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Identification of SSR markers linked to the abscission of cotton boll traits and mining germplasm in Cotton 被引量:2
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作者 SHUI Guangling LIN Hairong +9 位作者 MA Xiaomei ZHU Bo HAN Peng aini nurimanguli GUO Chunping WU Yuanlong PAN Zhenyuan YOU Chunyuan SONG Guoli NIE Xinhui 《Journal of Cotton Research》 CAS 2024年第2期177-187,共11页
Background Cotton is an economically important crop.It is crucial to find an effective method to improve cotton yield,and one approach is to decrease the abscission of cotton bolls and buds.However,the lack of knowled... Background Cotton is an economically important crop.It is crucial to find an effective method to improve cotton yield,and one approach is to decrease the abscission of cotton bolls and buds.However,the lack of knowledge of the genetic and molecular mechanisms underlying cotton boll abscission traits has hindered genetic improvements.Results Pearson’s correlation analysis revealed a significant positive correlation between boll abscission rates 1(AR1)and boll abscission rates 2(AR2).A genome-wide association study was conducted on 145 loci that exhibited high polymorphism and were uniformly distributed across 26 chromosomes(pair).The study revealed 18,46,and 62 markers that were significantly associated with boll abscission,fiber quality,and yield traits(P<0.05),explaining 1.75%–7.13%,1.16%–9.58%,and 1.40%–5.44%of the phenotypic variation,respectively.Notably,the marker MON_SHIN-1584b was associated with the cotton boll abscission trait,whereas MON_CGR5732a was associated with cotton boll abscission and fiber quality traits.Thirteen of the marker loci identified in this study had been previously reported.Based on phenotypic effects,six typical cultivars with elite alleles related to cotton boll abscission,fiber quality,and yield traits were identified.These cultivars hold great promise for widespread utilization in breeding programs.Conclusions These results lay the foundation for understanding the molecular regulatory mechanism of cotton boll abscission and provide data for the future improvement of cotton breeding. 展开更多
关键词 SSR Genome wide association studies ABSCISSION Favorable alleles COTTON Genetic improvement
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Advances and prospects of genetic mapping of Verticillium wilt resistance in cotton 被引量:1
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作者 aini nurimanguli JIBRIL Abdulaziz Nuhu +4 位作者 LIU Shiming HAN Peng PAN Zhenyuan ZHU Longfu NIE Xinhui 《Journal of Cotton Research》 2022年第1期48-58,共11页
Verticillium wilt is one of the most important diseases affecting cotton production in China.The fungus,Verticillium dahliae,has a wide host range and a high degree of genetic variability.No resistance resources have ... Verticillium wilt is one of the most important diseases affecting cotton production in China.The fungus,Verticillium dahliae,has a wide host range and a high degree of genetic variability.No resistance resources have been found in the available planting resources,thus presenting difficulties and challenges for our study.The long-term production practice shows that selection of disease-resistant varieties is the most economical and effective measure to control Verticillium wilt of cotton to reduce the yield loss and quality decline of cotton.In this paper,we summarized the genetic mapping population,the analysis method of genetic localization,the discovery,mining and cloning of disease-resistant quantitative trait loci/markers,and the analysis of their genetic functions,so as to provide information for the molecular breeding approach of disease-resistant cotton. 展开更多
关键词 Cotton Verticillium wilt Genetic mapping QTL
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Correction:Identification of SSR markers linked to the abscission of cotton boll traits and mining germplasm in Cotton
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作者 SHUI Guangling LIN Hairong +9 位作者 MA Xiaomei ZHU Bo HAN Peng aini nurimanguli GUO Chunping WU Yuanlong PAN Zhenyuan YOU Chunyuan SONG Guoli NIE Xinhui 《Journal of Cotton Research》 CAS 2024年第2期219-222,共4页
Correction:J Cotton Res 7,20(2024)https://doi.org/10.1186/s42397-024-00180-3 Following publication of the original article(Shui et al.2024),the author found 5 errors in the published article.1.One of the author’s nam... Correction:J Cotton Res 7,20(2024)https://doi.org/10.1186/s42397-024-00180-3 Following publication of the original article(Shui et al.2024),the author found 5 errors in the published article.1.One of the author’s name has been corrected from Gou Chunping to Guo Chunping.2.The reference(Zhao SQ.2016)in Table 2 has been updated to:Zhao SQ.Analysis on the major gene and multigene mixed inheritance and QTL mapping for early maturity traits in upland cotton.Chin Acad Agric Sci.2016.https://doi.org/10.3969/j.issn.201600501.(in Chinese with English abstract).3.In’Results’part,’Phenotype analysis of 238 cotton boll abscission among cotton accessions’paragraph,the phenotype analysis of AR1 ranging from 19.27%–63.79%,which was wrongly written as 19.27%-63.97%.4.The‘2018KRL’is modified to‘2018KEL’in Table 1. 展开更多
关键词 GERMPLASM TRAITS COTTON
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基于转录组筛选胀果甘草根系盐胁迫响应关键基因
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作者 努日曼古丽·艾尼 陈静 +2 位作者 胡媛媛 方志刚 马刘峰 《山东农业大学学报(自然科学版)》 北大核心 2024年第4期605-612,共8页
胀果甘草是种植面积最广且适宜新疆气候的一种甘草品种。盐胁迫条件会特异性诱导胀果甘草中部分基因的表达,在转录组水平上研究差异表达基因应对胁迫的表达模式,更有利于阐明抗逆调控的分子机制。本研究利用高通量测序技术Illumina2000... 胀果甘草是种植面积最广且适宜新疆气候的一种甘草品种。盐胁迫条件会特异性诱导胀果甘草中部分基因的表达,在转录组水平上研究差异表达基因应对胁迫的表达模式,更有利于阐明抗逆调控的分子机制。本研究利用高通量测序技术Illumina2000对盐胁迫处理后的胀果甘草根系进行转录组测序,鉴定到2866个诱导上调表达的基因,1321个诱导下调表达的基因。对所有差异表达基因进行GO分析发现,这些基因主要参与酶活性变化、离子结合、氧化还原过程、防御反应等。此外,通过KEGG分析发现,差异表达基因主要富集在核糖体、氧化磷酸化、疾病调控等代谢通路。本研究对胀果甘草抗盐基因挖掘和今后采用分子生物学手段培育甘草新品种具有重要意义。 展开更多
关键词 胀果甘草 盐胁迫 差异表达基因
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