Department of Biochemistry, University of Calcutta, 35, Ballygunge Circular Road, Kolkata, 700019, West Bengal, India.
Agricultural Biotechnology Institute, NARIC, Szent-Györgyi Albert u. 4, Gödöllő, Hungary.
Plant Sci. 2019 Apr;281:232-241. doi: 10.1016/j.plantsci.2018.12.003. Epub 2018 Dec 12.
Root nodule symbiosis in legumes is established following interaction of compatible rhizobia that activates an array of genes, commonly known as symbiotic-pathway, resulting in nodule development. In model legumes, bacterial entry mainly occurs through infection thread involving the expression of transcription factor CYCLOPS/IPD3. Here we show the functional analysis of AhCYCLOPS in Arachis hypogaea where bacteria invade roots through epidermal cracks. Exploiting significant cross-species domain conservation, trans-complementation experiments involving ectopic expression of AhCYCLOPS in transgenic hairy-roots of Medicago truncatula ipd3 mutants resulted in functional complementation of Medicago nodules. Moreover, native promoter of AhCYCLOPS was sufficient for this cross-species complementation irrespective of the different modes of infection of roots by rhizobia and nodule ontology. To unravel the role of AhCYCLOPS during 'crack-entry' nodulation in A. hypogaea, RNAi of AhCYCLOPS was performed which resulted in delayed nodule inception followed by drastic reduction in nodule number on transgenic hairy-roots. The infection zone of a significant number of RNAi nodules showed presence of infected cells with enlarged nucleus and rod shaped undifferentiated bacteria. Expression analysis showed downregulation of several nodulation responsible effectors endorsing the compromised condition of RNAi roots. Together, the results indicated that AhCYCLOPS plays an important role in A. hypogaea nodule development.
豆科植物的根瘤共生是在相容的根瘤菌相互作用下建立的,这种相互作用激活了一系列通常被称为共生途径的基因,导致根瘤的发育。在模式豆科植物中,细菌的进入主要通过感染丝发生,涉及转录因子 CYCLOPS/IPD3 的表达。在这里,我们展示了 AhCYCLOPS 在花生中的功能分析,在花生中,细菌通过表皮裂缝侵入根。利用跨物种域的显著保守性,在突变体 ipd3 的拟南芥毛状根中转基因异位表达 AhCYCLOPS 的转互补实验导致了拟南芥结瘤的功能互补。此外,AhCYCLOPS 的天然启动子足以进行这种跨物种互补,而不管根瘤菌感染根的不同模式和结瘤本体如何。为了揭示 AhCYCLOPS 在花生“裂缝进入”结瘤中的作用,对 AhCYCLOPS 进行了 RNAi 干扰,导致转基因毛状根的结瘤起始延迟,随后结瘤数量急剧减少。大量 RNAi 结瘤的感染区显示出存在感染细胞,其细胞核增大,杆状未分化细菌。表达分析显示,几个与结瘤相关的效应子的表达下调,证实了 RNAi 根的受损状况。综上所述,这些结果表明 AhCYCLOPS 在花生结瘤发育中起着重要作用。