Genome-Wide Characterization and Sequence Polymorphism Analyses of Glycine max Fibrillin (FBN) Revealed Its Role in Response to Drought Condition

Author:

Zafer Muhammad Zeshan12,Tahir Muhammad Hammad Nadeem2,Khan Zulqurnain12ORCID,Sajjad Muhammad3ORCID,Gao Xiangkuo4,Bakhtavar Muhammad Amir2,Waheed Ummara2,Siddique Maria5,Geng Zhide4,Ur Rehman Shoaib12ORCID

Affiliation:

1. SINO-PAK Joint Research Laboratory, Institute of Plant Breeding and Biotechnology, Muhammad Nawaz Shareef, University of Agriculture, Multan 66000, Pakistan

2. Institute of Plant Breeding and Biotechnology, Muhammad Nawaz Shareef, University of Agriculture, Multan 66000, Pakistan

3. Department of Biosciences, COMSATS University, Islamabad (CUI), Park Road, Islamabad 45550, Pakistan

4. Institute of Food Crops, Yunnan Academy of Agricultural Sciences, Kunming 650204, China

5. Department of Environmental Sciences, COMSATS University Islamabad, Abbottabad Campus, Abbottabad 22060, Pakistan

Abstract

The fibrillin (FBN) gene family is widely distributed in all photosynthetic organisms. Members of this gene family are involved in plant growth and development and their response to various biotic and abiotic stress factors. In this study, 16 members of FBN were identified in Glycine max and characterized by using different bioinformatics tools. Phylogenetic analysis classified FBN genes into seven groups. The presence of stress-related cis-elements in the upstream region of GmFBN highlighted their role in tolerance against abiotic stresses. To further decipher the function, physiochemical properties, conserved motifs, chromosomal localization, subcellular localization, and cis-acting regulatory elements were also analyzed. Gene expression analysis based on FPKM values revealed that GmFBNs greatly enhanced soybean drought tolerance and controlled the expression of several genes involved in drought response, except for GmFBN-4, GmFBN-5, GmFBN-6, GmFBN-7 and GmFBN-9. For high throughput genotyping, an SNP-based CAPS marker was also developed for the GmFBN-15 gene. The CAPS marker differentiated soybean genotypes based on the presence of either the GmFBN-15-G or GmFBN-15-A alleles in the CDS region. Association analysis showed that G. max accessions containing the GmFBN-15-A allele at the respective locus showed higher thousand seed weight compared to accessions containing the GmFBN-15-G allele. This research has provided the basic information to further decipher the function of FBN in soybean.

Funder

Key Technology and Science Promotion Cooperation Based on the Whole Industrial Chain of Bean

Punjab Agricultural Research Board

Publisher

MDPI AG

Subject

Genetics (clinical),Genetics

Reference32 articles.

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2. Characterization of Histone H3 gene family reveals that GmHH3-3 is associated with higher seed weight in Glycine max;Fatima;Front. Genet.,2022

3. De novo assembly of soybean wild relatives for pan-genome analysis of diversity and agronomic traits;Li;Nat. Biotechnol.,2014

4. Fibrillin 5 is essential for plastoquinone-9 biosynthesis by binding to solanesyl diphosphas in Arabidopsis;Kim;Plant Cell,2015

5. Fibril assembly and carotenoid overaccumulation in chromoplasts: A model for supramolecular lipoprotein structures;Deruere;Plant Cell,1994

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