LEADER 01345nas 2200433 c 450 001 9910895092903321 005 20250513221315.0 035 $a(CKB)3790000000121632 035 $a(DE-599)ZDB2664514-2 035 $a(OCoLC)1030343301 035 $a(OCoLC)796252761 035 $a(DE-101)1022877259 035 $a(EXLCZ)993790000000121632 100 $a20120530a20099999 |y | 101 0 $ager 135 $aur||||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aStatistischer Bericht / Thüringer Landesamt für Statistik$hP$hI$iBruttoinlandsprodukt in Thüringen ... bis ... : Ergebnisse der 1. Fortschreibung .. 210 31$aErfurt$cTLS$d2009- 215 $aOnline-Ressource 225 0 $aZahlen, Daten, Fakten 300 $aErscheint ja?hrlich fu?r unterschiedliche Mehrjahreszeitra?ume 300 $aFortsetzung der Druck-Ausgabe 300 $aBestell-Nr. 15101 300 $aGesehen am 25.06.2018 517 $aStatistischer Bericht P 1 517 1 $aStatistischer Bericht / P / 1 608 $aZeitschrift$2gnd-content 608 $aStatistik$2gnd-content 676 $a310 801 0$b0027 801 1$bDE-101 801 2$b9999 906 $aJOURNAL 912 $a9910895092903321 996 $aStatistischer Bericht$94217603 997 $aUNINA LEADER 04957nam 22006493 450 001 9910760498703321 005 20221216161156.0 010 $a9781789245448 010 $a1789245443 010 $a9781789245455 010 $a1789245451 035 $a(CKB)4100000011977128 035 $a(MiAaPQ)EBC6658971 035 $a(Au-PeEL)EBL6658971 035 $a(OCoLC)1240826892 035 $a(NjHacI)994100000011977128 035 $a(Perlego)2707545 035 $a(EXLCZ)994100000011977128 100 $a20210901d2021 uy 0 101 0 $aeng 135 $aurcnu|||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aMolecular Breeding in Wheat, Maize and Sorghum $eStrategies for Improving Abiotic Stress Tolerance and Yield 205 $a1st ed. 210 1$aOxford :$cCAB International,$d2021. 210 4$d©2021. 215 $a1 online resource (652 pages) 311 08$a9781789245431 311 08$a1789245435 327 $aIntro -- Half Title -- Title -- Copyright Page -- Contents -- About the Editors -- Contributors -- Preface -- 1 Recent Understanding on Molecular Mechanisms of Plant Abiotic Stress Response and Tolerance -- 2 Breeding Strategies to Enhance Abiotic Stress Tolerance and Yield Improvement in Wheat, Maize and Sorghum -- 3 Recent Advancement of Molecular Breeding for Improving Salinity Tolerance in Wheat -- 4 Genomics and Molecular Physiology for Improvement of Drought Tolerance in Wheat -- 5 Molecular Breeding for Improving Heat Stress Tolerance in Wheat -- 6 Molecular Breeding for Improving Waterlogging Tolerance in Wheat -- 7 Molecular Breeding for Improving Aluminium Resistance in Wheat -- 8 Molecular Breeding for Enhancing Iron and Zinc Content in Wheat Grains -- 9 Recent Advancements of Molecular Breeding and Functional Genomics for Improving Nitrogen-, Phosphorus- and Potassium-Use Efficiencies in Wheat -- 10 Molecular Breeding for Improving Yield in Wheat: Recent Advances and Future Perspectives -- 11 Tools for Transforming Wheat Breeding: Genomic Selection, Rapid Generation Advance and Database-Based Decision Support -- 12 CRISPR-Mediated Gene Editing in Wheat for Abiotic Stress Tolerance -- 13 Application of Pangenomics for Wheat Molecular Breeding -- 14 Recent Advancement of Molecular Understanding for Combating Salinity Stress in Maize -- 15 Isolation of Genes/Quantitative Trait Loci for Drought Stress Tolerance in Maize -- 16 The Genetic Architecture and Breeding Towards Cold Tolerance in Maize: Review -- 17 Physiological and Molecular Mechanisms Underlying Excess Moisture Stress Tolerance in Maize: Molecular Breeding Opportunities to Increase Yield Potential -- 18 Recent Molecular Breeding Advances for Improving Aluminium Tolerance in Maize and Sorghum. 327 $a19 Physiological and Molecular Interventions for Improving Nitrogen-Use Efficiency in Maize -- 20 Recent Advancement in Molecular Breeding for Improving Nutrient-Use Efficiency in Maize -- 21 Molecular Breeding for Increasing Nutrition Quality in Maize: Recent Progress -- 22 Molecular Breeding for Improving Yield in Maize: Recent Advances and Future Perspectives -- 23 CRISPR-Mediated Genome Editing in Maize for Improved Abiotic Stress Tolerance -- 24 Molecular Breeding for Combating Salinity Stress in Sorghum: Progress and Prospects -- 25 Quantitative Trait Locus Mapping and Genetic Improvement to Strengthen Drought Tolerance in Sorghum -- 26 Improving Abiotic Stress Tolerance to Adapt Sorghum to Temperate Climatic Regions -- 27 Isolation of Quantitative Trait Loci/Gene(s) Conferring Cadmium Tolerance in Sorghum -- 28 Molecular Breeding for Increasing Micronutrient Content in Sorghum -- 29 Ideotype Breeding for Improving Yield in Sorghum: Recent Advances and Future Perspectives -- Index -- Cabi -- Back. 330 $aThis book covers the latest understanding of molecular and genetic bases of abiotic stress tolerance and yield improvement of wheat, maize and sorghum, to develop strategies for improved stress tolerance and enhanced crop productivity. 517 $aMolecular Breeding in Wheat, Maize and Sorghum 606 $aCorn$xNutrition 606 $aWheat$xMutation breeding 615 0$aCorn$xNutrition. 615 0$aWheat$xMutation breeding. 676 $a572.82 700 $aHossain$b Mohammad Anwar$0959145 701 $aAlam$b Mobashwer$01439770 701 $aSeneweera$b Saman$01439771 701 $aRakshit$b Sujay$01439772 701 $aHenry$b Robert$0726046 701 $aAcuna$b Andrea$01439773 701 $aAmjad ?Ali?$b Muh?ammad$01878488 701 $aAmalraj$b John$01439774 701 $aArgu?ello$b Mari?a$01439775 701 $aArora$b Arushi$01439776 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910760498703321 996 $aMolecular Breeding in Wheat, Maize and Sorghum$94495416 997 $aUNINA