National Key Facility for Crop Gene Resources and Genetic Improvement/Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.
Plant Biotechnol J. 2022 May;20(5):862-875. doi: 10.1111/pbi.13765. Epub 2021 Dec 24.
Optimal root system architecture is beneficial for water-fertilizer use efficiency, stress tolerance and yield improvement of crops. However, because of the complexity of root traits and difficulty in phenotyping deep roots, the study on mechanisms of root development is rarely reported in wheat (Triticum aestivum L.). In this study, we identified that the LBD (LATERAL ORGAN BOUNDARIES DOMAIN) gene TaMOR (MORE ROOT in wheat) determines wheat crown root initiation. The mor mutants exhibited less or even no crown root, dwarfism, less grain number and lodging caused by few roots. The observation of cross sections showed that crown root initiation is inhibited in the mor mutants. Molecular assays revealed that TaMOR interacts with the auxin response factor ARF5 to directly induce the expression of the auxin transporter gene PIN2 (PIN-FORMED 2) in the root base to regulate crown root initiation. In addition, a 159-bp MITE (miniature inverted-repeat transposable element) insertion causing DNA methylation and lower expression of TaMOR-B was identified in TaMOR-B promoter, which is associated with lower root dry weight and shorter plant height. The results bring new light into regulation mechanisms of crown root initiation and offer a new target for the improvement of root system architecture in wheat.
最优的根系结构有利于提高作物的水分养分利用效率、增强抗逆性和产量。然而,由于根系性状的复杂性和深根系表型的困难,小麦根系发育机制的研究很少有报道。在本研究中,我们鉴定了 LBD(侧根边界域)基因 TaMOR(小麦中更多的根)决定了小麦冠根的起始。mor 突变体表现出较少甚至没有冠根、矮化、粒数减少和因根系较少导致的倒伏。对横切面的观察表明,mor 突变体中冠根的起始受到抑制。分子分析表明,TaMOR 与生长素响应因子 ARF5 相互作用,直接诱导根基部生长素转运体基因 PIN2(PIN-FORMED 2)的表达,从而调节冠根的起始。此外,在 TaMOR-B 启动子中发现了一个 159bp 的 MITE(微型反向重复转座元件)插入,导致 TaMOR-B 的 DNA 甲基化和表达降低,这与根干重降低和株高缩短有关。研究结果为冠根起始的调控机制提供了新的认识,并为小麦根系结构的改良提供了新的目标。