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Genome-Wide Analysis of the TCP Gene Family in Switchgrass (Panicum virgatum L.)

机译:SwitchGrass中TCP基因家族的基因组分析(Panicum Virgatum L.)

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摘要

The plant-specific transcription factor TCPs play multiple roles in plant growth, development, and stress responses. However, a genome-wide analysis of TCP proteins and their roles in salt stress has not been declared in switchgrass (Panicum virgatum L.). In this study, 42 PvTCP genes (PvTCPs) were identified from the switchgrass genome and 38 members can be anchored to its chromosomes unevenly. Nine PvTCPs were predicted to be microRNA319 (miR319) targets. Furthermore, PvTCPs can be divided into three clades according to the phylogeny and conserved domains. Members in the same clade have the similar gene structure and motif localization. Although all PvTCPs were expressed in tested tissues, their expression profiles were different under normal condition. The specific expression may indicate their different roles in plant growth and development. In addition, approximately 20 cis-acting elements were detected in the promoters of PvTCPs, and 40% were related to stress response. Moreover, the expression profiles of PvTCPs under salt stress were also analyzed and 29 PvTCPs were regulated after NaCl treatment. Taken together, the PvTCP gene family was analyzed at a genome-wide level and their possible functions in salt stress, which lay the basis for further functional analysis of PvTCPs in switchgrass.
机译:植物特异性转录因子TCP在植物生长,发育和应力反应中发挥多种作用。然而,在SwitchGrass(Panicum Virgatum L.)中尚未宣布对TCP蛋白的基因组分析及其在盐胁迫中的作用。在该研究中,从切换基因组中鉴定了42个PVTCP基因(PVTCP),38个成员可以不均匀地锚定到其染色体上。预计九个PVTCP是MicroRNA319(MiR319)靶标。此外,PVTCP可根据系统发育和保守结构域分为三个分支。同一思工中的成员具有类似的基因结构和基序本地化。尽管在测试组织中表达了所有PVTCP,但它们的表达谱在正常情况下不同。特定表达可能表明其在植物生长和发育中的不同作用。此外,在PVTCP的启动子中检测到大约20个CIS作用元件,40%与应力反应有关。此外,还分析了PVTCP的表达谱,并在NaCl处理后调节29pVTCP。在一起携带PVTCP基因系列在基因组 - 宽的水平下分析及其在盐胁迫下的可能功能,这为ExpressGrass中的PVTCP进行了进一步的功能分析。

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