All systems operational
Q2 2024

Genome-wide profiling of novel conserved Zea mays microRNAs along with their key biological, molecular and cellular targets and validation using an RT-PCR platform

Abdul Baqi · Sami Ullah · Muhammad Ayub · Muhammad Zafar Saleem · Ghulam Mustafa Khan · Asad Ullah
10.33640/2405-609x.3336 388 Views 3 Citations
3
Citations
388
Views
Abstract

MicroRNAs (miRNAs), which are typically non-coding RNAs that start off as endogenous molecules and regulate post-transcriptional levels of gene expression by mRNA degradation or translational repression. They are 18–26 nucleotides long, evolutionarily conserved and essential for predicting novel miRNAs in a variety of plants. Maize (Zea mays) is a significant food and forage crop in the globe today. In the present study, many maize miRNAs have been found to be associated with both plant development and responses to stress. In this study, 66 unique conserved maize miRNAs from 65 different miRNA families were predicted using several genomics-based methods and then verified using RT-PCR after the preparation of randomly chosen primers. Accordingly, using the psRNA Target method, 10294 distinct protein targets of these recently expected miRNAs have been attained. These targets contain 55 specific GO terms that have important biological, cellular and molecular targets. Likewise, the newly found maize miRNAs like zma-miR6224a is engaged in the reproduction process. Several novel maize miRNAs, such as zma-miR11339, 2922 and 6253 function as regulators and target genes that influence ageing, chemotaxis and karyogamy respectively. The newly predicted maize miRNAs including zma-miR1439 and 9774 are intended to inhibit the activities of voltage-gated ion channels and carbon-sulfur lyase respectively. Therefore, the results of the novel maize miRNAs target a variety of important genes that aid in controlling the environment for maize to improve crop output.

Cite this Article (APA)
Abdul, B., Sami, U., Muhammad, A., Muhammad, Z. S., Ghulam, M. K., Asad, U. (2024). Genome-wide profiling of novel conserved Zea mays microRNAs along with their key biological, molecular and cellular targets and validation using an RT-PCR platform. Karbala International Journal of Modern Science. https://doi.org/10.33640/2405-609x.3336
Related Papers
YOLOv8-CAB: Improved YOLOv8 for Real-time object detection
Moahaimen Talib; Ahmed H. Y. Al-Noori; Jameelah Suad · 2024
68
cites
392
Analysing an imbalanced stroke prediction dataset using machine learning techniques
Viswapriya Subramaniyam Elangovan; Rajeswari Devarajan; Osamah I. Khalaf; Mhd Sa · 2024
18
cites
390
Quercetin as an anticancer candidate for glioblastoma multiforme by targeting AKT1, MMP9, ABCB1, and…
Muhammad Hermawan Widyananda; Setyaki Kevin Pratama; Arif Nur Muhammad Ansori; Y · 2023
18
cites
387
Treatment of Oil Refinery Wastewater Polluted by Heavy Metal Ions via Adsorption Technique using Non…
Salem Jawad Alhamd; Mohammed Nsaif Abbas; Mehrdad Manteghian; Thekra Atta Ibrahi · 2024
15
cites
385
Computational Investigation of the Unveils NSD2 Inhibition Potential of Berberis vulgaris, Sambucus …
Supriyo Saha; Vanshita Gupta; Ahad Hossain; Prinsa Prinsa; Jannatul Ferdous; Kir · 2025
14
cites
387
Access
View Full Text via DOI
Published in
ISSN 2405-609X
Quartile Q2
AMS Score 93
Field Agriculture & Food
Publisher University of Kerbala - KIJOMS
Country 🇮🇶 Iraq
View Journal Profile →
Authors
Publication Details
Year 2024
Language English
Added 31 Jul 2026