ems诱导青贮玉米耐盐突变体的培育与特性研究

Chuloh Cho, Kyung Hwa Kim, Mi-Suk Seo, M. Choi, Jae-Buhm Chun, M. Jin, Dool-Yi Kim
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引用次数: 0

摘要

玉米(Zea mays L.)是最有价值的农作物之一,在广泛的环境条件下生长。然而,玉米对盐胁迫中度敏感,土壤盐碱化是全球玉米生产的严重威胁。在本研究中,我们使用甲烷磺酸乙酯(EMS)产生耐盐青贮玉米突变体。通过评价盐胁迫处理后的形态表型,从203个M3突变群体中筛选耐盐系,并筛选出140ES91系。与野生型相比,140ES91突变体在盐胁迫条件下表现出较好的植株生长、脯氨酸含量和叶片光合能力。通过全基因组重测序分析,与参考基因组B73相比,KS140和140ES91之间共鉴定出1103个单核苷酸多态性和71个插入或缺失。此外,140ES91突变体在盐胁迫下,3个参与盐胁迫应答的基因表达谱均有所增加。综上所述,本研究鉴定的突变系可作为玉米品种耐盐性状转移的改良育种材料。
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Development and Characterization of EMS-induced Mutants with Enhanced Salt Tolerance in Silage Maize
Maize (Zea mays L.) is one of the most valuable agricultural crops and is grown under a wide spectrum of environmental conditions. However, maize is moderately sensitive to salt stress, and soil salinity is a serious threat to its production worldwide. In this study, we used ethyl methane sulfonate (EMS) to generate salt-tolerant silage maize mutants. We screened salt-tolerant lines from 203 M3 mutant populations by evaluating the morphological phenotype after salt stress treatment and selected the 140ES91 line. The 140ES91 mutant showed improved plant growth as well as higher proline content and leaf photosynthetic capacity compared with those of wild-type plants under salt stress conditions. Using whole-genome re-sequencing analysis, 1,103 single nucleotide polymorphisms and 71 insertions or deletions were identified as common variants between KS140 and 140ES91 in comparison with the reference genome B73. Furthermore, the expression patterns of three genes, which are involved in salt stress responses, were increased in the 140ES91 mutant under salt stress. Taken together, the mutant line identified in our study could be used as an improved breeding material for transferring salt tolerance traits in maize varieties.
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