Skip to main content
Erschienen in:
Buchtitelbild

2024 | OriginalPaper | Buchkapitel

Application of Mutagenesis in Food Production and Sustainable Development

verfasst von : Made Pharmawati

Erschienen in: Plant Mutagenesis

Verlag: Springer Nature Switzerland

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Induced mutations play an important role in increasing the genetic diversity of desirable traits in various edible and agricultural plants. It is useful for the development of novel kinds with enhanced agronomic traits, such as the greater capacity for coping with biotic and abiotic stress and improving the nutritional quality of food crops. There are numerous plant-induced mutagenesis techniques available including physical mutagens, such as UV, X-rays, and gamma rays, as well as chemical mutagens, like sodium azide, methyl methanesulfonate (MMS), or ethyl methanesulfonate (EMS). Agrobacterium and transposon-based chromosomal integration are further biological mutagens. Induced mutations contribute significantly to the development of sustainable agricultural systems for food security and economic growth. Rice, barley, chrysanthemum, wheat, soybean, and maize are the six top plants with a high number of mutant varieties. The creation of new varieties as a result of induced mutation has increased genetic diversity. This study highlights the recent advances in a field-induced mutation that enhance the potential of plant germplasm.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Literatur
Zurück zum Zitat Arumingtyas EL, Atiaturrochmah A, Kusnadi J (2023) Confirmation of mutation and genetic stability of the M4 generation of chili pepper’s (Capsicum frutescens L.) Ethyl Methane Sulfonate (EMS) mutant based on morphological, physiological and molecular characters. Biodiversitas 24:531–538 Arumingtyas EL, Atiaturrochmah A, Kusnadi J (2023) Confirmation of mutation and genetic stability of the M4 generation of chili pepper’s (Capsicum frutescens L.) Ethyl Methane Sulfonate (EMS) mutant based on morphological, physiological and molecular characters. Biodiversitas 24:531–538
Zurück zum Zitat Awan MA (1991) Use of induced mutations for crop improvement in Pakistan. Plant mutation breeding for crop improvement, vol 1. IAEA, Vienna, pp 67–72 Awan MA (1991) Use of induced mutations for crop improvement in Pakistan. Plant mutation breeding for crop improvement, vol 1. IAEA, Vienna, pp 67–72
Zurück zum Zitat Colbert T, Till BJ, Tompa R, Reynolds S, Steine MN, Yeung AT, McCallum CM, Comai L, Henikoff S (2001) High-throughput screening for induced point mutations. Plant Physiol 126:480–484CrossRef Colbert T, Till BJ, Tompa R, Reynolds S, Steine MN, Yeung AT, McCallum CM, Comai L, Henikoff S (2001) High-throughput screening for induced point mutations. Plant Physiol 126:480–484CrossRef
Zurück zum Zitat Dahmani-Mardas F, Troadec C, Boualem A, Lévêque S, Alsadon AA, Aldoss AA, Dogimont C, Bendahmane A (2010) Engineering melon plants with improved fruit shelf life using the TILLING approach. PLoS One 5(2). Article e15776 Dahmani-Mardas F, Troadec C, Boualem A, Lévêque S, Alsadon AA, Aldoss AA, Dogimont C, Bendahmane A (2010) Engineering melon plants with improved fruit shelf life using the TILLING approach. PLoS One 5(2). Article e15776
Zurück zum Zitat Dempewolf H, Baute G, Anderson J, Kilian B, Smith C, Guarino L (2017) Past and future use of wild relatives in crop breeding. Crop Sci 57:1070–1082CrossRef Dempewolf H, Baute G, Anderson J, Kilian B, Smith C, Guarino L (2017) Past and future use of wild relatives in crop breeding. Crop Sci 57:1070–1082CrossRef
Zurück zum Zitat Dyulgerova B, Dyulgerov N (2020) Grain yield and yield related traits of sodium azide induced barley mutant lines. J Central Eur Agric 21(1):83–91CrossRef Dyulgerova B, Dyulgerov N (2020) Grain yield and yield related traits of sodium azide induced barley mutant lines. J Central Eur Agric 21(1):83–91CrossRef
Zurück zum Zitat Futsuhara Y (1968) Breeding of a new rice variety Reimei by gamma-ray irradiation. Gamma Field Symposia 7:87–109 Futsuhara Y (1968) Breeding of a new rice variety Reimei by gamma-ray irradiation. Gamma Field Symposia 7:87–109
Zurück zum Zitat Ha B-K, Lee KJ, Velusamy V, Kim J-B, Kim SH, Ahn J-W, Si-Yong Kang S-Y, Kim DS (2014) Improvement of soybean through radiation-induced mutation breeding techniques in Korea. Plant Genet Resour: Charact Util 12(S1):S54–S57CrossRef Ha B-K, Lee KJ, Velusamy V, Kim J-B, Kim SH, Ahn J-W, Si-Yong Kang S-Y, Kim DS (2014) Improvement of soybean through radiation-induced mutation breeding techniques in Korea. Plant Genet Resour: Charact Util 12(S1):S54–S57CrossRef
Zurück zum Zitat Hailu MG, Wiendi NMA, Dinarti D (2020) Increasing ploidy level of garlic (Allium sativum L.) “Tawangmangu Baru” in-vitro using colchicine. J Trop Crop Sci 7(3):128–142 Hailu MG, Wiendi NMA, Dinarti D (2020) Increasing ploidy level of garlic (Allium sativum L.) “Tawangmangu Baru” in-vitro using colchicine. J Trop Crop Sci 7(3):128–142
Zurück zum Zitat Jankowicz-Cieslak J, Goessnitzer F, Datta S, Viljoen A, Ingelbrecht I, Till BJ (2021) Induced mutations for generating bananas resistant to fusarium wilt tropical race 4. In: Sivasankar S (Ed) Mutation breeding, genetic diversity and crop adaptation to climate change. International Atomic Energy Agency Jankowicz-Cieslak J, Goessnitzer F, Datta S, Viljoen A, Ingelbrecht I, Till BJ (2021) Induced mutations for generating bananas resistant to fusarium wilt tropical race 4. In: Sivasankar S (Ed) Mutation breeding, genetic diversity and crop adaptation to climate change. International Atomic Energy Agency
Zurück zum Zitat Juliandari RR, Mastuti R, Arumingtyas EL (2017) Microsatellite marker for genetic variation analysis in local chili pepper (Capsicum frutescens L.) induced by Ethyl Methane Sulfonate (EMS). J Trop Life Sci 9(2):189–194 Juliandari RR, Mastuti R, Arumingtyas EL (2017) Microsatellite marker for genetic variation analysis in local chili pepper (Capsicum frutescens L.) induced by Ethyl Methane Sulfonate (EMS). J Trop Life Sci 9(2):189–194
Zurück zum Zitat Kakar K, Xuan TD, Quan NV, Wafa IK, Tran H-D, Khanh TD, Dat TD (2019a) Efficacy of N-methyl-N-nitrosourea (MNU) mutation on enhancing the yield and quality of rice. Agriculture 9:212CrossRef Kakar K, Xuan TD, Quan NV, Wafa IK, Tran H-D, Khanh TD, Dat TD (2019a) Efficacy of N-methyl-N-nitrosourea (MNU) mutation on enhancing the yield and quality of rice. Agriculture 9:212CrossRef
Zurück zum Zitat Kakar K, Xuan TD, Quan NV, Wafa IK, Tran H-D, Khanh TD, Dat TD (2019b) Efficacy of N-Methyl-N-Nitrosourea mutation on physicochemical properties, phytochemicals, and momilactones A and B in Rice. Sustainability 11:6862CrossRef Kakar K, Xuan TD, Quan NV, Wafa IK, Tran H-D, Khanh TD, Dat TD (2019b) Efficacy of N-Methyl-N-Nitrosourea mutation on physicochemical properties, phytochemicals, and momilactones A and B in Rice. Sustainability 11:6862CrossRef
Zurück zum Zitat Kumar V, Chauhan A, Shinde AK, Kunkerkar RL, Sharma D, Das BK (2021) Mutation breeding in rice for sustainable crop production and food security in India. In: Sivasankar S, Ellis N, Jankuloski L, Ingelbrecht I (eds) Mutation breeding, genetic diversity and crop adaptation to climate change. CAB International Kumar V, Chauhan A, Shinde AK, Kunkerkar RL, Sharma D, Das BK (2021) Mutation breeding in rice for sustainable crop production and food security in India. In: Sivasankar S, Ellis N, Jankuloski L, Ingelbrecht I (eds) Mutation breeding, genetic diversity and crop adaptation to climate change. CAB International
Zurück zum Zitat Kurowska M, Daszkowska-Golec A, Gruszka D, Marzec M, Szurman M, Szarejko I, Maluszynski M (2011) TILLING—a shortcut in functional genomics. J Appl Genet Kurowska M, Daszkowska-Golec A, Gruszka D, Marzec M, Szurman M, Szarejko I, Maluszynski M (2011) TILLING—a shortcut in functional genomics. J Appl Genet
Zurück zum Zitat Lal M, Munda S, Dutta S, Pandey SK (2020) Identification of a novel germplasm (Jor Lab L-9) of lemon grass (Cymbopogon khasianus) rich in methyl eugenol. Crop Breed. App Biotechnol 20(3):e320720315 Lal M, Munda S, Dutta S, Pandey SK (2020) Identification of a novel germplasm (Jor Lab L-9) of lemon grass (Cymbopogon khasianus) rich in methyl eugenol. Crop Breed. App Biotechnol 20(3):e320720315
Zurück zum Zitat Lee S, Costanzo S, Jia Y (2012) The structure and regulation of genes and consequences of genetic mutations. In: Shu QY, Forster BP, Nakagawa H (eds) Plant mutation breeding and biotechnology. CAB International and FAO, Cambridge, pp 31–45CrossRef Lee S, Costanzo S, Jia Y (2012) The structure and regulation of genes and consequences of genetic mutations. In: Shu QY, Forster BP, Nakagawa H (eds) Plant mutation breeding and biotechnology. CAB International and FAO, Cambridge, pp 31–45CrossRef
Zurück zum Zitat Lenawaty DY, Sukma D, Syukur M, Suprapta DN, Nurcholis W, Aisyah SI (2022) Increasing the diversity of marigold (Tagetes sp.) by acute and chronic chemical induced mutation of EMS (Ethyl Methane Sulfonate). Biodiversitas 23:1399–1407CrossRef Lenawaty DY, Sukma D, Syukur M, Suprapta DN, Nurcholis W, Aisyah SI (2022) Increasing the diversity of marigold (Tagetes sp.) by acute and chronic chemical induced mutation of EMS (Ethyl Methane Sulfonate). Biodiversitas 23:1399–1407CrossRef
Zurück zum Zitat Liu R, Gao C, Jin J, Wang Y, Jin X, Ma H, Zhang Y, Zhang H, Qi B, Xu J (2022) Induction and identification of tetraploids of pear plants (Pyrus bretschneideri and Pyrus betulaefolia). Sci Hort 304:111322CrossRef Liu R, Gao C, Jin J, Wang Y, Jin X, Ma H, Zhang Y, Zhang H, Qi B, Xu J (2022) Induction and identification of tetraploids of pear plants (Pyrus bretschneideri and Pyrus betulaefolia). Sci Hort 304:111322CrossRef
Zurück zum Zitat Lundqvist U, Franckowiak JD, Forsterc BP (2012) Mutation catagories. In: Shu QY, Forster BP, Nakagawa H (eds) Plant mutation breeding and biotechnology. CAB International and FAO, Cambridge, pp 47–55CrossRef Lundqvist U, Franckowiak JD, Forsterc BP (2012) Mutation catagories. In: Shu QY, Forster BP, Nakagawa H (eds) Plant mutation breeding and biotechnology. CAB International and FAO, Cambridge, pp 47–55CrossRef
Zurück zum Zitat Manghwar H, Lindsey K, Zhang X, Jin S (2019) CRISPR/Cas system: recent advances and future prospects for genome editing. Trends Plant Sci 24(12):1102–1125 Manghwar H, Lindsey K, Zhang X, Jin S (2019) CRISPR/Cas system: recent advances and future prospects for genome editing. Trends Plant Sci 24(12):1102–1125
Zurück zum Zitat Manzila I, Priyatno TP, Nugroho K, Terryana RT, Lestari P, Hidayat SH (2020) Molecular and morphological characterization of EMS-induced chili pepper mutants resistant to Chili veinal mottle virüs. Biodiversitas 21(4):1448–1457CrossRef Manzila I, Priyatno TP, Nugroho K, Terryana RT, Lestari P, Hidayat SH (2020) Molecular and morphological characterization of EMS-induced chili pepper mutants resistant to Chili veinal mottle virüs. Biodiversitas 21(4):1448–1457CrossRef
Zurück zum Zitat Manzoor A, Ahmad T, Bashir MA, Hafiz IA, Silvestri C (2019) Studies on colchicine induced chromosome doubling for enhancement of quality traits in ornamental plants. Plants (basel) 8(7):194CrossRef Manzoor A, Ahmad T, Bashir MA, Hafiz IA, Silvestri C (2019) Studies on colchicine induced chromosome doubling for enhancement of quality traits in ornamental plants. Plants (basel) 8(7):194CrossRef
Zurück zum Zitat McClintock B (1953) Induction of instability at selected loci in maize. Genetics 38(6):579–599CrossRef McClintock B (1953) Induction of instability at selected loci in maize. Genetics 38(6):579–599CrossRef
Zurück zum Zitat Minoia S, Petrozza A, D’Onofrio O, Piron F, Mosca G, Sozio G, Cellini F, Bendahmane A, Carriero F (2010) A new mutant genetic resource for tomato crop improvement by TILLING technology. BMC Res Notes 2010(3):69CrossRef Minoia S, Petrozza A, D’Onofrio O, Piron F, Mosca G, Sozio G, Cellini F, Bendahmane A, Carriero F (2010) A new mutant genetic resource for tomato crop improvement by TILLING technology. BMC Res Notes 2010(3):69CrossRef
Zurück zum Zitat Mizuno Y, Okamoto S, Hara M, Mizoguchi T (2014) EMS mutagenesis and characterization of Brassica rapa mutants. Plant Biotechnol 31(2) Mizuno Y, Okamoto S, Hara M, Mizoguchi T (2014) EMS mutagenesis and characterization of Brassica rapa mutants. Plant Biotechnol 31(2)
Zurück zum Zitat Nakagawa H, Kato H (2017) Induced mutations for food and energy security: challenge of inducing unique mutants for new cultivars and molecular research. Bull NARO Crop Sci 1:33–124 Nakagawa H, Kato H (2017) Induced mutations for food and energy security: challenge of inducing unique mutants for new cultivars and molecular research. Bull NARO Crop Sci 1:33–124
Zurück zum Zitat Nakatsuka T, Nishihara M, Mishiba K, Hirano H, Yamamura S (2006) Two different transposable elements inserted in flavonoid 3′,5′-hydroxylase gene contribute to pink flower coloration in Gentiana scabra. Mol Genet Genom 275:231–241CrossRef Nakatsuka T, Nishihara M, Mishiba K, Hirano H, Yamamura S (2006) Two different transposable elements inserted in flavonoid 3′,5′-hydroxylase gene contribute to pink flower coloration in Gentiana scabra. Mol Genet Genom 275:231–241CrossRef
Zurück zum Zitat Nilahayati N, Nazimah N, Handayani RS, Syahputra J, Rizky M (2022) Agronomic diversity of several soybean putative mutant lines resulting from gamma-ray irradiation in M6 generation. Nurantara Biosci 14(1):34–39 Nilahayati N, Nazimah N, Handayani RS, Syahputra J, Rizky M (2022) Agronomic diversity of several soybean putative mutant lines resulting from gamma-ray irradiation in M6 generation. Nurantara Biosci 14(1):34–39
Zurück zum Zitat Nitasaka E (2003) Insertion of an En/Spm-related transposable element into a floral homeotic gene DUPLICATED causes a double flower phenotype in the Japanese morning glory. Plant J 36:522–531CrossRef Nitasaka E (2003) Insertion of an En/Spm-related transposable element into a floral homeotic gene DUPLICATED causes a double flower phenotype in the Japanese morning glory. Plant J 36:522–531CrossRef
Zurück zum Zitat OlaOlorun BM, Shimelis H, Laing M, Mathew I (2021) Development of wheat (Triticum aestivum L.) populations for drought tolerance and improved biomass allocation through Ethyl Methanesulphonate mutagenesis. Front Agron 3 OlaOlorun BM, Shimelis H, Laing M, Mathew I (2021) Development of wheat (Triticum aestivum L.) populations for drought tolerance and improved biomass allocation through Ethyl Methanesulphonate mutagenesis. Front Agron 3
Zurück zum Zitat Park K-I, Ishikawa N, Morita Y, Choi J-D, Hoshino A, Iida S (2007) BHLH regulatory gene in the common morning glory, Ipomoea purpurea, controls anthocyanin biosynthesis in flowers, proanthocyanidin and phytomelanin pigmentation in seeds, and seed trichome formation. Plant J 49:641–654CrossRef Park K-I, Ishikawa N, Morita Y, Choi J-D, Hoshino A, Iida S (2007) BHLH regulatory gene in the common morning glory, Ipomoea purpurea, controls anthocyanin biosynthesis in flowers, proanthocyanidin and phytomelanin pigmentation in seeds, and seed trichome formation. Plant J 49:641–654CrossRef
Zurück zum Zitat Peiris R, Wickramasinghe TK, Indrasena SP (2008) M 127 A promising tomato variety developed through induced mutation technique. In: Shu QY (ed) Induced plant mutations in the genomics era. Proceedings of an international joint FAO/IAEA symposium. Rome: Food and Agriculture Orga-nization of the United Nations, pp 379–380 Peiris R, Wickramasinghe TK, Indrasena SP (2008) M 127 A promising tomato variety developed through induced mutation technique. In: Shu QY (ed) Induced plant mutations in the genomics era. Proceedings of an international joint FAO/IAEA symposium. Rome: Food and Agriculture Orga-nization of the United Nations, pp 379–380
Zurück zum Zitat Penna S, Vitthal SB, Yadav PV (2012) In vitro mutagenesis and selection in plant tissue cultures and their prospects for crop improvement. Bioremediation Biodiversity Bioavalability (Special Issue 1):6–14 Penna S, Vitthal SB, Yadav PV (2012) In vitro mutagenesis and selection in plant tissue cultures and their prospects for crop improvement. Bioremediation Biodiversity Bioavalability (Special Issue 1):6–14
Zurück zum Zitat Pharmawati M, Wrasiati LP, Wijaya IMAS, Defiani R (2018) Morphological changes of Capsicum annuum L. induced by ethyl methanesulfonate (EMS) at M2 generation. Curr Agric Res J 6(1):1–7 Pharmawati M, Wrasiati LP, Wijaya IMAS, Defiani R (2018) Morphological changes of Capsicum annuum L. induced by ethyl methanesulfonate (EMS) at M2 generation. Curr Agric Res J 6(1):1–7
Zurück zum Zitat Roychowdhury R, Tah J (2013) Mutagenesis a potential approachfor crop improvement. In: Hakeem KR, Ahmad P, Ozturk M (eds) Crop improvement: new approaches and modern techniques. Springer, New York (NY), pp 149–187CrossRef Roychowdhury R, Tah J (2013) Mutagenesis a potential approachfor crop improvement. In: Hakeem KR, Ahmad P, Ozturk M (eds) Crop improvement: new approaches and modern techniques. Springer, New York (NY), pp 149–187CrossRef
Zurück zum Zitat Sarsu F, Bimpong IK, Jankuloski L (2021) Contribution of induced mutation in crops to global food security. Communicate 12(22):2–11 Sarsu F, Bimpong IK, Jankuloski L (2021) Contribution of induced mutation in crops to global food security. Communicate 12(22):2–11
Zurück zum Zitat Sharma A, Plaha P, Rathour R, Katoch V, Singh Y, Khalsa GS (2009) Induced mutagenesis for improvement of garden pea. Int J Veg Sci 16:60–72CrossRef Sharma A, Plaha P, Rathour R, Katoch V, Singh Y, Khalsa GS (2009) Induced mutagenesis for improvement of garden pea. Int J Veg Sci 16:60–72CrossRef
Zurück zum Zitat Shoba D, Raveendran M, Manonmani S, Utharasu S, Dhivyapriya D, Subhasini G, Ramchandar S, Valarmathi R, Grover N, Krishnan SG, Singh AK, Jayaswal P, Kale P, Ramkumar MK, Mithram SVA, Mohapatra T, Singh K, Singh NK, Sarla N, Sheshshayee MS, Kar MK, Robin S, Sharma RP (2017) Development and genetic characterization of a novel herbicide (Imazethapyr) tolerant mutant in rice (Oryza sativa L.). Rice 10:10. https://doi.org/10.1186/s12284-017-0151-8 Shoba D, Raveendran M, Manonmani S, Utharasu S, Dhivyapriya D, Subhasini G, Ramchandar S, Valarmathi R, Grover N, Krishnan SG, Singh AK, Jayaswal P, Kale P, Ramkumar MK, Mithram SVA, Mohapatra T, Singh K, Singh NK, Sarla N, Sheshshayee MS, Kar MK, Robin S, Sharma RP (2017) Development and genetic characterization of a novel herbicide (Imazethapyr) tolerant mutant in rice (Oryza sativa L.). Rice 10:10. https://​doi.​org/​10.​1186/​s12284-017-0151-8
Zurück zum Zitat Sikora P, Chawade A, Larsson M, Olsson J, Olsson O (2012) Mutagenesis as a tool in Plant genetics, functional genomics, and breeding. Int J Plant Genom 2011:314829 Sikora P, Chawade A, Larsson M, Olsson J, Olsson O (2012) Mutagenesis as a tool in Plant genetics, functional genomics, and breeding. Int J Plant Genom 2011:314829
Zurück zum Zitat Sofkova-Bobcheva S, Pantchev I, Kiryakov I, Chavdarov P, Muhovski Y, Sarsu F, Tomlekova N (2021) Induced mutagenesis for improvement of bean (Phaseolus vulgaris L.) Production in Bulgaria. In: Sivasankar S, Ellis N, Jankuloski L, Ingelbrecht I (eds) Mutation breeding, genetic diversity and crop adaptation to climate change. CAB International Sofkova-Bobcheva S, Pantchev I, Kiryakov I, Chavdarov P, Muhovski Y, Sarsu F, Tomlekova N (2021) Induced mutagenesis for improvement of bean (Phaseolus vulgaris L.) Production in Bulgaria. In: Sivasankar S, Ellis N, Jankuloski L, Ingelbrecht I (eds) Mutation breeding, genetic diversity and crop adaptation to climate change. CAB International
Zurück zum Zitat Tang S, Liu D-X, Lu S, Yu L, Li Y, Lin S, Li L, Du Z, Xiao Liu X, Li X, Ma W, Yang Q-Y, Guo L (2020) Development and screening of EMS mutants with altered seed oil content or fatty acid composition in Brassica napus. The Plant J 104:1410–1422CrossRef Tang S, Liu D-X, Lu S, Yu L, Li Y, Lin S, Li L, Du Z, Xiao Liu X, Li X, Ma W, Yang Q-Y, Guo L (2020) Development and screening of EMS mutants with altered seed oil content or fatty acid composition in Brassica napus. The Plant J 104:1410–1422CrossRef
Zurück zum Zitat Tetali S, Karkamkar SP, Phalake SV (2020) Mutation breeding for inducing seedlessness in grape variety ARI 516. Int J Minor Fruits Me Aromat Plants 6(2):67–71 Tetali S, Karkamkar SP, Phalake SV (2020) Mutation breeding for inducing seedlessness in grape variety ARI 516. Int J Minor Fruits Me Aromat Plants 6(2):67–71
Zurück zum Zitat Upadhyaya HD, Gowda CLL, Sastry DVSSR (2008) Plant genetic resources management: collection, characterization, conservation and utilization. J SAT Agric Res 6 Upadhyaya HD, Gowda CLL, Sastry DVSSR (2008) Plant genetic resources management: collection, characterization, conservation and utilization. J SAT Agric Res 6
Zurück zum Zitat Vu NH, Subuyuj GA, Crisostomo RV, Skovran E (2021) Transposon mutagenesis for methylotrophic bacteria using Methylorubrum extorquens AM1 as a model system. Methods Enzym 650:159–184 Vu NH, Subuyuj GA, Crisostomo RV, Skovran E (2021) Transposon mutagenesis for methylotrophic bacteria using Methylorubrum extorquens AM1 as a model system. Methods Enzym 650:159–184
Zurück zum Zitat Wang X, Wang A, Li Y, Xu Y, Wei Q, Wang J, Lin F, Gong D, Liu F, Wang Y, Peng L (2021) Corrigendum: a novel banana mutant “RF 1” (Musa spp. ABB, Pisang Awak Subgroup) for improved agronomic traits and enhanced cold tolerance and disease resistance. Front Plant Sci 12:796904. https://doi.org/10.3389/fpls.2021.796904 Wang X, Wang A, Li Y, Xu Y, Wei Q, Wang J, Lin F, Gong D, Liu F, Wang Y, Peng L (2021) Corrigendum: a novel banana mutant “RF 1” (Musa spp. ABB, Pisang Awak Subgroup) for improved agronomic traits and enhanced cold tolerance and disease resistance. Front Plant Sci 12:796904. https://​doi.​org/​10.​3389/​fpls.​2021.​796904
Zurück zum Zitat Wilkes G (1991) In situ conservation of agricultural systems. In: Oldfield M, Alcorn J (eds) Biodiversity; culture, conservation and eco development. West View Press, Boulder, CO, USA, pp 86–101 Wilkes G (1991) In situ conservation of agricultural systems. In: Oldfield M, Alcorn J (eds) Biodiversity; culture, conservation and eco development. West View Press, Boulder, CO, USA, pp 86–101
Zurück zum Zitat Yan Z, Appiano M, van Tuinen A, Meijer-Dekens F, Schipper D, Gao D, Huibers R, Visser RGF, Bai Y, Wolters AA (2021) Discovery and characterization of a novel tomato mlo mutant from an EMS mutagenized Micro-Tom population. Genes (basel) 12(5):719. https://doi.org/10.3390/genes12050719CrossRef Yan Z, Appiano M, van Tuinen A, Meijer-Dekens F, Schipper D, Gao D, Huibers R, Visser RGF, Bai Y, Wolters AA (2021) Discovery and characterization of a novel tomato mlo mutant from an EMS mutagenized Micro-Tom population. Genes (basel) 12(5):719. https://​doi.​org/​10.​3390/​genes12050719CrossRef
Zurück zum Zitat Wu J-H, Ferguson AR, Murray BG (2011) Manipulation of ploidy for kiwifruit breeding: in vitro chromosome doubling in diploid Actinidia chinensis Planch. Plant Cell Tissue Organ Cult 106:503–511CrossRef Wu J-H, Ferguson AR, Murray BG (2011) Manipulation of ploidy for kiwifruit breeding: in vitro chromosome doubling in diploid Actinidia chinensis Planch. Plant Cell Tissue Organ Cult 106:503–511CrossRef
Zurück zum Zitat Wu JH, Ferguson AR, Murray BG, Jia Y, Datson PM, Zhang J (2012) Induced polyploidy dramatically increases the size and alters the shape of fruit in Actinidia chinensis. Ann Bot 109(1):169–179CrossRef Wu JH, Ferguson AR, Murray BG, Jia Y, Datson PM, Zhang J (2012) Induced polyploidy dramatically increases the size and alters the shape of fruit in Actinidia chinensis. Ann Bot 109(1):169–179CrossRef
Metadaten
Titel
Application of Mutagenesis in Food Production and Sustainable Development
verfasst von
Made Pharmawati
Copyright-Jahr
2024
DOI
https://doi.org/10.1007/978-3-031-50729-8_1