Strategies for fast breeding and improvement of Actinidia species

Dinum Herath , Tianchi Wang , Charlotte Voogd , Yongyan Peng , Mikaela Douglas , Joanna Putterill , Erika Varkonyi-Gasic , Andrew C. Allan

Horticulture Research ›› 2023, Vol. 10 ›› Issue (3) : 016

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Horticulture Research ›› 2023, Vol. 10 ›› Issue (3) :016 DOI: 10.1093/hr/uhad016
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Strategies for fast breeding and improvement of Actinidia species
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Dinum Herath, Tianchi Wang, Charlotte Voogd, Yongyan Peng, Mikaela Douglas, Joanna Putterill, Erika Varkonyi-Gasic, Andrew C. Allan. Strategies for fast breeding and improvement of Actinidia species. Horticulture Research, 2023, 10 (3) : 016 DOI:10.1093/hr/uhad016

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References

[1]

Datson PM, Ferguson AR . Actinidia. In: Kole C, ed. Wild Crop Relatives: Genomic and Breeding Resources. Springer: Berlin Heidelberg, 2011, 1-20.

[2]

Ferguson AR . Chapter Two - Kiwifruit: The Wild and the Cultivated Plants. In: Boland M, Moughan PJ, eds. Advances in Food and Nutrition Research vol. 68. Academic Press, 2013, 15-32.

[3]

Ferguson AR . Botanical Description. In: Testolin R, Huang H-W, Ferguson AR, eds. The Kiwifruit Genome. Springer International Publishing, Switzerland, 2016, 1-13.

[4]

Putterill J, Varkonyi-Gasic E . FT and florigen long-distance flowering control in plants. Curr Opin Plant Biol. 2016; 33: 77-82.

[5]

Voogd C, Brian LA, Wang T et al. Three FT and multiple CEN and BFT genes regulate maturity, flowering, and vegetative phenology in kiwifruit. J Exp Bot. 2017; 68: 1539-53.

[6]

Moss SMA, Wang T, Voogd C et al. AcFT promotes kiwifruit in vitro flowering when overexpressed and Arabidopsis flowering when expressed in the vasculature under its own promoter. Plant Direct. 2018; 2: e00068.

[7]

Voogd C, Brian LA, Wu R et al. A MADS-box gene with similarity to FLC is induced by cold and correlated with epigenetic changes to control budbreak in kiwifruit. The New Phytologist. 2022; 233: 2111-26.

[8]

Voogd C, Wang T, Varkonyi-Gasic E . Functional and expression analyses of kiwifruit SOC1-like genes suggest that they may not have a role in the transition to flowering but may affect the duration of dormancy. J Exp Bot. 2015; 66: 4699-710.

[9]

Wu R, Wang T, McGie T et al. Overexpression of the kiwifruit SVP3 gene affects reproductive development and suppresses anthocyanin biosynthesis in petals, but has no effect on vegetative growth, dormancy, or flowering time. J Exp Bot. 2014; 65: 4985-95.

[10]

Varkonyi-Gasic E, Wang T, Voogd C et al. Mutagenesis of kiwifruit CENTRORADIALIS-like genes transforms a climbing woody perennial with long juvenility and axillary flowering into a compact plant with rapid terminal flowering. Plant Biotechnol J. 2019; 17: 869-80.

[11]

Jia H, Tao J, Zhong W et al. Nutritional component analyses in different varieties of Actinidia eriantha kiwifruit by Transcriptomic and Metabolomic approaches. Int J Mol Sci. 2022; 23: 10217.

[12]

Liu X, Wu R, Bulley SM et al. Kiwifruit MYBS1-like and GBF3 transcription factors influence l-ascorbic acid biosynthesis by activating transcription of GDP-L-galactose phosphorylase 3. New Phytol. 2022; 234: 1782-800.

[13]

Latocha P. The nutritional and health benefits of Kiwiberry (Actinidia arguta) - a review. Plant Foods Hum Nutr. 2017; 72: 325-34.

[14]

Liu Y, Li D, Zhang Q et al. Rapid radiations of both kiwifruit hybrid lineages and their parents shed light on a two-layer mode of species diversification. New Phytol. 2017; 215: 877-90.

[15]

Tang W, Sun X, Yue J et al. Chromosome-scale genome assembly of kiwifruit Actinidia eriantha with single-molecule sequencing and chromatin interaction mapping. Gigascience. 2019; 8: giz027.

[16]

Wu R, Wang T, Warren BAW et al. Kiwifruit SVP2 controls developmental and drought-stress pathways. Plant Mol Biol. 2018; 96: 233-44.

[17]

Corbesier L, Vincent C, Jang S et al. FT protein movement contributes to long-distance signaling in floral induction of Arabidopsis. Science. 2007; 316: 1030-3.

[18]

Sinn JP, Held JB, Vosburg C et al. Flowering locus T chimeric protein induces floral precocity in edible citrus. Plant Biotechnol J. 2021; 19: 215-7.

[19]

Varkonyi-Gasic E, Wang T, Cooney J et al. Shy Girl, a kiwifruit suppressor of feminization, restricts gynoecium development via regulation of cytokinin metabolism and signalling. New Phytol. 2021; 230: 1461-75.

[20]

Herath D, Voogd C, Mayo-Smith M et al. CRISPR-Cas9-mediated mutagenesis of kiwifruit BFT genes results in an evergrowing but not early flowering phenotype. Plant Biotechnol J. 2022; 20: 2064-76.

[21]

Akagi T, Pilkington SM, Varkonyi-Gasic E et al. Two Y-chromosome-encoded genes determine sex in kiwifruit. Nat Plants. 2019; 5: 801-9.

[22]

Huang H. Chapter 1 - Systematics and Genetic Variation of Actinidia. In: Huang H, ed. Kiwifruit. San Diego: Academic Press, 2016, 9-44.

[23]

Ebrahimzadeh H, Soltanloo H, Shariatpanahi ME et al. Improved chromosome doubling of parthenogenetic haploid plants of cucumber (Cucumis sativus L.) using colchicine, trifluralin, and oryzalin. Plant Cell, Tissue and Organ Culture (PCTOC). 2018; 135: 407-17.

[24]

Touchell DH, Palmer IE, Ranney TG . In vitro ploidy manipulation for crop improvement. Frontiers Plant Sci. 2020; 11: 722.

[25]

Wu JH, Ferguson AR, Murray BG et al. Induced polyploidy dramatically increases the size and alters the shape of fruit in Actinidia chinensis. Ann Bot. 2012; 109: 169-79.

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