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首页> 外文期刊>BMC Plant Biology >The core regulatory network of the abscisic acid pathway in banana: genome-wide identification and expression analyses during development, ripening, and abiotic stress
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The core regulatory network of the abscisic acid pathway in banana: genome-wide identification and expression analyses during development, ripening, and abiotic stress

机译:香蕉中脱落酸途径的核心调节网络:在发育,成熟和非生物应激期间基因组鉴定和表达分析

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Background Abscisic acid (ABA) signaling plays a crucial role in developmental and environmental adaptation processes of plants. However, the PYL-PP2C-SnRK2 families that function as the core components of ABA signaling are not well understood in banana. Results In the present study, 24 PYL , 87 PP2C , and 11 SnRK2 genes were identified from banana, which was further supported by evolutionary relationships, conserved motif and gene structure analyses. The comprehensive transcriptomic analyses showed that banana PYL-PP2C-SnRK2 genes are involved in tissue development, fruit development and ripening, and response to abiotic stress in two cultivated varieties. Moreover, comparative expression analyses of PYL-PP2C-SnRK2 genes between BaXi Jiao (BX) and Fen Jiao (FJ) revealed that PYL-PP2C-SnRK2 -mediated ABA signaling might positively regulate banana fruit ripening and tolerance to cold, salt, and osmotic stresses. Finally, interaction networks and co-expression assays demonstrated that the core components of ABA signaling were more active in FJ than in BX in response to abiotic stress, further supporting the crucial role of the genes in tolerance to abiotic stress in banana. Conclusions This study provides new insights into the complicated transcriptional control of PYL-PP2C-SnRK2 genes, improves the understanding of PYL-PP2C-SnRK2 -mediated ABA signaling in the regulation of fruit development, ripening, and response to abiotic stress, and identifies some candidate genes for genetic improvement of banana.
机译:背景技术脱落酸(ABA)信号传导在植物的发育和环境适应过程中起着至关重要的作用。然而,作为ABA信号传导的核心组分的Pyl-PP2C-SNRK2家族在香蕉中不太了解。结果在本研究中,从香蕉中鉴定了24个Pyl,87pp2c和11个SNRK2基因,该基因进一步支持进化关系,保守的基序和基因结构分析。综合转录组分析表明,香蕉Pyl-PP2C-SNRK2基因参与组织发育,果实发育和成熟,以及两种栽培品种中的非生物胁迫的反应。此外,Baxi Jiao(BX)和Fen jiao(FJ)之间的Pyl-PP2C-SNRK2基因的比较表达分析显示Pyl-PP2C-SNRK2介导的ABA信号传导可能会呈正常调节香蕉果实成熟和对寒冷,盐和渗透的耐受性压力。最后,相互作用网络和共表达测定证明,ABA信号传导的核心组分在FJ中比非生物胁迫响应于非生物应激而比BX更活跃,进一步支持基因在香蕉中对非生物胁迫的耐受性的关键作用。结论本研究为Pyl-PP2C-SNRK2基因的复杂转录控制提供了新的见解,改善了对果实发育,成熟和对非生物胁迫的调节中Pyl-PP2C-SNRK2的理解,并识别了一些香蕉遗传改善的候选基因。

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