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利用小RNA和mRNA测序的计算机模拟方法揭示碳纳米溶胶介导烟草生长所涉及的关键机制。

Revealing critical mechanisms involved in carbon nanosol-mediated tobacco growth using small RNA and mRNA sequencing in silico approach.

作者信息

Zheng Xueao, Wang Chen, Zhang Kunlong, Xu Yalong, Qu Xiaozhan, Cao Peijian, Zhou Ting, Chen Qiansi

机构信息

Zhengzhou Tobacco Research Institute of CNTC, No. 2 Fengyang Street, Zhengzhou, 450001, Henan Province, China.

Beijing Life Science Academy (BLSA), Beijing, 102209, China.

出版信息

BMC Plant Biol. 2024 Dec 23;24(1):1233. doi: 10.1186/s12870-024-05992-8.

Abstract

Nanomaterials have been shown to promote crop growth, yield and stress resistance. Carbon nanosol (CNS), a type of nanomaterial, is used to regulate tobacco shoot and root growth. However, information about the application of CNS to crop plants, especially tobacco, is still limited. Based on differential expression analysis and trend analysis, several miRNAs (miRN21-Novel-5p-mature, miR319b-Probable-5p-mature, miR160a-c-Known/Probable-5p-mature and miR156c-e-Known-5p-mature/star) and their target genes, including transcription factors (TFs), are likely responsible for the effect of CNS on promoting the growth of tobacco plants. In addition, we characterized nine TFs [Nitab4.5_00001789g0110 (NbbZIP), Nitab4.5_00001176g0010 (NbMYB), Nitab4.5_0001366g0010 (NbNAC), Nitab4.5_00000895g013 (NbMYB), Nitab4.5_0001225g0120 (NbNAC), Nitab4.5_0000202g0230 (NbDof), Nitab4.5_0002241g0010 (NbMYB-related), Nitab4.5_0000410g0060 (NbTCP), and Nitab4.5_0000159g0180 (NbC2H2)] associated with the response of tobacco to CNS according to the differential expression analysis, TF‒gene interaction network analysis and weighted correlation network analysis (WGCNA). Taken together, the findings of our study help understand CNS-mediated growth promotion in tobacco plants. The identification of candidate miRNAs and genes will provide potential support for the use of CNS in tobacco.

摘要

纳米材料已被证明能促进作物生长、提高产量并增强抗逆性。碳纳米溶胶(CNS)作为一种纳米材料,被用于调控烟草地上部和根部的生长。然而,关于CNS在作物尤其是烟草上的应用信息仍然有限。基于差异表达分析和趋势分析,几种微小RNA(miRN21 - Novel - 5p - mature、miR319b - Probable - 5p - mature、miR160a - c - Known/Probable - 5p - mature和miR156c - e - Known - 5p - mature/star)及其靶基因,包括转录因子(TFs),可能是CNS促进烟草植株生长的作用机制。此外,根据差异表达分析、TF - 基因相互作用网络分析和加权基因共表达网络分析(WGCNA),我们鉴定了9个与烟草对CNS反应相关的转录因子[Nitab4.5_00001789g0110(NbbZIP)、Nitab4.5_00001176g0010(NbMYB)、Nitab4.5_0001366g0010(NbNAC)、Nitab4.5_00000895g013(NbMYB)、Nitab4.5_0001225g0120(NbNAC)、Nitab4.5_0000202g0230(NbDof)、Nitab4.5_0002241g0010(NbMYB - related)、Nitab4.5_0000410g0060(NbTCP)和Nitab4.5_0000159g0180(NbC2H2)]。综上所述,我们的研究结果有助于理解CNS介导的烟草植株生长促进作用。候选微小RNA和基因的鉴定将为CNS在烟草中的应用提供潜在支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/904e/11664839/67b1b41e4158/12870_2024_5992_Fig1_HTML.jpg

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