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Identification, Expression, and Interaction Network Analyses of the CDPK Gene Family Reveal Their Involvement in the Development, Ripening, and Abiotic Stress Response in Banana

机译:CDPK基因家族的鉴定,表达和相互作用网络分析揭示了他们参与香蕉的发展,成熟和非生物应激反应

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摘要

Calcium-dependent protein kinases (CDPKs) play vital roles in the regulation of plant growth, development, and tolerance to various abiotic stresses. However, little information is available for this gene family in banana. In this study, 44 CDPKs were identified in banana and were classified into four groups based on phylogenetic, gene structure, and conserved motif analyses. The majority of MaCDPKs generally exhibited similar expression patterns in the different tissues. Transcriptome analyses revealed that many CDPKs showed strong transcript accumulation at the early stages of fruit development and postharvest ripening in both varieties. Interaction network and co-expression analysis further identified some CDPKs-mediated network that was potentially active at the early stages of fruit development. Comparative expression analysis suggested that the high levels of CDPK expression in FJ might be related to its fast ripening characteristic. CDPK expression following the abiotic stress treatments indicated a significant transcriptional response to osmotic, cold, and salt treatment, as well as differential expression profiles, between BX and FJ. The findings of this study elucidate the transcriptional control of CDPKs in development, ripening, and the abiotic stress response in banana. Some tissue-specific, development/ripening-dependent, and abiotic stress-responsive candidate MaCDPK genes were identified for further genetic improvement of banana.
机译:钙依赖性蛋白激酶(CDPKS)在调节植物生长,发育和对各种非生物应激的耐受性的调节中起重要作用。但是,在香蕉中的这种基因家庭可以使用很少的信息。在本研究中,在香蕉中鉴定了44个CDPK,并基于系统发育,基因结构和保守的基序分析分为四组。大多数MacDPK通常在不同组织中表现出类似的表达模式。转录组分析表明,许多CDPK在果实发育早期阶段显示出强烈的成绩单积累,并在两种品种中成熟。相互作用网络和共表达分析进一步确定了一些CDPKS介导的网络,该网络在水果发育的早期阶段可能有效。比较表达分析表明,FJ中的高水平CDPK表达可能与其快速成熟特性有关。非生物应激处理后的CDPK表达表明BX和FJ之间的渗透性,冷和盐处理以及差异表达谱的显着转录反应。本研究的结果阐明了香蕉中发育,成熟和非生物应激反应的CDPK的转录控制。鉴定了一些组织特异性,发育/熟化的和非生物胁迫响应候选麦克风基因以进一步遗传改善香蕉。

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