首页> 外文期刊>American journal of botany >The cuticle on the gametophyte calyptra matures before the sporophyte cuticle in the moss Funaria hygrometrica (Funariaceae).
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The cuticle on the gametophyte calyptra matures before the sporophyte cuticle in the moss Funaria hygrometrica (Funariaceae).

机译:苔藓真菌(Funariacegrogrotica (Funariaceae)中的子孢子角质层在孢子体角质层之前成熟。

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Premise of the study: In vascular plants, leaf primordia prevent desiccation of the shoot apical meristem. Lacking leaves, the undifferentiated moss sporophyte apex is covered by the calyptra, a cap of maternal gametophyte tissue that is hypothesized to function in desiccation protection. Herein, we compare cuticle development on the calyptra and sporophyte to assess the calyptra's potential to protect the sporophyte from desiccation. As the first comprehensive study of moss sporophyte cuticle development, this research broadens our perspectives on cuticle development and evolution across embryophytes. Methods: Calyptrae and sporophytes at nine developmental stages were collected from a laboratory-grown population of the moss Funaria hygrometrica. Tissues were embedded, sectioned, then examined using transmission electron microscopy. Epidermal cells were measured for thickness of the cuticle layers, cell wall thickness, and lumen size. Key results: The calyptra cuticle develops precociously and reaches maturity before the sporophyte cuticle. Calyptrae are covered by a four-layered cuticle at all stages, whereas sporophyte cuticle maturation is delayed until sporangium formation. The development and thickening of the sporophyte cuticle occurs in an acropetal wave. Conclusions: A multilayered calyptra cuticle at the earliest developmental stages is consistent with its ability to protect the immature sporophyte from desiccation. Young sporophytes lack a complex cuticle and thus may require protection, whereas in older sporophytes a mature cuticle develops. The moss calyptra is not a vestigial structure, but rather the calyptra's role in preventing desiccation offers a functional explanation for calyptra retention during the 450 Myr of moss evolution.Digital Object Identifier http://dx.doi.org/10.3732/ajb.1100311
机译:研究的前提:在维管束植物中,原基阻止茎尖分生组织的干燥。缺少叶子,未分化的苔藓孢子体的顶端被calyptra覆盖,calyptra被认为是一种母本配子体组织的帽子,被认为具有防干燥作用。在本文中,我们比较了鞘管和孢子体上的表皮发育,以评估鞘管保护孢子体免受干燥的潜力。作为对苔藓孢子体表皮发育的首次全面研究,这项研究拓宽了我们对跨胚植物表皮发育和进化的观点。方法:从实验室生长的青苔菌(Funaria hygrometrica)的种群中收集了九个发育阶段的花萼和孢子体。将组织包埋,切片,然后使用透射电子显微镜检查。测量表皮细胞的表皮层厚度,细胞壁厚度和管腔大小。关键结果:萼片角质层早熟,并在孢子体角质层之前成熟。菜蛾在所有阶段都被四层角质层覆盖,而孢子体角质层的成熟要延迟到孢子囊形成为止。孢子体表皮的发育和增厚发生在顶波中。结论:多层的萼片表皮在发育的最早阶段与其保护未成熟孢子体免受干燥的能力是一致的。年轻的孢子体缺乏复杂的角质层,因此可能需要保护,而在老的孢子体中则形成成熟的角质层。苔藓的萼片不是残留的结构,而是苔藓在防止干燥过程中的作用为苔藓在450 Myr演化过程中保留萼片提供了功能解释。数字对象标识符http://dx.doi.org/10.3732/ajb.1100311

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