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首页> 外文期刊>Trees. Structure and Function >The influence of gall position over xylem features in leaflets ofInga ingoides(Rich.) Willd. (Fabaceae: Caesalpinioideae)
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The influence of gall position over xylem features in leaflets ofInga ingoides(Rich.) Willd. (Fabaceae: Caesalpinioideae)

机译:携带对尖端传单(富人)的肝癌特征的影响(富人。)Willd。 (Fabaceae:caesalpinioideae)

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Key message The origin of xylem cells, intracellular variation, and gall position relative to the host plant organ are related to mechanisms that positively compensate hydraulic conductivity in galls. Gall position in its host organ may be determinant for the new patterns of xylem differentiation. Leaf galls may be attached to the host leaf by a peduncle, as the extralaminar galls, or may develop in a morphological continuum with their host organ, as the intralaminar galls. Due to these two distinct positions and the related patterns of cell differentiation, gall vascular cells and tissues may vary in area and size, which were investigated in the structural features of the vessel elements in galls and in their connections with their host leaflets in three gall morphotypes associated toInga ingoides. Also, as phytohormones orchestrate the differentiation of vascular cells, the sites of accumulation of auxins and cytokinins were detected by histochemical techniques. Besides aspects of cell differentiation, cytometric and histometric xylem features, as well as the relative water content were evaluated looking for compensatory mechanisms related to hydraulic status of the galls and the gall constriction hypothesis. The detection of auxins was related with the differentiation of new vascular cells. The origin of xylem cells, intracellular variation, and gall position relative to the host plant organ are related to mechanisms that positively compensate the hydraulic conductivity in galls. Extralaminar galls develop as appendages of adventitious origin, which theoretically imply in rupture with the host leaf ontogenetical pattern. Based on the fact that gall position influences xylem cell features, the gall-constriction hypothesis was revisited with leaflet galls as models of study, but was corroborated just for the intralaminar galls.
机译:关键信息:木质部细胞的起源、细胞内的变异和瘿相对于寄主植物器官的位置与正补偿瘿中水力传导的机制有关。瘿在寄主器官中的位置可能是木质部分化新模式的决定因素。叶瘿可以通过花序梗附着在寄主叶片上,称为层外瘿,也可以与寄主器官形成形态连续统,称为层内瘿。由于这两个不同的位置和相关的细胞分化模式,胆囊血管细胞和组织的面积和大小可能会有所不同,这是在胆囊血管元素的结构特征以及它们与宿主小叶的联系方面进行的研究,这三种胆囊形态类型与胆囊管有关。此外,当植物激素协调维管细胞的分化时,通过组织化学技术可以检测到生长素和细胞分裂素的积累部位。除了细胞分化方面,还评估了细胞仪和组织计量学木质部特征以及相对含水量,以寻找与胆囊水力状态和胆囊收缩假说相关的代偿机制。生长素的检测与新生血管细胞的分化有关。木质部细胞的起源、细胞内的变异以及瘿相对于寄主植物器官的位置与正补偿瘿中的水力传导率的机制有关。层外虫瘿发育为不定起源的附属物,这在理论上意味着与寄主叶片个体发育模式的断裂。基于虫瘿位置影响木质部细胞特征的事实,以小叶虫瘿为研究模型,重新探讨了虫瘿收缩假说,但仅对层内虫瘿得到了证实。

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