Kenaf cyclic nucleotide-gated channel gene HcCNGC27 confers plant drought stress tolerance and involved in flowering regulation.

IF 2.3 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Canni Chen, Huiping Xiao, Jiao Yue, Xu Wang, Caijin Wang, Rujian Wei, Dengjie Luo, Peng Chen
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引用次数: 0

Abstract

Cyclic Nucleotide-Gated Channel (CNGC) gene consists a large family and plays an important role in plant growth and development, biotic and abiotic stresses, yet their functions in non-model crops like kenaf (Hibiscus cannabinus L.), a highly stress-resistant bast fiber crop, remain poorly understood. To investigate the role in kenaf abiotic stress response and plant development regulation, we characterized the HcCNGC27 gene in kenaf. Our study aimed to elucidate the role of HcCNGC27 in drought stress response and its impact on plant development. HcCNGC27 was identified subcellularly localized to the plasma membrane. Expression analysis showed that HcCNGC27 is ubiquitously expressed across various tissues including roots, stems, leaves, flowers, and seeds, with the highest expression observed in flowers. Importantly, HcCNGC27 was significantly induced under drought stress conditions. To investigate the function of HcCNGC27, we performed virus-induced gene silencing (VIGS) in kenaf and overexpression in Arabidopsis thaliana. Silencing of HcCNGC27 in kenaf resulted in a dwarf phenotype and reduced drought stress tolerance, evidenced by decreased antioxidant enzyme activities, increased reactive oxygen species (ROS) accumulation, and decreased osmoregulatory substances content. Additionally, the expression levels of antioxidant enzyme-related genes and stress-responsive genes were markedly down-regulated in the silenced lines. Conversely, overexpression of HcCNGC27 in Arabidopsis thaliana enhanced drought stress tolerance, characterized by stronger protective enzyme activity, better ROS scavenging capacity, improved osmotic adjustment, higher total chlorophyll content, lower death rate, and significant up-regulation of stress-responsive genes. Moreover, overexpression of HcCNGC27 delayed flowering in Arabidopsis thaliana, as indicated by qRT-PCR analysis showing significant down-regulation of AtFT and AtSOC1 and up-regulation of AtFLC in the overexpression lines compared to wild-type controls. In summary, HcCNGC27 emerges as a dual-function regulator enhancing drought tolerance via ROS scavenging and osmotic adjustment while delaying flowering may through modulation of the FT/SOC1/FLC pathway.

红麻环核苷酸门控通道基因HcCNGC27赋予植物抗旱性并参与开花调控。
环状核苷酸门控通道(CNGC)基因是一个大家族,在植物的生长发育、生物胁迫和非生物胁迫中起着重要作用,但其在非模式作物(如高抗逆性植物红麻)中的功能尚不清楚。为了研究HcCNGC27基因在红麻非生物胁迫响应和植物发育调控中的作用。本研究旨在阐明HcCNGC27在干旱胁迫响应中的作用及其对植物发育的影响。HcCNGC27被鉴定为亚细胞定位于质膜。表达分析表明,HcCNGC27在根、茎、叶、花和种子等组织中普遍表达,其中花中表达量最高。重要的是,HcCNGC27在干旱胁迫条件下被显著诱导。为了研究HcCNGC27的功能,我们在红麻中进行了病毒诱导的基因沉默(VIGS),并在拟南芥中进行了过表达。HcCNGC27基因的沉默导致红麻矮化表型,抗旱性降低,表现为抗氧化酶活性降低,活性氧(ROS)积累增加,渗透调节物质含量降低。此外,抗氧化酶相关基因和应激反应基因的表达水平在沉默系中明显下调。相反,HcCNGC27在拟南芥中的过表达增强了对干旱胁迫的耐受性,表现为保护酶活性增强、清除ROS能力增强、渗透调节能力增强、总叶绿素含量增加、死亡率降低、胁迫应答基因显著上调。此外,HcCNGC27过表达在拟南芥中延迟开花,qRT-PCR分析显示,与野生型对照相比,过表达系中AtFT和AtSOC1显著下调,AtFLC显著上调。综上所述,HcCNGC27作为一种双功能调节剂,通过清除ROS和调节渗透来增强抗旱性,同时可能通过调节FT/SOC1/FLC通路延迟开花。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular Genetics and Genomics
Molecular Genetics and Genomics 生物-生化与分子生物学
CiteScore
5.10
自引率
3.20%
发文量
134
审稿时长
1 months
期刊介绍: Molecular Genetics and Genomics (MGG) publishes peer-reviewed articles covering all areas of genetics and genomics. Any approach to the study of genes and genomes is considered, be it experimental, theoretical or synthetic. MGG publishes research on all organisms that is of broad interest to those working in the fields of genetics, genomics, biology, medicine and biotechnology. The journal investigates a broad range of topics, including these from recent issues: mechanisms for extending longevity in a variety of organisms; screening of yeast metal homeostasis genes involved in mitochondrial functions; molecular mapping of cultivar-specific avirulence genes in the rice blast fungus and more.
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