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首页> 外文期刊>Sociedade Brasileira da Ciencia das Plantas Daninhas >Anatomical studies of leaves in weed widely largely occurring in Brazil. V - Leonurus sibiricus, Leonotis nepetaefolia, Plantago tomentosa and Sida glaziovii
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Anatomical studies of leaves in weed widely largely occurring in Brazil. V - Leonurus sibiricus, Leonotis nepetaefolia, Plantago tomentosa and Sida glaziovii

机译:在巴西,杂草中叶片的解剖学研究广泛存在。 V-益母草,刺五加,车前草和毛S

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The objective of this research was to study the leaf anatomy of the weed species Leonurus sibiricus, Leonotis nepetaefolia, Plantago tomentosa and Sida glaziovii to acquire a better understanding of the barriers each species imposes upon herbicide penetration, thus supporting the search for strategies to overcome these obstacles. Completely expanded leaves from the third to the fifth nodes of the plants were collected in the field. Three samples of approximately 1 cm2 were taken from the central portion of the leaves of each species to be used in the studies of structure and clarification as well as observations through a scanning-electron microscope (SEM). L. sibiricus is the only hypostomatic species, while the others are amphistomatic species. The main leaf barriers observed against herbicide penetration in L. sibiricus were high trichomic density and stomata absence in the adaxial side; in L. nepetaefolia, the barriers were high trichomic density, high cuticle thickness in the adaxial side and low stomatic density in the adaxial side, whereas in P. tomentosa the barriers were high content of epicuticular wax, high trichomic density and high cuticle thicknesses. High trichomic density and low stomatic density in the adaxial side were the herbicide barriers observed in the leaves of S. glaziovii.
机译:这项研究的目的是研究杂草物种Leonurus sibiricus,Leonotis nepetaefolia,Plantago tomentosa和Sida glaziovii的叶片解剖,以更好地了解每种物种对除草剂渗透的影响,从而为寻找克服这些障碍的策略提供了支持。障碍。在田间收集了从植物的第三节到第五节完全展开的叶子。从每个物种的叶的中央部分取三个大约1 cm2的样品,用于结构和澄清研究以及通过扫描电子显微镜(SEM)的观察。西伯利亚乳酸杆菌是唯一的亲缘种,而其他则是两亲物种。观察到的抑制除草剂渗透到西伯利亚落叶松中的主要叶屏障是高毛滴虫密度和近轴侧没有气孔。在荆芥中,障碍是高毛发密度,近轴侧的角质层厚度高和近轴侧的低气孔密度,而在毛白杨中,障碍物是表皮蜡含量高,高毛发密度和高角质层厚度。在近侧的高三叶虫密度和低气孔密度是在S. glaziovii叶片中观察到的除草剂屏障。

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