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生长素响应因子2(ARF2)、ARF3和ARF4介导了[植物名称]侧根和固氮根瘤的发育。

Auxin Response Factor 2 (ARF2), ARF3, and ARF4 Mediate Both Lateral Root and Nitrogen Fixing Nodule Development in .

作者信息

Kirolinko Cristina, Hobecker Karen, Wen Jiangqi, Mysore Kirankumar S, Niebel Andreas, Blanco Flavio Antonio, Zanetti María Eugenia

机构信息

Instituto de Biotecnología y Biología Molecular, Departamento de Ciencias Biológicas, Facultad de Ciencias Exactas, Universidad Nacional de La Plata, Centro Científico y Tecnológico-La Plata, Consejo Nacional de Investigaciones Científicas y Técnicas, La Plata, Argentina.

Noble Research Institute LLC, Ardmore, OK, United States.

出版信息

Front Plant Sci. 2021 Apr 8;12:659061. doi: 10.3389/fpls.2021.659061. eCollection 2021.

Abstract

Auxin Response Factors (ARFs) constitute a large family of transcription factors that mediate auxin-regulated developmental programs in plants. , , and are post-transcriptionally regulated by the microRNA390 (miR390)/-acting small interference RNA 3 () module through the action of -derived acting small interfering RNAs (ta-siRNA). We have previously reported that constitutive activation of the miR390/ pathway promotes elongation of lateral roots but impairs nodule organogenesis and infection by rhizobia during the nitrogen-fixing symbiosis established between and its partner . However, the involvement of the targets of the miR390/ pathway, i.e., , and , in root development and establishment of the nitrogen-fixing symbiosis remained unexplored. Here, promoter:reporter fusions showed that expression of both and was associated with lateral root development; however, only the promoter was active in developing nodules. In addition, up-regulation of , , and in response to rhizobia depends on Nod Factor perception. We provide evidence that simultaneous knockdown of , and or mutation in impaired nodule formation, and reduced initiation and progression of infection events. Silencing of , and altered mRNA levels of the early nodulation gene nodulation signaling pathway 2 (). In addition, roots with reduced levels of , and , as well as mutant plants exhibited altered root architecture, causing a reduction in primary and lateral root length, but increasing lateral root density. Taken together, our results suggest that these ARF members are common key players of the morphogenetic programs that control root development and the formation of nitrogen-fixing nodules.

摘要

生长素响应因子(ARFs)构成了一个大型转录因子家族,介导植物中生长素调节的发育程序。[具体基因名称1]、[具体基因名称2]和[具体基因名称3]在转录后由微小RNA390(miR390)/反式作用小干扰RNA 3(tasiRNA3)模块通过源自[具体基因名称4]的反式作用小干扰RNA(ta-siRNA)的作用进行调控。我们之前报道过,miR390/tasiRNA3途径的组成型激活促进侧根伸长,但在[植物名称]与其共生伙伴[共生伙伴名称]建立的固氮共生过程中,会损害根瘤器官发生和根瘤菌感染。然而,miR390/tasiRNA3途径的靶标,即[具体基因名称1]、[具体基因名称2]和[具体基因名称3],在根发育和固氮共生建立中的作用仍未被探索。在这里,启动子:报告基因融合显示,[具体基因名称1]和[具体基因名称2]的表达都与侧根发育相关;然而,只有[具体基因名称1]的启动子在发育中的根瘤中具有活性。此外,[具体基因名称1]、[具体基因名称2]和[具体基因名称3]对根瘤菌的上调响应依赖于结瘤因子感知。我们提供的证据表明,同时敲低[具体基因名称1]、[具体基因名称2]和[具体基因名称3]或[具体基因名称1]中的突变会损害根瘤形成,并减少感染事件的起始和进展。沉默[具体基因名称1]、[具体基因名称2]和[具体基因名称3]会改变早期结瘤基因结瘤信号通路2(NSP2)的mRNA水平。此外,[具体基因名称1]、[具体基因名称2]和[具体基因名称3]水平降低的根以及[具体基因名称1]突变体植物表现出改变的根系结构,导致主根和侧根长度减少,但侧根密度增加。综上所述,我们的结果表明,这些ARF成员是控制根发育和固氮根瘤形成的形态发生程序的共同关键参与者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad97/8060633/84432fce1926/fpls-12-659061-g001.jpg

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