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Transcriptome assembly and annotation of johnsongrass (Sorghum halepense) rhizomes identify candidate rhizome‐specific genes

机译:约翰逊草(高粱)的根状茎的转录组装配和注释可识别候选的根状茎特异性基因

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Rhizomes facilitate the wintering and vegetative propagation of many perennial grasses. Sorghum halepense (johnsongrass) is an aggressive perennial grass that relies on a robust rhizome system to persist through winters and reproduce asexually from its rootstock nodes. This study aimed to sequence and assemble expressed transcripts within the johnsongrass rhizome. A de novo transcriptome assembly was generated from a single johnsongrass rhizome meristem tissue sample. A total of 141,176 probable protein‐coding sequences from the assembly were identified and assigned gene ontology terms using Blast2GO. Estimated expression analysis and BLAST results were used to reduce the assembly to 64,447 high‐confidence sequences. The johnsongrass assembly was compared to Sorghum bicolor , a related nonrhizomatous species, along with an assembly of similar rhizome tissue from the perennial grain crop Thinopyrum intermedium . The presence/absence analysis yielded a set of 98 expressed johnsongrass contigs that are likely associated with rhizome development.
机译:根茎促进许多多年生草的越冬和无性繁殖。高粱halepense(johnsongrass)是一种具侵略性的多年生草,其依赖于强大的根茎系统在冬季持续存在并从其根茎节无性繁殖。这项研究的目的是在约翰逊草根茎内测序和组装表达的转录本。从单个johnsongrass根茎分生组织样品中产生了一个从头转录组。使用Blast2GO识别并鉴定了来自该程序集的141,176个可能的蛋白质编码序列,并为其分配了基因本体术语。使用估计的表达分析和BLAST结果将装配减少到64,447个高可信度序列。将约翰逊草集与相关的非根瘤菌高粱双色进行了比较,并与多年生禾谷类间叶op草的类似根茎组织进行了比较。存在/不存在分析产生一组可能与根茎发育相关的98个表达的约翰逊草重叠群。

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