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Systematic analysis of NAC transcription factors' gene family and identification of post-flowering drought stress responsive members in sorghum

机译:NAC转录因子基因家族的系统分析及高粱开花干旱胁迫响应成员的鉴定

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Key messageSbNAC genes (131) encoding 183 proteins were identified from the sorghum genome and characterized. The expression patterns of SbSNACs were evaluated at three sampling time points under post-flowering drought stress.AbstractNAC proteins are specific transcription factors in plants, playing vital roles in development and response to various environmental stresses. Despite the fact that Sorghum bicolor is well-known for its drought-tolerance, it suffers from grain yield loss due to pre and post-flowering drought stress. In the present study, 131 SbNAC genes encoding 183 proteins were identified from the sorghum genome. The phylogenetic trees were constructed based on the NAC domains of sorghum, and also based on sorghum with Arabidopsis and 8 known NAC domains of other plants, which classified the family into 15 and 19 subfamilies, respectively. Based on the obtained results, 13 SbNAC proteins joined the SNAC subfamily, and these proteins are expected to be involved in response to abiotic stresses. Promoter analysis revealed that all SbNAC genes comprise different stress-associated cis-elements in their promoters. UTRs analysis indicated that 101 SbNAC transcripts had upstream open reading frames, while 39 of the transcripts had internal ribosome entry sites in their 5UTR. Moreover, 298 miRNA target sites were predicted to exist in the UTRs of SbNAC transcripts. The expression patterns of SbSNACs were evaluated in three genotypes at three sampling time points under post-flowering drought stress. Based on the results, it could be suggested that some gene members are involved in response to drought stress at the post-flowering stage since they act as positive or negative transcriptional regulators. Following further functional analyses, some of these genes might be perceived to be promising candidates for breeding programs to enhance drought tolerance in crops.
机译:从高粱基因组鉴定了编码183个蛋白质的关键信息BNAC基因(131)并表征。在开花后干旱胁迫下的三个取样时间点评估SBSNACs的表达模式.AbstractNAc蛋白是植物中的特异性转录因子,在开发和对各种环境压力的反应中起着重要作用。尽管高粱双色众所周知,由于其耐旱性众所周知,因此由于前开花的干旱胁迫而导致粮食产量损失受到群体产量损失。在本研究中,从高粱基因组中鉴定了编码183个蛋白质的131个SBNAC基因。系统发育树是基于高粱的NAC结构域构建的,并且还基于具有拟南芥和8个已知的其他植物的NAC结构域的高粱,分别将家庭分为15和19个亚属植物。基于所得的结果,13个SBNAC蛋白加入了SNAC亚家族,预期这些蛋白质应响应非生物胁迫。启动子分析显示,所有SBNAC基因均包含其启动子中的不同应激相关的顺式元素。 UTRS分析表明,101个SBNAC转录物具有上游开放阅读框架,而39则转录物在其5UTR中具有内部核糖体进入位点。此外,预计将存在于SBNAC转录物的UTR中存在298 miRNA靶位点。在开花后干旱胁迫下的三个取样时间点,在三种基因型中评估SBSNACs的表达模式。基于结果,可以提出一些基因成员响应开花阶段的干旱胁迫而参与,因为它们充当正面或阴性转录调节剂。在进一步的功能分析之后,一些基因可能被认为是有希望的培育方案,以增强作物的耐旱性。

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