Genome-wide identification and in-silico expression analysis of CCO gene family in sunflower (Helianthus annnus) against abiotic stress

IF 3.9 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Plant Molecular Biology Pub Date : 2024-04-03 DOI:10.1007/s11103-024-01433-0
Adnan Sami, Muhammad Zeeshan Haider, Muhammad Shafiq, Saleh Sadiq, Farooq Ahmad
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Abstract

Carotenoid cleavage oxygenases (CCOs) enzymes play an important role in plant growth and development by producing a wide array of apocarotenoids and their derivatives. These compounds are vital for colouring flowers and fruits and synthesizing plant hormones such as abscisic acid and strigolactones. Despite their importance, the gene family responsible for CCO enzymes in sunflowers has not been identified. In this study, we identify the CCO genes of the sunflower plant to fill this knowledge gap. Phylogenetic and synteny analysis indicated that the Helianthus annnus CCO (HaCCO) genes were conserved in different plant species and they could be divided into three subgroups based on their conserved domains. Analysis using MEME tool and multiple sequence alignment identified conserved motifs in the HaCCO gene sequence. Cis-regulatory elements (CREs) analysis of the HaCCO genes indicated the presence of various responsive elements related to plant hormones, development, and responses to both biotic and abiotic stresses. This implies that these genes may respond to plant hormones, developmental cues, and drought stress, offering potential applications in the development of more resistant crops. Genes belonging to the 9-cis-epoxy carotenoid dioxygenases (NCED) subgroups predominantly exhibited chloroplast localization, whereas the genes found in other groups are primarily localized in the cytoplasm. These 21 identified HaCCOs were regulated by 60 miRNAs, indicating the crucial role of microRNAs in gene regulation in sunflowers. Gene expression analysis under drought stress revealed significant up-regulation of HaNCED16 and HaNCED19, genes that are pivotal in ABA hormone biosynthesis. During organ-specific gene expression analysis, HaCCD12 and HaCCD20 genes exhibit higher activity in leaves, indicating a potential role in leaf pigmentation. This study provides a foundation for future research on the regulation and functions of the CCO gene family in sunflower and beyond. There is potential for developing molecular markers that could be employed in breeding programs to create new sunflower lines resistant to biotic and abiotic stresses.

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向日葵(Helianthus annnus)抗非生物胁迫的 CCO 基因家族的全基因组鉴定和内部表达分析
类胡萝卜素裂解加氧酶(CCOs)在植物生长和发育过程中发挥着重要作用,能产生大量类胡萝卜素及其衍生物。这些化合物对花朵和果实着色以及合成脱落酸和赤霉内酯等植物激素至关重要。尽管它们非常重要,但负责向日葵中 CCO 酶的基因家族尚未确定。在本研究中,我们鉴定了向日葵植物的 CCO 基因,以填补这一知识空白。系统发育和同源关系分析表明,向日葵 CCO(HaCCO)基因在不同植物物种中是保守的,根据其保守结构域可将其分为三个亚群。利用 MEME 工具和多序列比对分析确定了 HaCCO 基因序列中的保守基序。对 HaCCO 基因的顺式调控元件(CREs)分析表明,这些基因中存在与植物激素、发育以及对生物和非生物胁迫的反应有关的各种响应元件。这意味着这些基因可能会对植物激素、发育线索和干旱胁迫做出反应,从而为开发抗性更强的作物提供了潜在的应用前景。属于 9-顺式环氧类胡萝卜素二氧酶(NCED)亚组的基因主要表现为叶绿体定位,而其他亚组的基因则主要定位在细胞质中。这 21 个已发现的 HaCCOs 受 60 个 miRNAs 的调控,表明 microRNAs 在向日葵基因调控中的关键作用。干旱胁迫下的基因表达分析表明,在 ABA 激素生物合成中起关键作用的基因 HaNCED16 和 HaNCED19 有显著上调。在器官特异性基因表达分析中,HaCCD12和HaCCD20基因在叶片中表现出更高的活性,表明它们在叶片色素沉着中可能发挥作用。这项研究为今后研究向日葵及其他植物中 CCO 基因家族的调控和功能奠定了基础。开发分子标记的潜力巨大,这些标记可用于育种计划,以培育抗生物和非生物胁迫的向日葵新品系。
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来源期刊
Plant Molecular Biology
Plant Molecular Biology 生物-生化与分子生物学
自引率
2.00%
发文量
95
审稿时长
1.4 months
期刊介绍: Plant Molecular Biology is an international journal dedicated to rapid publication of original research articles in all areas of plant biology.The Editorial Board welcomes full-length manuscripts that address important biological problems of broad interest, including research in comparative genomics, functional genomics, proteomics, bioinformatics, computational biology, biochemical and regulatory networks, and biotechnology. Because space in the journal is limited, however, preference is given to publication of results that provide significant new insights into biological problems and that advance the understanding of structure, function, mechanisms, or regulation. Authors must ensure that results are of high quality and that manuscripts are written for a broad plant science audience.
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