Genome-Wide Identification of B-Box Gene Family and Expression Analysis Suggest Its Roles in Responses to Cercospora Leaf Spot in Sugar Beet (Beta Vulgaris L.)

Author:

Song He1ORCID,Ding Guangzhou2ORCID,Zhao Chunlei2,Li Yanli2

Affiliation:

1. College of Modern Agriculture and Ecological Environment, Heilongjiang University, Harbin 150080, China

2. Sugar Beet Engineering Research Center of Heilongjiang Province, Harbin 150080, China

Abstract

The B-box (BBX) protein, which is a zinc-finger protein containing one or two B-box domains, plays a crucial role in the growth and development of plants. Plant B-box genes are generally involved in morphogenesis, the growth of floral organs, and various life activities in response to stress. In this study, the sugar beet B-box genes (hereafter referred to as BvBBXs) were identified by searching the homologous sequences of the Arabidopsis thaliana B-box gene family. The gene structure, protein physicochemical properties, and phylogenetic analysis of these genes were systematically analyzed. In this study, 17 B-box gene family members were identified from the sugar beet genome. A B-box domain can be found in all sugar beet BBX proteins. BvBBXs encode 135 to 517 amino acids with a theoretical isoelectric point of 4.12 to 6.70. Chromosome localization studies revealed that BvBBXs were dispersed across nine sugar beet chromosomes except chromosomes 5 and 7. The sugar beet BBX gene family was divided into five subfamilies using phylogenetic analysis. The gene architectures of subfamily members on the same evolutionary tree branch are quite similar. Light, hormonal, and stress-related cis-acting elements can be found in the promoter region of BvBBXs. The BvBBX gene family was differently expressed in sugar beet following Cercospora leaf spot infection, according to RT-qPCR data. It is shown that the BvBBX gene family may influence how the plant reacts to a pathogen infection.

Funder

Heilongjiang province economic crop industry technology collaborative innovation system construction project

Publisher

MDPI AG

Subject

Genetics (clinical),Genetics

Reference43 articles.

1. Research progress of zinc finger protein transcription factor family in plants;Li;Trop. Agric. Sci.,2020

2. The Arabidopsis B-Box Zinc Finger Family;Khanna;Plant Cell,2009

3. Zinc Fingers;Klug;FASEB J.,1995

4. Metal Binding Properties, Stability and Reactivity of Zinc Fingers;Kluska;Coord. Chem. Rev.,2018

5. BBX Proteins in Green Plants: Insights into Their Evolution, Structure, Feature and Functional Diversification;Crocco;Gene,2013

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