The NPGS Sudanese sorghum core collection encloses novel grain mold resistant germplasm

Author:

Cuevas Hugo E.,Prom Louis K.

Abstract

AbstractGrain mold is one of the most devasting diseases in sorghum [Sorghum bicolor L. (Moench)] that affects the endosperm and deteriorates the pericarp tissue, reducing the quality of the grain. Today, sorghum breeding programs have a limited number of sources of resistance for the development of resistant cultivars. Therefore, the USDA-Agriculture Research Service, National Plant Germplasm System Sudan core collection was assessed to identify new sources of grain mold resistance based on seed emergence and deterioration. A total of 246 accessions were evaluated for two years and a subset of 46 accessions with grain mold resistance were subsequently evaluated for two additional years together with 11 breeding resistant lines from the sorghum association panel. The analysis identified 39 grain mold resistance accessions including seven that showed both high seedling emergence (> 82%) and low seed deterioration (< 2.15). Phylogenetic analysis revealed that five accessions (PI 570382, PI 570776, PI 570330, PI 570702, and PI 570348) that clustered distantly from reference sets and showed both high seedling emergence and low seed deterioration can be classified as new resistance sources. Genome-wide association analysis using 147,069 SNPs identified two genomic regions in chromosome 2 and 3 associated with seedling emergence rate and seed deterioration, respectively. The analysis of both genomic regions found two genes of interest associated with phenylpropanoid metabolic process and phosphorylase kinase. These Sudanese grain mold resistance accessions provide new genetically diverse germplasm for breeding programs and insights in the defense resistance responses.

Funder

USDA-ARS Current Research Information System

Publisher

Springer Science and Business Media LLC

Reference56 articles.

1. Abdalla H, Gamar Y (2011) Climate change: selection of sorghum genotype with wide adaptation, AG-17, for rain-fed areas of Sudan. Int J AgriSci 1(3):144–155

2. Ackerman A, Wenndt A, Boyles R (2021) The sorghum grain mold disease complex: pathogens, host responses, and the bioactive metabolites at play. Front Plant Sci 12:660171. https://doi.org/10.3389/fpls.2021.660171

3. Aruna C, Cheruku D (2019) Genetic improvement of grain sorghum. In: Aruna C, Visarada KBRS, Venkatesh Bhat B, Tonapi VA (eds) Breeding sorghum for diverse end uses. Elsevier, Amsterdam, pp 157–173

4. Bandyopadhyay R, Butler DR, Chandrashekar A, Reddy RK, Navi SS (2000) Biology, epidemiology and management of sorghum grain mold. In: Chandrashekar A, Bandyopadhyay R, Hall AH (eds) Technical and institutional options for sorghum grain mold management: proceedings of an international consultation, 18–19 May 2000. ICRISAT, Patancheru, Andhara Pradesh, India, pp 34–71

5. Benjamini Y, Hochberg Y (1995) Controlling the false discovery rate: a practical and powerful approach to multiple testing. J R Stat Soc Ser B Stat Methodol 57(1):289–300. https://doi.org/10.1111/j.2517-6161.1995.tb02031.x

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