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一些梨果类水果品种中PR基因的系统发育分析,重点是苹果在接种梨火疫病菌后的转录分析和ROS反应。

Phylogenetic analysis of PR genes in some pome fruit species with the emphasis on transcriptional analysis and ROS response under Erwinia amylovora inoculation in apple.

作者信息

Hassani Maryam, Salami Seyed Alireza, Nasiri Jaber, Abdollahi Hamid, Ghahremani Zahra

机构信息

Department of Biotechnology, Faculty of Agriculture and Natural Resources, Azad University (Science and Research Branch), P.O. Box 4933, Tehran, 14155, Iran.

Department of Horticultural Sciences, Faculty of Agriculture and Natural Resources, University of Tehran, P.O. Box 4111, Karaj, 31587, Iran.

出版信息

Genetica. 2016 Feb;144(1):9-22. doi: 10.1007/s10709-015-9874-x. Epub 2015 Nov 20.

Abstract

Attempts were made to identify eight pathogenesis related (PR) genes (i.e., PR-1a, PR3-ch1, PR3-Ch2, PR3-Ch3, PR3-Ch4, PR3-Ch5, PR-5 and PR-8) from 27 genotypes of apple, quince and pear, which are induced in response to inoculation with the pathogen Erwinia amylovora, the causal agent of fire blight. Totally, 32 PR genes of different families were obtained, excepting PR3-Ch2 (amplified only in apple) and PR3-Ch4 (amplified only in apple and pear), the others were successfully amplified in all the genotypes of apple, quince and pear. Evolutionary, the genes of each family exhibited significant homology with each other, as the corresponded phylogenetic neighbor-joining-based dendrograms were taken into consideration. Meanwhile, according to the expression assay, it was deduced that the pathogen activity can significantly affect the expression levels of some selected PR genes of PR3-Ch2, PR3-Ch4, PR3-Ch5 and particularly Cat I in both resistant (MM-111) and semi-susceptible (MM-106) apple rootstocks. Lastly, it was concluded that the pathogen E. amylovora is able to stimulate ROS response, particularly using generation of hydrogen peroxide (H2O2) in both aforementioned apple rootstock.

摘要

研究人员尝试从27种苹果、榅桲和梨的基因型中鉴定出8个病程相关(PR)基因(即PR-1a、PR3-ch1、PR3-Ch2、PR3-Ch3、PR3-Ch4、PR3-Ch5、PR-5和PR-8),这些基因是在接种火疫病病原菌——解淀粉欧文氏菌后被诱导产生的。总共获得了32个不同家族的PR基因,除PR3-Ch2(仅在苹果中扩增)和PR3-Ch4(仅在苹果和梨中扩增)外,其他基因在苹果、榅桲和梨的所有基因型中均成功扩增。从进化角度来看,考虑到基于邻接法构建的系统发育树状图,每个家族的基因彼此之间具有显著的同源性。同时,根据表达分析推断,病原菌活性能够显著影响PR3-Ch2、PR3-Ch4、PR3-Ch5以及特别是抗性(MM-111)和半感病(MM-106)苹果砧木中某些选定的PR基因的表达水平。最后得出结论,解淀粉欧文氏菌能够刺激活性氧(ROS)反应,特别是在上述两种苹果砧木中利用过氧化氢(H2O2)的产生。

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