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利用基于二代测序的混合分组分析法在BCF群体的幼苗期鉴定耐盐胁迫候选基因。 (你原文中“at the seedling stages of and ”表述不完整,我按完整意思翻译了,若有偏差请告知)

Identification of salt stress-tolerant candidate genes in the BCF population at the seedling stages of and using NGS-based bulked segregant analysis.

作者信息

Shehzad Muhammad, Ditta Allah, Cai Xiaoyan, Ur Rahman Shafeeq, Xu Yanchao, Wang Kunbo, Zhou Zhongli, Fang Liu

机构信息

State Key Laboratory of Cotton Biology, Institute of Cotton Research, Chinese Academy of Agricultural Sciences, Anyang, Henan, China.

Plant Breeding and Genetics Division, Cotton Group, Nuclear Institute for Agriculture and Biology (NIAB), Faisalabad, Punjab, Pakistan.

出版信息

Front Plant Sci. 2023 Jul 3;14:1125805. doi: 10.3389/fpls.2023.1125805. eCollection 2023.

Abstract

Salinity is a major threat to the yield and productivity of cotton seedlings. In the present study, we developed a BCF population of cotton plants from (5-7) and (CCRI 12-4) salt-susceptible parents to identify salt-resistant candidate genes. The Illumina HiSeq™ strategy was used with bulked segregant analysis. Salt-resistant and salt-susceptible DNA bulks were pooled by using 30 plants from a BCF population. Next-generation sequencing (NGS) technology was used for the sequencing of parents and both bulks. Four significant genomic regions were identified: the first genomic region was located on chromosome 18 (1.86 Mb), the second and third genomic regions were on chromosome 25 (1.06 Mb and 1.94 Mb, respectively), and the fourth was on chromosome 8 (1.41 Mb). The reads of bulk1 and bulk2 were aligned to the and genomes, respectively, leading to the identification of 20,664,007 single-nucleotide polymorphisms (SNPs) and insertions/deletions (indels). After the screening, 6,573 polymorphic markers were obtained after filtration of the candidate regions. The SNP indices in resistant and susceptible bulks and Δ(SNP-index) values of resistant and susceptible bulks were measured. Based on the higher Δ(SNP-index) value, six effective polymorphic SNPs were selected in a different chromosome. Six effective SNPs were linked to five candidate genes in four genomic regions. Further validation of these five candidate genes was carried out using reverse transcription-quantitative polymerase chain reaction (RT-qPCR), resulting in an expression profile that showed two highly upregulated genes in the salt-tolerant species , i.e., and ; however, the opposite was shown in , for which all genes, except one, showed partial expression. The results indicated that and may be salt-tolerant genes. We are confident that this study could be helpful for the cloning, transformation, and development of salt-resistant cotton varieties.

摘要

盐度是棉花幼苗产量和生产力的主要威胁。在本研究中,我们从(5 - 7)和(中棉所12 - 4)这两个盐敏感亲本培育了一个棉花BCF群体,以鉴定抗盐候选基因。采用Illumina HiSeq™策略进行混合分组分析法。从BCF群体中选取30株植株,构建抗盐和盐敏感DNA混合池。利用下一代测序(NGS)技术对亲本和两个混合池进行测序。鉴定出四个显著的基因组区域:第一个基因组区域位于18号染色体上(1.86 Mb),第二个和第三个基因组区域位于25号染色体上(分别为1.06 Mb和1.94 Mb),第四个位于8号染色体上(1.41 Mb)。将混合池1和混合池2的reads分别与 和 基因组进行比对,鉴定出20,664,007个单核苷酸多态性(SNP)和插入/缺失(indel)。筛选后,在候选区域过滤后获得6,573个多态性标记。测量了抗性和敏感混合池中的SNP指数以及抗性和敏感混合池的Δ(SNP-index)值。基于较高的Δ(SNP-index)值,在不同染色体上选择了六个有效的多态性SNP。六个有效的SNP与四个基因组区域中的五个候选基因连锁。使用逆转录定量聚合酶链反应(RT-qPCR)对这五个候选基因进行进一步验证,结果显示在耐盐品种 中有两个基因高度上调,即 和 ;然而,在 中情况相反,除一个基因外,所有基因均表现为部分表达。结果表明, 和 可能是耐盐基因。我们相信这项研究有助于抗盐棉花品种的克隆、转化和培育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbaa/10350501/605cea85fb1e/fpls-14-1125805-g001.jpg

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