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商陆叶mRNA转录组及其茉莉酸调控

The Pokeweed Leaf mRNA Transcriptome and Its Regulation by Jasmonic Acid.

作者信息

Neller Kira C M, Klenov Alexander, Hudak Katalin A

机构信息

Department of Biology, York University, Toronto ON, Canada.

出版信息

Front Plant Sci. 2016 Mar 16;7:283. doi: 10.3389/fpls.2016.00283. eCollection 2016.

Abstract

The American pokeweed plant, Phytolacca americana, is recognized for synthesizing pokeweed antiviral protein (PAP), a ribosome inactivating protein (RIP) that inhibits the replication of several plant and animal viruses. The plant is also a heavy metal accumulator with applications in soil remediation. However, little is known about pokeweed stress responses, as large-scale sequencing projects have not been performed for this species. Here, we sequenced the mRNA transcriptome of pokeweed in the presence and absence of jasmonic acid (JA), a hormone mediating plant defense. Trinity-based de novo assembly of mRNA from leaf tissue and BLASTx homology searches against public sequence databases resulted in the annotation of 59 096 transcripts. Differential expression analysis identified JA-responsive genes that may be involved in defense against pathogen infection and herbivory. We confirmed the existence of several PAP isoforms and cloned a potentially novel isoform of PAP. Expression analysis indicated that PAP isoforms are differentially responsive to JA, perhaps indicating specialized roles within the plant. Finally, we identified 52 305 natural antisense transcript pairs, four of which comprised PAP isoforms, suggesting a novel form of RIP gene regulation. This transcriptome-wide study of a Phytolaccaceae family member provides a source of new genes that may be involved in stress tolerance in this plant. The sequences generated in our study have been deposited in the SRA database under project # SRP069141.

摘要

美洲商陆(Phytolacca americana)因能合成商陆抗病毒蛋白(PAP)而闻名,PAP是一种核糖体失活蛋白(RIP),可抑制多种植物和动物病毒的复制。该植物也是一种重金属富集植物,可用于土壤修复。然而,由于尚未对该物种进行大规模测序项目,人们对商陆的应激反应知之甚少。在此,我们对在有和没有茉莉酸(JA,一种介导植物防御的激素)的情况下的商陆mRNA转录组进行了测序。基于Trinity对来自叶片组织的mRNA进行从头组装,并针对公共序列数据库进行BLASTx同源性搜索,结果注释了59096个转录本。差异表达分析确定了可能参与抵御病原体感染和食草动物的JA反应基因。我们证实了几种PAP同工型的存在,并克隆了一种潜在的新型PAP同工型。表达分析表明,PAP同工型对JA的反应不同,这可能表明它们在植物体内具有特定的作用。最后,我们鉴定出52305对天然反义转录本,其中四对包含PAP同工型,这表明了一种新型的RIP基因调控形式。这项对商陆科家族成员的全转录组研究提供了可能参与该植物抗逆性的新基因来源。我们研究中生成的序列已存入SRA数据库,项目编号为#SRP069141。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c4f/4792876/e10b3a7dc8a8/fpls-07-00283-g001.jpg

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