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Long non-coding RNAs in plants roles in development and stress /

The growth of human population has increased the demand for improved yield and quality of crops and horticultural plants. However, plant productivity continues to be threatened by stresses such as heat, cold, drought, heavy metals, UV radiations, bacterial and fungal pathogens, and insect pests. Lon...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Formato: Electrónico eBook
Idioma:Inglés
Publicado: [S.l.] : Elsevier Academic Press, 2021.
Temas:
Acceso en línea:Texto completo

MARC

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245 0 0 |a Long non-coding RNAs in plants  |h [electronic resource] :  |b roles in development and stress /  |c edited by Santosh Kumar Upadhyay. 
260 |a [S.l.] :  |b Elsevier Academic Press,  |c 2021. 
300 |a 1 online resource 
336 |a text  |2 rdacontent 
336 |a still image  |2 rdacontent 
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505 0 |a Front Cover -- Long Noncoding RNAs in Plants: Roles in Development and Stress -- Copyright -- Dedication -- Contents -- Contributors -- About the editor -- Preface -- Acknowledgments -- Chapter 1 An overview of long noncoding RNA in plants -- 1.1 Introduction -- 1.2 Classification of lncRNAs -- 1.3 Mode of action of lncRNAs -- 1.4 Discovery of lncRNAs -- 1.5 Identification of lncRNAs in plants and their role in stress response -- 1.6 Databases for plant lncRNA identification -- 1.7 Biological roles of lncRNAs in plants -- 1.7.1 Role of plant lncRNAs in the regulation of flowering 
505 8 |a 1.7.2 Role of plant lncRNAs in RNA-directed DNA methylation -- 1.7.3 Role of plant lncRNAs as miRNA target mimics -- 1.7.4 Role of plant lncRNAs in photo morphogenesis -- 1.7.5 Role of plant lncRNAs in alternative splicing -- 1.7.6 Role of plant lncRNAs in modulation of chromatin loop dynamics -- 1.8 Conclusions and future perspectives -- Acknowledgments -- References -- Chapter 2 Discovery and history of long noncoding RNAs in plants -- 2.1 Introduction -- 2.2 First breakthrough in the discovery of lncRNAs -- 2.3 LncRNAs in algae -- 2.4 LncRNAs in bryophytes -- 2.5 LncRNAs in pteridophytes 
505 8 |a 2.6 LncRNAs in gymnosperms -- 2.7 LncRNAs in angiosperms -- 2.7.1 Dicotyledonous lncRNAs -- 2.7.2 Monocotyledonous lncRNAs -- 2.8 Conclusions and perspectives -- Acknowledgments -- References -- Chapter 3 Databases and tools for long noncoding RNAs -- 3.1 Introduction -- 3.2 Overview of some plant-specific tools and programs to predict lncRNAs -- 3.2.1 The coding potential calculator (CPC) -- 3.2.2 CPAT (coding potential assessment tool) -- 3.2.3 CNCI (coding-noncoding index) -- 3.2.4 PLIT (plant LncRNA and identification tool) 
505 8 |a 3.2.5 PLncPRO (plant long noncoding RNA prediction by random forests) -- 3.3 Plant-specific long noncoding RNA databases -- 3.3.1 NONCODEv5 -- 3.3.2 EVLncRNAs -- 3.3.3 CANTATAdb 2.0 -- 3.3.4 PLncDB (plant long noncoding RNA database) -- 3.3.5 GREENC (green noncoding database) -- 3.3.6 PlncRNAdb (plant long noncoding RNA database) -- 3.3.7 PNRD (a plant noncoding RNA database) -- 3.4 Conclusions -- Acknowledgments -- References -- Chapter 4 Role of lncRNAs in wheat and its wild relatives -- 4.1 Introduction -- 4.2 Conservation of lncRNAs among the wheat and its relative 
505 8 |a 4.3 LncRNAs in growth and development -- 4.4 Biotic stress-responsive lncRNAs -- 4.5 Abiotic stress-responsive lncRNAs -- 4.6 Role of co-expressing lncRNAs -- 4.7 LncRNA-miRNA-mediated gene regulation -- 4.8 Conclusions -- Acknowledgments -- References -- Chapter 5 Recent advancements in long noncoding RNA-mediated stress responses in rice -- 5.1 Introduction -- 5.2 Identification of long noncoding RNA from rice -- 5.3 Diverse functions of long noncoding RNA in rice -- 5.3.1 Long noncoding RNA association in rice development -- 5.3.2 Long noncoding RNA functioning under various stresses 
588 0 |a Online resource; title from PDF title page (EBSCO, viewed January 7, 2021). 
520 |a The growth of human population has increased the demand for improved yield and quality of crops and horticultural plants. However, plant productivity continues to be threatened by stresses such as heat, cold, drought, heavy metals, UV radiations, bacterial and fungal pathogens, and insect pests. Long noncoding RNAs are associated with various developmental pathways, regulatory systems, abiotic and biotic stress responses and signaling, and can provide an alternative strategy for stress management in plants. Long Noncoding RNAs in Plants: Roles in development and stress provides the most recent advances in LncRNAs, including identification, characterization, and their potential applications and uses. Introductory chapters include the basic features and brief history of development of lncRNAs studies in plants. The book then provides the knowledge about the lncRNAs in various important agricultural and horticultural crops such as cereals, legumes, fruits, vegetables, and fiber crop cotton, and their roles and applications in abiotic and biotic stress management. 
650 0 |a Plant genetics. 
650 0 |a Non-coding RNA. 
650 6 |a G�en�etique v�eg�etale.  |0 (CaQQLa)201-0017097 
650 6 |a ARN non codants.  |0 (CaQQLa)000265510 
650 7 |a Non-coding RNA  |2 fast  |0 (OCoLC)fst01741020 
650 7 |a Plant genetics  |2 fast  |0 (OCoLC)fst01065459 
776 0 8 |i Print version:  |z 9780128214633 
776 0 8 |i Print version:  |z 012821452X  |z 9780128214527  |w (OCoLC)1152069670 
856 4 0 |u https://sciencedirect.uam.elogim.com/science/book/9780128214527  |z Texto completo