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EST sequencing and gene expression profiling of defence-related genes from Persea americana infected with Phytophthora cinnamomi

机译:感染了疫霉疫霉的美洲海Per防御相关基因的EST测序和基因表达谱

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Background Avocado (Persea americana) belongs to the Lauraceae family and is an important commercial fruit crop in over 50 countries. The most serious pathogen affecting avocado production is Phytophthora cinnamomi which causes Phytophthora root rot (PRR). Root pathogens such as P. cinnamomi and their interactions with hosts are poorly understood and despite the importance of both the avocado crop and the effect Phytophthora has on its cultivation, there is a lack of molecular knowledge underpinning our understanding of defence strategies against the pathogen. In order to initiate a better understanding of host-specific defence we have generated EST data using 454 pyrosequencing and profiled nine defence-related genes from Pc-infected avocado roots. Results 2.0 Mb of data was generated consisting of ~10,000 reads on a single lane of the GS FLX platform. Using the Newbler assembler 371 contigs were assembled, of which 367 are novel for Persea americana. Genes were classified according to Gene Ontology terms. In addition to identifying root-specific ESTs we were also able to identify and quantify the expression of nine defence-related genes that were differentially regulated in response to P. cinnamomi. Genes such as metallothionein, thaumatin and the pathogenesis related PsemI, mlo and profilin were found to be differentially regulated. Conclusions This is the first study in elucidating the avocado root transcriptome as well as identifying defence responses of avocado roots to the root pathogen P. cinnamomi. Our data is currently the only EST data that has been generated for avocado rootstocks, and the ESTs identified in this study have already been useful in identifying defence-related genes as well as providing gene information for other studies looking at processes such as ROS regulation as well as hypoxia in avocado roots. Our EST data will aid in the elucidation of the avocado transcriptome and identification of markers for improved rootstock breeding and screening. The characterization of the avocado transcriptome will furthermore form a basis for functional genomics of basal angiosperms.
机译:背景鳄梨(Persea americana)属于月桂科,是50多个国家/地区的重要商业水果作物。影响鳄梨生产的最严重病原体是引起疫霉根腐病(PRR)的疫霉菌。尽管对鳄梨作物的重要性以及疫霉菌对其种植的影响都非常重要,但人们对诸如P. cinnamomi之类的根病原体及其与宿主之间的相互作用了解甚少,但我们缺乏分子知识来支持我们对病原体防御策略的理解。为了更好地理解宿主特异性防御​​,我们使用454焦磷酸测序技术生成了EST数据,并从感染Pc的鳄梨根中分析了9个与防御相关的基因。结果在GS FLX平台的单个通道上生成了2.0 Mb的数据,包括约10,000次读取。使用Newbler组装机,共组装了371个重叠群,其中367个对Persea americana来说是新颖的。根据基因本体论术语对基因进行分类。除了鉴定根特异的EST外,我们还能够鉴定和定量九种防御相关基因的表达,这些基因在对肉桂肉桂酸杆菌的应答中受到差异调节。发现金属硫蛋白,索马汀和与发病相关的PsemI,mlo和profilin等基因受到差异调节。结论这是阐明鳄梨根转录组以及鉴定鳄梨根对根病原体P. cinnamomi的防御反应的第一项研究。我们的数据是目前唯一针对鳄梨砧木生成的EST数据,本研究中鉴定出的EST已用于识别与防御相关的基因,并为其他研究诸如ROS调节等过程的研究提供了基因信息。鳄梨根部缺氧。我们的EST数据将有助于鳄梨转录组的阐明和标记物的鉴定,以改善砧木的育种和筛选。鳄梨转录组的表征将进一步为基础被子植物的功能基因组学奠定基础。

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