...
首页> 外文期刊>BMC Genomics >Genetic control of functional traits related to photosynthesis and water use efficiency in Pinus pinaster Ait. drought response: integration of genome annotation, allele association and QTL detection for candidate gene identification
【24h】

Genetic control of functional traits related to photosynthesis and water use efficiency in Pinus pinaster Ait. drought response: integration of genome annotation, allele association and QTL detection for candidate gene identification

机译:Pinus Pinaster Ait的光合作用和水利用效率有关的功能性状的遗传控制。干旱反应:候选基因鉴定的基因组注释,等位基因关联和QTL检测的整合

获取原文
           

摘要

Background Understanding molecular mechanisms that control photosynthesis and water use efficiency in response to drought is crucial for plant species from dry areas. This study aimed to identify QTL for these traits in a Mediterranean conifer and tested their stability under drought. Results High density linkage maps for Pinus pinaster were used in the detection of QTL for photosynthesis and water use efficiency at three water irrigation regimes. A total of 28 significant and 27 suggestive QTL were found. QTL detected for photochemical traits accounted for the higher percentage of phenotypic variance. Functional annotation of genes within the QTL suggested 58 candidate genes for the analyzed traits. Allele association analysis in selected candidate genes showed three SNPs located in a MYB transcription factor that were significantly associated with efficiency of energy capture by open PSII reaction centers and specific leaf area. Conclusions The integration of QTL mapping of functional traits, genome annotation and allele association yielded several candidate genes involved with molecular control of photosynthesis and water use efficiency in response to drought in a conifer species. The results obtained highlight the importance of maintaining the integrity of the photochemical machinery in P. pinaster drought response.
机译:背景技术了解控制光合作用和水利用效率响应干旱的分子机制对于来自干燥区域的植物物种至关重要。本研究旨在识别地中海针叶树中这些特征的QTL,并在干旱下测试其稳定性。结果三个水灌溉制度下的Pinus Pinaster的高密度连杆地图用于检测光合作用和水使用效率的QTL。共有28个重要和27个暗示QTL。检测到光化学特性的QTL占表型方差的百分比较高。 QTL内基因的功能注释建议分析的特征的58个候选基因。所选候选基因中的等位基因关联分析显示,位于MYB转录因子中的三个SNP,与开放的PSII反应中心和特定叶区域明显与能量捕获效率有关。结论功能性状,基因组注释和等位基因关联的QTL映射的整合产生了几种候选基因,涉及光合作用和水利用效率的分子控制,响应于针叶树种类的干旱。得到的结果突出了维持P.Pinaster干旱反应中的光化学机械完整性的重要性。
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号