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Metacaspase gene family in Rosaceae genomes: Comparative genomic analysis and their expression during pear pollen tube and fruit development

机译:枸杞基因组中的Metacaspase基因家族:比较基因组分析及其在梨花花管和水果发育中的表达

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摘要

Metacaspase (MC), which is discovered gene family with distant caspase homologs in plants, fungi, and protozoa, may be involved in programmed cell death (PCD) processes during plant development and respond abiotic and biotic stresses. To reveal the evolutionary relationship of MC gene family in Rosaceae genomes, we identified 8, 7, 8, 12, 12, and 23 MC genes in the genomes of Fragaria vesca, Prunus mume, Prunus persica, Pyrus communis, Pyrus bretschneideri and Malus domestica, respectively. Phylogenetic analysis suggested that the MC genes could be grouped into three clades: Type I*, Type I and Type II, which was supported by gene structure and conserved motif analysis. Microsynteny analysis revealed that MC genes present in the corresponding syntenic blocks of P. communis, P. bretschneideri and M. domestica, and further suggested that large-scale duplication events play an important role in the expansion of MC gene family members in these three genomes than other Rosaceae plants (F. vesca, P. mume and P. persica). RNA-seq data showed the specific expression patterns of PbMC genes in response to drought stress. The expression analysis of MC genes demonstrated that PbMC01 and PbMC03 were able to be detected in all four pear pollen tubes and seven fruit development stages. The current study highlighted the evolutionary relationship and duplication of the MC gene family in these six Rosaceae genomes and provided appropriate candidate genes for further studies in P. bretschneideri.
机译:在植物,真菌和原生动物中发现具有远处胱天蛋白酶同源物的基因族的METACASPase(MC)可参与植物发育期间编程的细胞死亡(PCD)过程,并响应非生物和生物应激。为了揭示麦克西群基因组中MC基因家族的进化关系,我们鉴定了Fragaria vesca,Prunus Mume,Prunus Persica,Pyrus Communis,Pyrus Bretschneideri和Malus domesta的基因组中的8,7,8,12,12和23个MC基因, 分别。系统发育分析表明,MC基因可以分为三个片状:I型*,I型和II型,由基因结构和保守的基序分析支持。 MicroSynteny分析表明,P. Communis,P.Bretschneideri和Muidenta的相应同步块中存在的MC基因,并进一步表明大规模重复事件在这三种基因组中扩展MC基因家族成员中发挥着重要作用而不是其他蔷薇纹植物(F. Vesca,P. Mume and P. Persica)。 RNA-SEQ数据显示响应干旱胁迫的PBMC基因的特异性表达模式。 MC基因的表达分析证明PBMCO1和PBMC03能够在所有四种梨花卷管和七种果实开发阶段中检测到。目前的研究强调了这六种蔷薇科基因组中MC基因家族的进化关系和重复,并为进一步研究P. Bretschneideri提供了适当的候选基因。

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