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首页> 外文期刊>AMB Express >Deep RNA-Seq profile reveals biodiversity, plant–microbe interactions and a large family of NBS-LRR resistance genes in walnut ( Juglans regia ) tissues
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Deep RNA-Seq profile reveals biodiversity, plant–microbe interactions and a large family of NBS-LRR resistance genes in walnut ( Juglans regia ) tissues

机译:深入的RNA-Seq图谱揭示了核桃(核桃)组织中的生物多样性,植物与微生物的相互作用以及NBS-LRR抗性基因的大家族

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Deep RNA-Seq profiling, a revolutionary method used for quantifying transcriptional levels, often includes non-specific transcripts from other co-existing organisms in spite of stringent protocols. Using the recently published walnut genome sequence as a filter, we present a broad analysis of the RNA-Seq derived transcriptome profiles obtained from twenty different tissues to extract the biodiversity and possible plant–microbe interactions in the walnut ecosystem in California. Since the residual nature of the transcripts being analyzed does not provide sufficient information to identify the exact strain, inferences made are constrained to the genus level. The presence of the pathogenic oomycete Phytophthora was detected in the root through the presence of a glyceraldehyde-3-phosphate dehydrogenase. Cryptococcus, the causal agent of cryptococcosis, was found in the catkins and vegetative buds, corroborating previous work indicating that the plant surface supported the sexual cycle of this human pathogen. The RNA-Seq profile revealed several species of the endophytic nitrogen fixing Actinobacteria. Another bacterial species implicated in aerobic biodegradation of methyl tert-butyl ether (Methylibium petroleiphilum) is also found in the root. RNA encoding proteins from the pea aphid were found in the leaves and vegetative buds, while a serine protease from mosquito with significant homology to a female reproductive tract protease from Drosophila mojavensis in the vegetative bud suggests egg-laying activities. The comprehensive analysis of RNA-seq data present also unraveled detailed, tissue-specific information of ~400 transcripts encoded by the largest family of resistance (R) genes (NBS-LRR), which possibly rationalizes the resistance of the specific walnut plant to the pathogens detected. Thus, we elucidate the biodiversity and possible plant–microbe interactions in several walnut (Juglans regia) tissues in California using deep RNA-Seq profiling.
机译:Deep RNA-Seq分析,一种用于定量转录水平的革命性方法,尽管有严格的方案,但通常仍包含来自其他共存生物的非特异性转录本。使用最近发布的核桃基因组序列作为过滤器,我们对从20种不同组织获得的RNA-Seq转录组谱进行了广泛的分析,以提取加利福尼亚核桃生态系统中的生物多样性和可能的​​植物-微生物相互作用。由于被分析的转录本的残留性质无法提供足够的信息来鉴定确切的菌株,因此推断仅限于属水平。通过3-磷酸甘油醛脱氢酶的存在,在根部检测到了致病性卵菌疫霉菌。柳杉球菌和营养芽中发现了隐球菌的病原体隐球菌,证实了以前的工作表明植物表面支持了这种人类病原体的性周期。 RNA-Seq图谱显示了几种内生固氮放线菌。在根部还发现了另一种与甲基叔丁基醚(甲基化石油汽油)有氧生物降解有关的细菌。在叶子和营养芽中发现了豌豆蚜虫的RNA编码蛋白,而在营养芽中,蚊子的丝氨酸蛋白酶与果蝇的雌性生殖道蛋白酶具有显着的同源性,提示卵子活动。对RNA-seq数据的全面分析还揭示了由最大抗性(R)基因家族(NBS-LRR)编码的约400个转录本的组织特异性详细信息,这可能使特定核桃植物对大豆的抗性合理化。检测到病原体。因此,我们使用深RNA-Seq谱图阐明了加利福尼亚几个核桃(Juglans regia)组织中的生物多样性和可能的​​植物-微生物相互作用。

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