Regulation of root growth and elongation in wheat

生物 分生组织 数量性状位点 根系 计算生物学 表型 特质 生物技术 词根(语言学) 选择(遗传算法) 侧根 遗传学 农学 基因 拟南芥 计算机科学 语言学 哲学 人工智能 突变体 程序设计语言
作者
Abdullah Alrajhi,Saif Alharbi,Simon Beecham,Fahad S. Alotaibi
出处
期刊:Frontiers in Plant Science [Frontiers Media]
卷期号:15 被引量:1
标识
DOI:10.3389/fpls.2024.1397337
摘要

Currently, the control of rhizosphere selection on farms has been applied to achieve enhancements in phenotype, extending from improvements in single root characteristics to the dynamic nature of entire crop systems. Several specific signals, regulatory elements, and mechanisms that regulate the initiation, morphogenesis, and growth of new lateral or adventitious root species have been identified, but much more work remains. Today, phenotyping technology drives the development of root traits. Available models for simulation can support all phenotyping decisions (root trait improvement). The detection and use of markers for quantitative trait loci (QTLs) are effective for enhancing selection efficiency and increasing reproductive genetic gains. Furthermore, QTLs may help wheat breeders select the appropriate roots for efficient nutrient acquisition. Single-nucleotide polymorphisms (SNPs) or alignment of sequences can only be helpful when they are associated with phenotypic variation for root development and elongation. Here, we focus on major root development processes and detail important new insights recently generated regarding the wheat genome. The first part of this review paper discusses the root morphology, apical meristem, transcriptional control, auxin distribution, phenotyping of the root system, and simulation models. In the second part, the molecular genetics of the wheat root system, SNPs, TFs, and QTLs related to root development as well as genome editing (GE) techniques for the improvement of root traits in wheat are discussed. Finally, we address the effect of omics strategies on root biomass production and summarize existing knowledge of the main molecular mechanisms involved in wheat root development and elongation.

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