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抗枯萎杂交番石榴(番石榴×草莓番石榴)中MYB家族基因的电子挖掘与特征分析

In-silico mining and characterization of MYB family genes in wilt-resistant hybrid guava (Psidium guajava × Psidium molle).

作者信息

Ahmad Israr, Soni Sumit K, M Muthukumar, Pandey Devendra

机构信息

Division of Crop Improvement and Biotechnology, ICAR-Central Institute for Subtropical Horticulture, Rehmankhera, P.O. Kakori, Lucknow, Uttar Pradesh, 226101, India.

出版信息

J Genet Eng Biotechnol. 2023 Jun 30;21(1):74. doi: 10.1186/s43141-023-00528-3.

Abstract

BACKGROUND

The MYB family is one of the most significant groups of transcription factors in plants. However, several MYBs have been linked to secondary metabolism and are important for determining the color of fruit's peel and pulp. Despite being a substantial fruit crop in tropical and subtropical areas of the world, wilt-resistant hybrid guava (Psidium guajava × Psidium molle; PGPM) has not yet been the subject of a thorough examination. This study's goal was to assess the expression of MYB in guava fruit pulp, roots, and seeds to predict its function by in silico analysis of the guava root transcriptome data.

RESULTS

In the current study, we have mined the MYBs family of MYB genes from the transcriptome of the PGPM guava root. We have mined 15 distinct MYB transcription factor genes/transcripts viz MYB3, MYB4, MYB23, MYB86, MYB90, MYB308, MYB5, MYB82, MYB114, MYB6, MYB305, MYB44, MYB51, MYB46, and MYB330. From the analyses, it was found that R2-MYB and R3-MYB domains are conserved in all known guava MYB proteins. The expression of six different MYB TFs was examined using semi-quantitative RT-PCR in "Shweta" pulp (white colour pulp), "Lalit" pulp (red color pulp), "Lalit" root, and "Lalit" seed.

CONCLUSION

There were 15 MYB family members observed in guava. They were unequally distributed across the chromosomes, most likely as a result of gene duplication. Additionally, the expression patterns of the particular MYBs showed that MYB may be involved in the control of wilt, fruit ripening, seed development, and root development. Our results allow for a more thorough functional characterization of the guava MYB family genes and open the door to additional research into one essential MYB transcription factor family of genes and its involvement in the growth and ripening of guava fruit.

摘要

背景

MYB家族是植物中最重要的转录因子家族之一。然而,一些MYB与次生代谢有关,对决定果实果皮和果肉的颜色很重要。尽管番石榴是世界热带和亚热带地区的重要水果作物,但抗枯萎杂交番石榴(Psidium guajava×Psidium molle;PGPM)尚未得到深入研究。本研究的目的是通过对番石榴根转录组数据的计算机分析,评估MYB在番石榴果肉、根和种子中的表达,以预测其功能。

结果

在本研究中,我们从PGPM番石榴根的转录组中挖掘了MYB基因的MYB家族。我们挖掘出了15个不同的MYB转录因子基因/转录本,即MYB3、MYB4、MYB23、MYB86、MYB90、MYB308、MYB5、MYB82、MYB114、MYB6、MYB305、MYB44、MYB51、MYB46和MYB330。分析发现,R2-MYB和R3-MYB结构域在所有已知的番石榴MYB蛋白中都是保守的。使用半定量RT-PCR检测了六种不同MYB转录因子在“Shweta”果肉(白色果肉)、“Lalit”果肉(红色果肉)、“Lalit”根和“Lalit”种子中的表达。

结论

在番石榴中观察到15个MYB家族成员。它们在染色体上分布不均,很可能是基因复制导致的。此外,特定MYB的表达模式表明,MYB可能参与了枯萎病、果实成熟、种子发育和根发育的调控。我们的结果有助于更全面地对番石榴MYB家族基因进行功能表征,并为进一步研究一个重要的MYB转录因子家族基因及其在番石榴果实生长和成熟中的作用打开了大门。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0df8/10313629/1975bdecaf6c/43141_2023_528_Fig1_HTML.jpg

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