Plant Small RNA in Food Crops
Plant Small RNA in Food Crops
Mo, Beixin; Guleria, Praveen; Kumar, Vineet
Elsevier Science & Technology
04/2023
634
Mole
Inglês
9780323917223
15 a 20 dias
Descrição não disponível.
Section 1: Basics
1. Introduction: Small RNA Biogenesis and Food crops
2. Small RNA identification and characterization: Techniques & Approaches
3. Small RNA identification from various food crops
Section 2: Recent advancements in small RNA mediated regulation of food crops
4. Small RNA mediated regulation of food crop germination
5. Small RNA regulates vegetative growth of food crops
6. Small RNA mediated regulation of food crops productivity
7. Importance of small RNA in secondary metabolism of food crops
8. Food crops grain development and reproductive stress tolerance: Role of Small RNA
9. Salt Stress and Small RNA
10. Small RNA and temperature stress tolerance
11. Drought tolerance in food crops: Role of small RNA
12. Regulation of biotic stress mediated pathogenesis in food crops by Small RNA
13. Beneficial food crop-microbial interaction: Role of small RNA
Section 3: Applications and Future scope
14. Food Crops Improvement: Comparative Biotechnological Approaches
15. Abiotic stress tolerant food crops through small RNA technology
16. Biotic stress tolerant food crops through small RNA technology
17. Scope and Future prospective of small RNA technology in food crop improvement and sustainability
1. Introduction: Small RNA Biogenesis and Food crops
2. Small RNA identification and characterization: Techniques & Approaches
3. Small RNA identification from various food crops
Section 2: Recent advancements in small RNA mediated regulation of food crops
4. Small RNA mediated regulation of food crop germination
5. Small RNA regulates vegetative growth of food crops
6. Small RNA mediated regulation of food crops productivity
7. Importance of small RNA in secondary metabolism of food crops
8. Food crops grain development and reproductive stress tolerance: Role of Small RNA
9. Salt Stress and Small RNA
10. Small RNA and temperature stress tolerance
11. Drought tolerance in food crops: Role of small RNA
12. Regulation of biotic stress mediated pathogenesis in food crops by Small RNA
13. Beneficial food crop-microbial interaction: Role of small RNA
Section 3: Applications and Future scope
14. Food Crops Improvement: Comparative Biotechnological Approaches
15. Abiotic stress tolerant food crops through small RNA technology
16. Biotic stress tolerant food crops through small RNA technology
17. Scope and Future prospective of small RNA technology in food crop improvement and sustainability
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
Abiotic stresses; Abscisic acid; Advanced genomics tools; Agriculture; Angiosperm evolution; Argonaute (AGO); Biotechnology; Biotic stress; Challenges; Circular RNA (circRNA); Climate change; Cognate target genes; CRISPR; Crop biotechnology; Crop development; Crop improvement; Crop protection; Degradation; Degradome; Dicer-like (DCL); Disease management; Disease resistant; Drought stress; Epigenetic regulations; Epigenetics; Fertility; Field crops; Food crop; Food crops; Food quality; Food safety; Food security; Fruit development; Gene editing; Gene expression; Gene modulators; Gene regulation; Gene regulatory network; Gene silencing; Genetic engineering; Genomics; GMO; Growth; Horticultural crops; Host-microbe interaction; Long non-coding RNA; Mechanisms; MicroRNA; MicroRNA (miRNA); MicroRNAs; MicroRNAs (miRNAs); microRNAs (miRNAs); miRBase; miRNA; miRNAs; Molecular mechanism
Section 1: Basics
1. Introduction: Small RNA Biogenesis and Food crops
2. Small RNA identification and characterization: Techniques & Approaches
3. Small RNA identification from various food crops
Section 2: Recent advancements in small RNA mediated regulation of food crops
4. Small RNA mediated regulation of food crop germination
5. Small RNA regulates vegetative growth of food crops
6. Small RNA mediated regulation of food crops productivity
7. Importance of small RNA in secondary metabolism of food crops
8. Food crops grain development and reproductive stress tolerance: Role of Small RNA
9. Salt Stress and Small RNA
10. Small RNA and temperature stress tolerance
11. Drought tolerance in food crops: Role of small RNA
12. Regulation of biotic stress mediated pathogenesis in food crops by Small RNA
13. Beneficial food crop-microbial interaction: Role of small RNA
Section 3: Applications and Future scope
14. Food Crops Improvement: Comparative Biotechnological Approaches
15. Abiotic stress tolerant food crops through small RNA technology
16. Biotic stress tolerant food crops through small RNA technology
17. Scope and Future prospective of small RNA technology in food crop improvement and sustainability
1. Introduction: Small RNA Biogenesis and Food crops
2. Small RNA identification and characterization: Techniques & Approaches
3. Small RNA identification from various food crops
Section 2: Recent advancements in small RNA mediated regulation of food crops
4. Small RNA mediated regulation of food crop germination
5. Small RNA regulates vegetative growth of food crops
6. Small RNA mediated regulation of food crops productivity
7. Importance of small RNA in secondary metabolism of food crops
8. Food crops grain development and reproductive stress tolerance: Role of Small RNA
9. Salt Stress and Small RNA
10. Small RNA and temperature stress tolerance
11. Drought tolerance in food crops: Role of small RNA
12. Regulation of biotic stress mediated pathogenesis in food crops by Small RNA
13. Beneficial food crop-microbial interaction: Role of small RNA
Section 3: Applications and Future scope
14. Food Crops Improvement: Comparative Biotechnological Approaches
15. Abiotic stress tolerant food crops through small RNA technology
16. Biotic stress tolerant food crops through small RNA technology
17. Scope and Future prospective of small RNA technology in food crop improvement and sustainability
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
Abiotic stresses; Abscisic acid; Advanced genomics tools; Agriculture; Angiosperm evolution; Argonaute (AGO); Biotechnology; Biotic stress; Challenges; Circular RNA (circRNA); Climate change; Cognate target genes; CRISPR; Crop biotechnology; Crop development; Crop improvement; Crop protection; Degradation; Degradome; Dicer-like (DCL); Disease management; Disease resistant; Drought stress; Epigenetic regulations; Epigenetics; Fertility; Field crops; Food crop; Food crops; Food quality; Food safety; Food security; Fruit development; Gene editing; Gene expression; Gene modulators; Gene regulation; Gene regulatory network; Gene silencing; Genetic engineering; Genomics; GMO; Growth; Horticultural crops; Host-microbe interaction; Long non-coding RNA; Mechanisms; MicroRNA; MicroRNA (miRNA); MicroRNAs; MicroRNAs (miRNAs); microRNAs (miRNAs); miRBase; miRNA; miRNAs; Molecular mechanism