HORMONE-INDUCED SIGNALING DURING MOSS DEVELOPMENT.

Karen S. Schumaker, Margaret A. Dietrich
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引用次数: 50

Abstract

Understanding how a cell responds to hormonal signals with a new program of cellular differentiation and organization is an important focus of research in developmental biology. In Funaria hygrometrica and Physcomitrella patens, two related species of moss, cytokinin induces the development of a bud during the transition from filamentous to meristematic growth. Within hours of cytokinin perception, a single-celled initial responds with changes in patterns of cell expansion, elongation, and division to begin the process of bud assembly. Bud assembly in moss provides an excellent model for the study of hormone-induced organogenesis because it is a relatively simple, well-defined process. Since buds form in a nonrandom pattern on cells that are not embedded in other tissues, it is possible to predict which cells will respond and where the ensuing changes will take place. In addition, bud assembly is amenable to biochemical, cellular, and molecular biological analyses. This review examines our current understanding of cytokinin-induced bud assembly and the potential underlying mechanisms, reviews the state of genetic analyses in moss, and sets goals for future research with this organism.

苔藓发育过程中激素诱导的信号。
了解细胞如何通过细胞分化和组织的新程序响应激素信号是发育生物学研究的一个重要焦点。在两种亲缘关系密切的藓类植物——湿气Funaria hygrometrica和小壶藓(Physcomitrella patens)中,细胞分裂素在由丝状生长向分生组织生长转变的过程中诱导芽的发育。在细胞分裂素被感知的几个小时内,单细胞最初的反应是细胞扩张、伸长和分裂的模式发生变化,开始芽组装的过程。苔藓的芽组装为激素诱导的器官发生研究提供了一个很好的模型,因为它是一个相对简单、定义明确的过程。由于芽是在细胞上以一种非随机的模式形成的,而不是嵌入到其他组织中,因此有可能预测哪些细胞会做出反应,以及随后的变化将在哪里发生。此外,芽的组装是符合生化,细胞和分子生物学分析。本文综述了我们目前对细胞分裂素诱导的芽组装及其潜在机制的理解,综述了苔藓中遗传分析的现状,并为未来的研究设定了目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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