A Novel Banana Mutant “RF 1” (Musa spp. ABB, Pisang Awak Subgroup) for Improved Agronomic Traits and Enhanced Cold Tolerance and Disease Resistance
Banana is a major fruit crop grown in tropical and subtropical regions worldwide. Among cultivars, “FenJiao, FJ” ( Musa spp. ABB, Pisang Awak subgroup) is a popular variety of bananas, due to its better sugar-acid blend and relatively small fruit shape. However, because the traditional FJ variety gr...
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Published in: | Frontiers in plant science Vol. 12; p. 730718 |
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Abstract | Banana is a major fruit crop grown in tropical and subtropical regions worldwide. Among cultivars, “FenJiao, FJ” (
Musa
spp. ABB, Pisang Awak subgroup) is a popular variety of bananas, due to its better sugar-acid blend and relatively small fruit shape. However, because the traditional FJ variety grows relatively high in height, it is vulnerable to lodging and unsuitable for harvesting. In this study, we sought desirable banana mutants by carrying out ethyl methanesulfonate (EMS) mutagenesis with the FJ cultivar. After the FJ shoot tips had been treated with 0.8% (v/v) EMS for 4 h, we obtained a stably inherited mutant, here called “
ReFen 1
” (
RF1
), and also observed a semi-dwarfing phenotype. Compared with the wild type (FJ), this
RF1
mutant featured consistently improved agronomic traits during 5-year field experiments conducted in three distinct locations in China. Notably, the
RF1
plants showed significantly enhanced cold tolerance and Sigatoka disease resistance, mainly due to a substantially increased soluble content of sugar and greater starch accumulation along with reduced cellulose deposition. Therefore, this study not only demonstrated how a powerful genetic strategy can be used in fruit crop breeding but also provided insight into the identification of novel genes for agronomic trait improvement in bananas and beyond. |
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AbstractList | Banana is a major fruit crop grown in tropical and subtropical regions worldwide. Among cultivars, “FenJiao, FJ” (Musa spp. ABB, Pisang Awak subgroup) is a popular variety of bananas, due to its better sugar-acid blend and relatively small fruit shape. However, because the traditional FJ variety grows relatively high in height, it is vulnerable to lodging and unsuitable for harvesting. In this study, we sought desirable banana mutants by carrying out ethyl methanesulfonate (EMS) mutagenesis with the FJ cultivar. After the FJ shoot tips had been treated with 0.8% (v/v) EMS for 4 h, we obtained a stably inherited mutant, here called “ReFen 1” (RF1), and also observed a semi-dwarfing phenotype. Compared with the wild type (FJ), this RF1 mutant featured consistently improved agronomic traits during 5-year field experiments conducted in three distinct locations in China. Notably, the RF1 plants showed significantly enhanced cold tolerance and Sigatoka disease resistance, mainly due to a substantially increased soluble content of sugar and greater starch accumulation along with reduced cellulose deposition. Therefore, this study not only demonstrated how a powerful genetic strategy can be used in fruit crop breeding but also provided insight into the identification of novel genes for agronomic trait improvement in bananas and beyond. Banana is a major fruit crop grown in tropical and subtropical regions worldwide. Among cultivars, “FenJiao, FJ” ( Musa spp. ABB, Pisang Awak subgroup) is a popular variety of bananas, due to its better sugar-acid blend and relatively small fruit shape. However, because the traditional FJ variety grows relatively high in height, it is vulnerable to lodging and unsuitable for harvesting. In this study, we sought desirable banana mutants by carrying out ethyl methanesulfonate (EMS) mutagenesis with the FJ cultivar. After the FJ shoot tips had been treated with 0.8% (v/v) EMS for 4 h, we obtained a stably inherited mutant, here called “ ReFen 1 ” ( RF1 ), and also observed a semi-dwarfing phenotype. Compared with the wild type (FJ), this RF1 mutant featured consistently improved agronomic traits during 5-year field experiments conducted in three distinct locations in China. Notably, the RF1 plants showed significantly enhanced cold tolerance and Sigatoka disease resistance, mainly due to a substantially increased soluble content of sugar and greater starch accumulation along with reduced cellulose deposition. Therefore, this study not only demonstrated how a powerful genetic strategy can be used in fruit crop breeding but also provided insight into the identification of novel genes for agronomic trait improvement in bananas and beyond. |
Author | Peng, Liangcai Li, Yujia Wang, Jiashui Liu, Fei Wei, Qing Gong, Deyong Wang, Yanting Wang, Anbang Li, Jingyang Lin, Fei Xu, Yi Wang, Xiaoyi |
AuthorAffiliation | 3 Biomass and Bioenergy Research Centre, College of Plant Science and Technology, Huazhong Agricultural University , Wuhan , China 1 Hainan Banana Healthy Seedling Propagation Engineering Research Center, Haikou Experimental Station, Chinese Academy of Tropical Agricultural Sciences , Haikou , China 2 The Fruit Tree Research Center, Institute of Subtropical Crops, Guizhou Academy of Agricultural Sciences , Xinyi , China |
AuthorAffiliation_xml | – name: 1 Hainan Banana Healthy Seedling Propagation Engineering Research Center, Haikou Experimental Station, Chinese Academy of Tropical Agricultural Sciences , Haikou , China – name: 3 Biomass and Bioenergy Research Centre, College of Plant Science and Technology, Huazhong Agricultural University , Wuhan , China – name: 2 The Fruit Tree Research Center, Institute of Subtropical Crops, Guizhou Academy of Agricultural Sciences , Xinyi , China |
Author_xml | – sequence: 1 givenname: Xiaoyi surname: Wang fullname: Wang, Xiaoyi – sequence: 2 givenname: Anbang surname: Wang fullname: Wang, Anbang – sequence: 3 givenname: Yujia surname: Li fullname: Li, Yujia – sequence: 4 givenname: Yi surname: Xu fullname: Xu, Yi – sequence: 5 givenname: Qing surname: Wei fullname: Wei, Qing – sequence: 6 givenname: Jiashui surname: Wang fullname: Wang, Jiashui – sequence: 7 givenname: Fei surname: Lin fullname: Lin, Fei – sequence: 8 givenname: Deyong surname: Gong fullname: Gong, Deyong – sequence: 9 givenname: Fei surname: Liu fullname: Liu, Fei – sequence: 10 givenname: Yanting surname: Wang fullname: Wang, Yanting – sequence: 11 givenname: Liangcai surname: Peng fullname: Peng, Liangcai – sequence: 12 givenname: Jingyang surname: Li fullname: Li, Jingyang |
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ContentType | Journal Article |
Copyright | Copyright © 2021 Wang, Wang, Li, Xu, Wei, Wang, Lin, Gong, Liu, Wang, Peng and Li. 2021 Wang, Wang, Li, Xu, Wei, Wang, Lin, Gong, Liu, Wang, Peng and Li |
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Notes | ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 Edited by: Athanassios Molassiotis, Aristotle University of Thessaloniki, Greece Reviewed by: Xiaoyang Zhu, South China Agricultural University, China; Zhongxiong Lai, Fujian Agriculture and Forestry University, China ORCID: Fei Liu orcid.org/0000-0003-0979-9982 These authors have contributed equally to this work This article was submitted to Plant Breeding, a section of the journal Frontiers in Plant Science |
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Snippet | Banana is a major fruit crop grown in tropical and subtropical regions worldwide. Among cultivars, “FenJiao, FJ” (
Musa
spp. ABB, Pisang Awak subgroup) is a... Banana is a major fruit crop grown in tropical and subtropical regions worldwide. Among cultivars, “FenJiao, FJ” (Musa spp. ABB, Pisang Awak subgroup) is a... |
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SubjectTerms | agronomic traits cold tolerance ethyl methanesulfonate (EMS)-mutagenesis Pisang Awak (ABB) Plant Science semi-dwarfing “ReFen 1” mutant |
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Title | A Novel Banana Mutant “RF 1” (Musa spp. ABB, Pisang Awak Subgroup) for Improved Agronomic Traits and Enhanced Cold Tolerance and Disease Resistance |
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