orbicules on the tapetum and on the pollen exine in 19 target species and observed unknown nanoparticles that might explain (a) the process of deposition of sporopollenin during orbicule development and (b) the onset of pollinosis before and after the dispersion of pollen grains into the air. Finally, within the restricted sample examined, selected orbicule traits allowed to resolve the data set at species level.
机译:小球是与花粉粒相关的亚微或微微孢子粉包被的颗粒。最近的研究突出了它们在系统价值或作为可能引发花粉病的过敏原载体方面的重要性。虽然对于许多具有过敏学意义的科目和属,确实已报道了小草,但仍未探索其在系统学中的有用性。我们的研究目的是:(a)发现迄今为止在这些颗粒中被忽略的具有变应性的物种中存在或不存在小球; (b)提出关于小行星形态的标准描述符; (c)将小行星的特征与系统框架联系起来。我们观察或测量了菊科,桦科,菊科,伞形科,禾本科,车前草科和Poly科的17个属的23种23种花粉囊和花粉粒的扫描电镜显微照片中的选定的小bic性状。将分类性状和连续性状包括在一个矩阵中,然后进行NMDS排序,以评估以星状性状作为系统性状的有用性。我们在几乎所有研究物种的小室壁和花粉外壁上都检测到了小球,并描述了比小球小的未知纳米粒子。根据小球的性状,NMDS在物种级别分离了样本。我们在19种目标物种的绒毡层和花粉外壁上检测并描述了小球,并观察到未知的纳米颗粒,这些纳米颗粒可能解释了(a)小球发育过程中孢粉的沉积过程,以及(b)分散前和后的花粉症发作。花粉粒进入空气。最后,在受限制的样本中,选择的小or性状可以解析物种水平的数据集。

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