Impact of Polyploidy Induction for Salinity Stress Mitigation in Soybean (Glycine max L. Merrill)

被引:3
作者
Mangena, Phetole [1 ]
机构
[1] Univ Limpopo, Fac Sci & Agr, Sch Mol & Life Sci, Dept Biodivers, Private Bag X1106, ZA-0727 Polokwane, South Africa
来源
PLANTS-BASEL | 2023年 / 12卷 / 06期
关键词
biochemical traits; colchicine; Glycine max; morphology; oryzalin; polyploidy; salinity stress; soybean; COLCHICINE-INDUCED POLYPLOIDY; EVOLUTIONARY CONSEQUENCES; PROTEASOME INHIBITORS; SYNTHETIC POLYPLOIDS; PLANT PERFORMANCE; EPOXOMICIN; TOLERANCE; LEGUMES; ORIGIN; FORCE;
D O I
10.3390/plants12061356
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Polyploidy induction is recognized as one of the major evolutionary processes leading to remarkable morphological, physiological, and genetic variations in plants. Soybean (Glycine max L.), also known as soja bean or soya bean, is an annual leguminous crop of the pea family (Fabaceae) that shares a paleopolypoidy history, dating back to approximately 56.5 million years ago with other leguminous crops such as cowpea and other Glycine specific polyploids. This crop has been documented as one of the polyploid complex species among legumes whose gene evolution and resultant adaptive growth characteristics following induced polyploidization has not been fully explored. Furthermore, no successfully established in vivo or in vitro based polyploidy induction protocols have been reported to date, particularly, with the intention to develop mutant plants showing strong resistance to abiotic salinity stress. This review, therefore, describes the role of synthetic polyploid plant production in soybean for the mitigation of high soil salt stress levels and how this evolving approach could be used to further enhance the nutritional, pharmaceutical and economic industrial value of soybeans. This review also addresses the challenges involved during the polyploidization process.
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页数:13
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