首页> 外文期刊>Frontiers in Plant Science >NAC transcription factor family genes are differentially expressed in rice during infections with Rice dwarf virus, Rice black-streaked dwarf virus, Rice grassy stunt virus, Rice ragged stunt virus, and Rice transitory yellowing virus
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NAC transcription factor family genes are differentially expressed in rice during infections with Rice dwarf virus, Rice black-streaked dwarf virus, Rice grassy stunt virus, Rice ragged stunt virus, and Rice transitory yellowing virus

机译:NAC转录因子家族基因在水稻矮化病毒,水稻黑纹矮化病毒,水稻草类特技病毒,水稻r特技和水稻短暂黄化病毒感染期间在水稻中差异表达

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Expression levels of the NAC gene family were studied in rice infected with Rice dwarf virus (RDV), Rice black-streaked dwarf virus (RBSDV), Rice grassy stunt virus (RGSV), Rice ragged stunt virus (RRSV), and Rice transitory yellowing virus (RTYV). Microarray analysis showed that 75 (68%) OsNAC genes were differentially regulated during infection with RDV, RBSDV, RGSV, and RRSV compared with the control. The number of OsNAC genes up-regulated was highest during RGSV infection, while the lowest number was found during RTYV infection. These phenomena correlate with the severity of the syndromes induced by the virus infections. Most of the genes in the NAC subgroups NAC22, SND, ONAC2, ANAC34, and ONAC3 were down-regulated for all virus infections. These OsNAC genes might be related to the health stage maintenance of the host plants. Interestingly, most of the genes in the subgroups TIP and SNAC were more highly expressed during RBSDV and RGSV infections. These results suggested that OsNAC genes might be related to the responses induced by the virus infection. All of the genes assigned to the TIP subgroups were highly expressed during RGSV infection when compared with the control. For RDV infection, the number of activated genes was greatest during infection with the S-strain, followed by the D84-strain and the O-strain, with seven OsNAC genes up-regulated during infection by all three strains. The Os12g03050 and Os11g05614 genes showed higher expression during infection with four of the five viruses, and Os11g03310, Os11g03370 , and Os07g37920 genes showed high expression during at least three viral infections. We identified some duplicate genes that are classified as neofunctional and subfunctional according to their expression levels in different viral infections. A number of putative cis -elements were identified, which may help to clarify the function of these key genes in network pathways.
机译:在感染了水稻矮化病毒(RDV),水稻黑纹矮化病毒(RBSDV),水稻草特技病毒(RGSV),水稻Rice特技病毒(RRSV)和水稻短暂变黄的水稻中研究了NAC基因家族的表达水平病毒(RTYV)。基因芯片分析显示,与对照组相比,RDV,RBSDV,RGSV和RRSV感染期间有75个(68%)OsNAC基因受到差异调节。在RGSV感染期间,上调的OsNAC基因的数目最高,而在RTYV感染期间,发现的数目最少。这些现象与病毒感染引起的综合征的严重程度有关。对于所有病毒感染,NAC亚组NAC22,SND,ONAC2,ANAC34和ONAC3中的大多数基因均被下调。这些OsNAC基因可能与宿主植物的健康阶段维持有关。有趣的是,在RBSDV和RGSV感染期间,TIP和SNAC亚组中的大多数基因表达更高。这些结果表明OsNAC基因可能与病毒感染诱导的反应有关。与对照组相比,分配给TIP亚组的所有基因在RGSV感染期间均高表达。对于RDV感染,在用S菌株感染后,激活基因的数量最大,其次是D84菌株和O菌株,在这三种菌株感染期间,七个OsNAC基因上调。 Os12g03050和Os11g05614基因在五种病毒中的四种感染过程中显示出较高的表达,而Os11g03310,Os11g03370和Os07g37920基因在至少三种病毒感染中显示出高表达。我们确定了一些重复的基因,根据它们在不同病毒感染中的表达水平将其分为新功能和亚功能。鉴定了许多推定的顺式元件,这可能有助于阐明这些关键基因在网络途径中的功能。

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