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首页> 外文期刊>Plant Disease >Quantitative Trait Loci (QTLs) for Intumescence Severity in Eucalyptus globulus and Validation of QTL Detection Based on Phenotyping Using Open-Pollinated Families of a Mapping Population
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Quantitative Trait Loci (QTLs) for Intumescence Severity in Eucalyptus globulus and Validation of QTL Detection Based on Phenotyping Using Open-Pollinated Families of a Mapping Population

机译:用于桉树血液血液血液血液血清血清血清血清血清磷酸盐的定量性状基因座(QTLS基于使用绘制群的开放授粉群体的QTL检测验证

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摘要

Intumescence is a nonpathogenic physiological disorder characterized by leaf blistering. This disorder can affect growth and development in glasshouses and growth chambers and may be confused with pathogenic diseases. We used quantitative trait loci (QTL) analysis to examine the genetic basis of variation in intumescence severity in Eucalyptus globulus, and test for colocation with previously detected QTLs for pathogen susceptibility. QTL analysis used the phenotype means of open-pollinated (OP) families of an outcrossed F2 mapping family (OP F3; n = 300) of E. globulus and the linkage map constructed in the F2. We validate this phenotyping approach for QTL analysis by assessinga trait previously used for QTL discovery in the F2 and showing the same major QTL was detected with the OP F3. For intumescence severity, five putative QTLs were detected across four linkage groups. Four of these did not colocate with previously reported QTLs for fungal pathogen susceptibility in Eucalyptus, suggesting the mechanisms underlying susceptibility to intumescence and to the two fungal pathogens are largely independent. This study demonstrates there is a genetic basis for variation in intumescence severity, reports the first QTL for intumescence severity in plants, and provides a robust framework for investigating the potential mechanisms involved.
机译:型致力是一种非携带的生理疾病,其特征是叶片起泡。这种疾病可以影响玻璃室和生长室的生长和发育,并且可能与致病性疾病混淆。我们使用定量性状基因座(QTL)分析来检查桉树菌液中吹动性严重程度变异的遗传基础,以及用先前检测到的QTL进行分配的用于病原体易感性。 QTL分析使用E.球水和在F2中构建的Emulululul和Clatage Map的outcrossed F2测绘家族(OP F3; N = 300)的开放式授粉(OP)系列的表型手段。我们通过以前用于F2中的QTL发现,验证了这种表型方法,用于QTL分析,以用于F2中的QTL发现,并显示使用OP F3检测到相同的主要QTL。对于吹动严重程度,在四个连杆组中检测到五个推定的QTL。其中四种没有殖民在桉树中先前报道的QTL用于真菌病原体易感性的QTL,这表明易感性易感性和两种真菌病原体的机制很大程度上是独立的。本研究表明存在型吹动严重程度的变异遗传基础,将第一QTL报告植物中的吹动严重程度,并提供稳健的框架,用于调查所涉及的潜在机制。

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  • 来源
    《Plant Disease》 |2018年第8期|共8页
  • 作者单位

    School of Natural Science and ARC Training Centre for Forest Value University of Tasmania Hobart TAS 7001 Australia;

    School of Natural Science and ARC Training Centre for Forest Value University of Tasmania Hobart TAS 7001 Australia;

    School of Natural Science and ARC Training Centre for Forest Value University of Tasmania Hobart TAS 7001 Australia;

    School of Natural Science and ARC Training Centre for Forest Value University of Tasmania Hobart TAS 7001 Australia;

    School of Natural Science and ARC Training Centre for Forest Value University of Tasmania Hobart TAS 7001 Australia;

    School of Natural Science and ARC Training Centre for Forest Value University of Tasmania Hobart TAS 7001 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物保护;
  • 关键词

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