参与树牡丹花青素调控的 PsMYB57 的功能鉴定。

IF 2.9 Q2 Biochemistry, Genetics and Molecular Biology
Yanzhao Zhang, Shuzhen Xu, Yanwei Cheng, Jing Wang, Xiangxiang Wang, Runxiao Liu, Jianming Han
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引用次数: 10

摘要

背景:R2R3 髓母细胞增多症(MYB)基因广泛分布于植物中,是最大的转录因子基因家族之一。它们在控制发育、新陈代谢和胁迫反应的调控网络中发挥着重要作用。有关树牡丹功能基因的研究仍处于起步阶段。迄今为止,有关 MYB 基因的报道还很少:本研究通过转录组测序构建了一个全面的参考基因组,以获得 R2R3 MYB 基因。我们对 8 种不同组织的转录组进行了测序,共获得 92,837 个单基因,N50 为 1662 nt。共有 48,435 个单个基因(77.98%)在公共数据库中进行了功能注释。根据组装结果,我们确定了 57 个含有全长开放阅读框的 R2R3 MYB 基因,并通过系统进化分析将其聚类为 35 个支系。PsMYB57 与拟南芥中的花青素调控基因聚类,主要在芽和幼叶中转录。过表达 PsMYB57 能诱导烟草花青素的积累,并上调四个检测到的花青素结构基因,包括 NtCHS、NtF3'H、NtDFR 和 NtANS。两个内源 bHLH 基因 NtAn1a 和 NtAn1b 也被上调,它们可能与 PsMYB57 共同调控花青素结构基因:我们的研究为选择候选 MYB 基因以进一步开展牡丹功能研究提供了有益的参考。PsMYB57的功能分析有助于了解牡丹无性器官的颜色积累。在分子育种中,PsMYB57也是一种很有希望改善植物颜色的资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Functional identification of PsMYB57 involved in anthocyanin regulation of tree peony.

Functional identification of PsMYB57 involved in anthocyanin regulation of tree peony.

Functional identification of PsMYB57 involved in anthocyanin regulation of tree peony.

Functional identification of PsMYB57 involved in anthocyanin regulation of tree peony.

Background: R2R3 myeloblastosis (MYB) genes are widely distributed in plants and comprise one of the largest transcription factor gene families. They play important roles in the regulatory networks controlling development, metabolism, and stress responses. Researches on functional genes in tree peony are still in its infancy. To date, few MYB genes have thus far been reported.

Results: In this study, we constructed a comprehensive reference gene set by transcriptome sequencing to obtain R2R3 MYB genes. The transcriptomes of eight different tissues were sequenced, and 92,837 unigenes were obtained with an N50 of 1662 nt. A total of 48,435 unigenes (77.98%) were functionally annotated in public databases. Based on the assembly, we identified 57 R2R3 MYB genes containing full-length open reading frames, which clustered into 35 clades by phylogenetic analysis. PsMYB57 clustered with anthocyanin regulation genes in Arabidopsis and was mainly transcribed in the buds and young leaves. The overexpression of PsMYB57 induced anthocyanin accumulation in tobacco, and four detected anthocyanin structural genes, including NtCHS, NtF3'H, NtDFR, and NtANS, were upregulated. The two endogenous bHLH genes NtAn1a and NtAn1b were also upregulated and may work in combination with PsMYB57 in regulating anthocyanin structural genes.

Conclusions: Our study offers a useful reference to the selection of candidate MYB genes for further functional studies in tree peony. Function analysis of PsMYB57 is helpful to understand the color accumulation in vegetative organs of tree peony. PsMYB57 is also a promising resource to improve plant color in molecular breeding.

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来源期刊
BMC Genetics
BMC Genetics 生物-遗传学
CiteScore
4.30
自引率
0.00%
发文量
77
审稿时长
4-8 weeks
期刊介绍: BMC Genetics is an open access, peer-reviewed journal that considers articles on all aspects of inheritance and variation in individuals and among populations.
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