Ying Zhang, Yuru Ma, Dan Zhao, Ziyan Tang, Tengteng Zhang, Ke Zhang, Jingao Dong, Hao Zhang
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引用次数: 4
摘要
侧根(LR)是植物根系的重要组成部分。例如,在双子叶植物中,当植物从水生环境适应到陆生环境后,就进化出了丝状假根,以便吸收养分。典型的植物根系由主根、根瘤、根毛和根帽组成。典型的植物根系具有向地性(向下长入地下的趋势),并能合成植物激素和其他必需物质。根的维管束和复杂的空间结构使植物能够吸收水分和养分,以满足其养分配额和生长需要。主根在早期生长阶段承担了大部分功能,但后来被根瘤取代,这突出了根瘤发育对水分和矿物质吸收以及根的土壤固定能力的重要性。LR 的发育受内源植物激素和外部环境因素的调节,由于拟南芥的根部解剖结构简单,而且容易获得突变体,因此对其潜在机制进行了详细的剖析。这篇综述全面系统地总结了过去(主要在拟南芥中)有关 LR 基本结构、发育阶段和受不同因子调控的分子机制的研究,以及 LR 研究的未来前景,为根系研究人员提供了广泛的背景知识。
Lateral roots (LRs) are an important part of plant root systems. In dicots, for example, after plants adapted from aquatic to terrestrial environments, filamentous pseudorhizae evolved to allow nutrient absorption. A typical plant root system comprises a primary root, LRs, root hairs, and a root cap. Classical plant roots exhibit geotropism (the tendency to grow downward into the ground) and can synthesize plant hormones and other essential substances. Root vascular bundles and complex spatial structures enable plants to absorb water and nutrients to meet their nutrient quotas and grow. The primary root carries out most functions during early growth stages but is later overtaken by LRs, underscoring the importance of LR development water and mineral uptake and the soil fixation capacity of the root. LR development is modulated by endogenous plant hormones and external environmental factors, and its underlying mechanisms have been dissected in great detail in Arabidopsis, thanks to its simple root anatomy and the ease of obtaining mutants. This review comprehensively and systematically summarizes past research (largely in Arabidopsis) on LR basic structure, development stages, and molecular mechanisms regulated by different factors, as well as future prospects in LR research, to provide broad background knowledge for root researchers.
期刊介绍:
Plant Signaling & Behavior, a multidisciplinary peer-reviewed journal published monthly online, publishes original research articles and reviews covering the latest aspects of signal perception and transduction, integrative plant physiology, and information acquisition and processing.