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RNA-based technologies for functional genomics in plants / Guiliang Tang, Sachin Teotia, Xiaoqing Tang, Deepali Singh, editors.

Contributor(s): Material type: TextTextSeries: Concepts and strategies in plant sciencesDescription: 1 online resourceISBN:
  • 9783030649944
  • 3030649946
Subject(s): DDC classification:
  • 581.35 23 TAN
LOC classification:
  • QK981
Online resources:
Contents:
Artificial Small RNAs for Functional Genomics in Plants -- Use of mRNA-interactome capture for generating novel insights into plant RNA biology -- Improving nutrient value of crops: Applications of RNAi in targeting plant metabolic pathways -- Utilizing RNA-based approaches to understand plant-insect interactions.
Summary: This book offers a unique and comprehensive overview of key RNA-based technologies, as well as their development and applications for the functional genomics of plant coding and non-coding genes. It focuses on the latest as well as classical RNA-based techniques used for studies on small RNAs, long non-coding RNAs and protein-coding genes. These techniques chiefly focus on target mimics (TMs) and short tandem target mimics (STTMs) for small RNAs, and artificial microRNAs (amiRNAs), RNA interference (RNAi) and CRISPR/Cas for genes. Furthermore, the book discusses the latest trends in the field and various modifications of the above-mentioned approaches, and explores how these RNA-based technologies have been developed, applied and validated as essential technologies in plant functional genomics. RNA-based technologies, their mechanisms of action, their advantages and disadvantages, and insights into the further development and applications of these technologies in plants are discussed. These techniques will enable the users to functionally characterize genes and small RNAs through silencing, overexpression and editing. Gathering contributions by globally respected experts, the book will appeal to students, teachers and scientists in academia and industry who are interested in horticulture, genetics, pathology, entomology, physiology, molecular genetics and breeding, in vitro culture & genetic engineering, and functional genomics. .
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Item type Current library Collection Call number Status Date due Barcode
General Books General Books CUTN Central Library Sciences Non-fiction 581.35 TAN (Browse shelf(Opens below)) Available 46316

Artificial Small RNAs for Functional Genomics in Plants -- Use of mRNA-interactome capture for generating novel insights into plant RNA biology -- Improving nutrient value of crops: Applications of RNAi in targeting plant metabolic pathways -- Utilizing RNA-based approaches to understand plant-insect interactions.

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This book offers a unique and comprehensive overview of key RNA-based technologies, as well as their development and applications for the functional genomics of plant coding and non-coding genes. It focuses on the latest as well as classical RNA-based techniques used for studies on small RNAs, long non-coding RNAs and protein-coding genes. These techniques chiefly focus on target mimics (TMs) and short tandem target mimics (STTMs) for small RNAs, and artificial microRNAs (amiRNAs), RNA interference (RNAi) and CRISPR/Cas for genes. Furthermore, the book discusses the latest trends in the field and various modifications of the above-mentioned approaches, and explores how these RNA-based technologies have been developed, applied and validated as essential technologies in plant functional genomics. RNA-based technologies, their mechanisms of action, their advantages and disadvantages, and insights into the further development and applications of these technologies in plants are discussed. These techniques will enable the users to functionally characterize genes and small RNAs through silencing, overexpression and editing. Gathering contributions by globally respected experts, the book will appeal to students, teachers and scientists in academia and industry who are interested in horticulture, genetics, pathology, entomology, physiology, molecular genetics and breeding, in vitro culture & genetic engineering, and functional genomics. .

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