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Genome-wide identification and characterization of TIFY family genes in Moso Bamboo (Phyllostachys edulis) and expression profiling analysis under dehydration and cold stresses

机译:干旱和低温胁迫下毛竹TIFY家族基因的全基因组鉴定,特征分析及表达谱分析

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摘要

The proteins containing the TIFY domain belong to a plant-specific family of putative transcription factors and could be divided into four subfamilies: ZML, TIFY, PPD and JAZ. They not only function as key regulators of jasmonate hormonal response, but are also involved in responding to abiotic stress. In this study, we identified 24 TIFY genes (PeTIFYs) in Moso bamboo (Phyllostachys edulis) of Poaceae by analyzing the whole genome sequence. One PeTIFY belongs to TIFY subfamily, 18 and five belong to JAZ and ZML subfamilies, respectively. Two equivocal gene models were re-predicted and a putative retrotransposition event was found in a ZML protein. The distribution and conservation of domain or motif, and gene structure were also analyzed. Phylogenetic analysis with TIFY proteins of Arabidopsis and Oryza sativa indicated that JAZ subfamily could be further divided to four groups. Evolutionary analysis revealed intragenomic duplication and orthologous relationship between P. edulis, O. sativa, and B. distachyon, Calculation of the non-synonymous (Ka) and synonymous (Ks) substitution rates and their ratios indicated that the duplication of PeTIFY may have occurred around 16.7 million years. ago (MYA), the divergence time of TIFY family among the P. edulis-O. sativa, P. edulis-B. distachyon, and O. sativa-B. distachyon was approximately 39 MYA, 39 MYA, and 45 MYA, respectively, They appear to have undergone extensive purifying selection during evolution. Transcriptome sequencing revealed that more than 50% of PeTIFY genes could be up-regulated by cold and dehydration stresses, and some PeTIFYs also share homology to know TIFYs involved in abiotic stress tolerance. Our results made insights into TIFY family of Moso bamboo, an economically important non-timber forest resource, and provided candidates for further identification of genes involved in regulating responses to abiotic stress.
机译:含有TIFY结构域的蛋白质属于植物特定的推定转录因子家族,可以分为四个亚家族:ZML,TIFY,PPD和JAZ。它们不仅起着茉莉酸激素反应的关键调节剂的作用,而且还参与了对非生物胁迫的反应。在这项研究中,我们通过分析整个基因组序列,在禾本科的毛竹(Phyllostachys edulis)中鉴定了24个TIFY基因(PeTIFYs)。一个PeTIFY属于TIFY子家族,分别属于18和5,分别属于JAZ和ZML子家族。重新预测了两个模棱两可的基因模型,并在ZML蛋白中发现了一个假定的逆转座事件。还分析了结构域或基序的分布和保守性,以及基因结构。用拟南芥和稻的TIFY蛋白进行的系统发育分析表明,JAZ亚科可进一步分为四类。进化分析揭示了基因组内的重复和可食假单胞菌,紫花苜蓿和B. distachyon之间的直系同源关系,计算非同义(Ka)和同义(Ks)替代率及其比率表明PeTIFY可能已发生重复大约1670万年以前(MYA),TIFY家族在P. edulis-O中的发散时间。紫花苜蓿distachyon和O. sativa-B。 distachyon分别约为39 MYA,39 MYA和45 MYA。它们在进化过程中似乎经历了广泛的纯化选择。转录组测序表明,超过50%的PeTIFY基因可以被寒冷和脱水胁迫上调,并且某些PeTIFY也具有同源性,以了解参与非生物胁迫耐受性的TIFY。我们的研究结果对具有重要经济意义的非木材森林资源毛竹TIFY家族有了深刻见解,并为进一步鉴定参与调节对非生物胁迫响应的基因提供了候选。

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