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Comparative Transcriptome Profiling of the Maize Primary Crown and Seminal Root in Response to Salinity Stress

机译:盐分胁迫下玉米原冠和精根的转录组比较分析

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摘要

Soil salinity is a major constraint to crop growth and yield. The primary and lateral roots of Arabidopsis thaliana are known to respond differentially to a number of environmental stresses, including salinity. Although the maize root system as a whole is known to be sensitive to salinity, whether or not different structural root systems show differential growth responses to salinity stress has not yet been investigated. The maize primary root (PR) was more tolerant of salinity stress than either the crown root (CR) or the seminal root (SR). To understand the molecular mechanism of these differential growth responses, RNA-Seq analysis was conducted on cDNA prepared from the PR, CR and SR of plants either non-stressed or exposed to 100 mM NaCl for 24 h. A set of 444 genes were shown to be regulated by salinity stress, and the transcription pattern of a number of genes associated with the plant salinity stress response differed markedly between the various types of root. The pattern of transcription of the salinity-regulated genes was shown to be very diverse in the various root types. The differential transcription of these genes such as transcription factors, and the accumulation of compatible solutes such as soluble sugars probably underlie the differential growth responses to salinity stress of the three types of roots in maize.
机译:土壤盐分是作物生长和产量的主要制约因素。已知拟南芥的初生和侧生根对多种环境胁迫(包括盐分)有不同的反应。尽管已知玉米根系总体上对盐分敏感,但是尚未研究不同结构根系是否显示出对盐分胁迫的不同生长响应。玉米主根(PR)比冠根(CR)或精根(SR)更能耐受盐分胁迫。为了了解这些差异生长反应的分子机制,对从无胁迫或暴露于100 mM NaCl的植物中PR,CR和SR制备的cDNA进行了RNA-Seq分析24小时。已显示一组444个基因受盐胁迫的调控,并且与植物盐胁迫响应相关的许多基因的转录模式在各种类型的根之间明显不同。盐度调节基因的转录模式显示在各种根类型中非常不同。这些基因(例如转录因子)的差异转录以及相容性溶质(例如可溶性糖)的积累可能是玉米中三种类型根对盐分胁迫的差异生长响应的基础。

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