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Combined QTL mapping, physiological and transcriptomic analyses to identify candidate genes involved in Brassica napus seed aging

机译:组合QTL映射,生理和转录组分析,以鉴定参与甘蓝型油菜籽老化的候选基因

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摘要

Seed aging is an inevitable problem in the germplasm conservation of oil crops. Thus, clarifying the genetic mechanism of seed aging is important for rapeseed breeding. In this study, Brassica napus seeds were exposed to an artificial aging environment (40 degrees C and 90% relative humidity). Using a population of 172 recombinant inbred lines, 13 QTLs were detected on 8 chromosomes, which explained similar to 9.05% of the total phenotypic variation. The QTLs q2015AGIA-C08 and q2016AGI-C08-2 identified in the two environments were considered the same QTL. After artificial aging, lower germination index, increased relative electrical conductivity, malondialdehyde and proline content, and reduced soluble sugar, protein content and antioxidant enzyme activities were detected. Furthermore, seeds of extreme lines that were either left untreated (R0 and S0)or subjected to 15days of artificial aging (R15 and S15) were used for transcriptome sequencing. In total, 2843, 1084, 429 and 1055 differentially expressed genes were identified in R15 vs. R0, S15 vs. S0, R0 vs. S0 and R15 vs. S15, respectively. Through integrated QTL mapping and RNA-sequencing analyses, seven genes, such as BnaA03g37460D, encoding heat shock transcription factor C1, and BnaA03g40360D, encoding phosphofructokinase 4, were screened as candidate genes involved in seed aging. Further researches on these candidate genes could broaden our understanding of the regulatory mechanisms of seed aging.
机译:种子衰老是油田种质保护中的一个不可避免的问题。因此,阐明种子衰老的遗传机制对于油菜籽育种是重要的。在这项研究中,芸苔的羊羔种子暴露于人工老化环境(40℃和90%相对湿度)。使用172种重组近交系的群体,在8条染色体上检测到13个QTL,其解释类似于总表型变异的9.05%。 QTLS Q2015AGIA-C08和Q2016AGI-C08-2被认为是相同的QTL。在人工老化后,检测到较低的发芽指数,相对电导率增加,丙二醛和脯氨酸含量,以及降低的可溶性糖,蛋白质含量和抗氧化酶活性。此外,用于未处理(R0和S0)或对150日人工老化(R15和S15)进行的极端线的种子用于转录组测序。在R15与R0,S15与S0,R0与S0和R15对S15中,鉴定了总,2843,1084,429和1055个差异表达基因。通过集成的QTL映射和RNA测序分析,筛选七种基因,例如BnaA03G37460D,编码磷质子油酶4的编码热冲击转录因子C1和BnaA03G40360D,作为参与种子老化的候选基因。对这些候选基因的进一步研究可以扩大我们对种子老化调节机制的理解。

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  • 作者单位

    Southwest Univ Chongqing Engn Res Ctr Rapeseed Acad Agr Sci Coll Agron &

    Biotechnol Chongqing 400716 Peoples R China;

    Southwest Univ Chongqing Engn Res Ctr Rapeseed Acad Agr Sci Coll Agron &

    Biotechnol Chongqing 400716 Peoples R China;

    Southwest Univ Chongqing Engn Res Ctr Rapeseed Acad Agr Sci Coll Agron &

    Biotechnol Chongqing 400716 Peoples R China;

    Southwest Univ Chongqing Engn Res Ctr Rapeseed Acad Agr Sci Coll Agron &

    Biotechnol Chongqing 400716 Peoples R China;

    Southwest Univ Chongqing Engn Res Ctr Rapeseed Acad Agr Sci Coll Agron &

    Biotechnol Chongqing 400716 Peoples R China;

    Southwest Univ Chongqing Engn Res Ctr Rapeseed Acad Agr Sci Coll Agron &

    Biotechnol Chongqing 400716 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

    Brassica napus; Seed artificial aging; Physiology; QTL analysis; Transcriptome;

    机译:Brassica Napus;种子人工老化;生理学;QTL分析;转录组;

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