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EcoTILLING Reveals Natural Allelic Variations in Starch Synthesis Key Gene and Its Haplotypes Associated with Higher Thousand Grain Weight. | LitMetric

AI Article Synopsis

  • - Wheat is a key global food source, with its starch being crucial for energy and making up 80% of the grain's weight; manipulating genes involved in starch synthesis can enhance grain weight and yield.
  • - A study of 362 wheat accessions identified 38 single nucleotide polymorphisms (SNPs) in genes related to starch synthesis, using a method called EcoTILLING; 6 SNPs showed significant allele frequencies, with the rest being minor.
  • - In a Chinese mini core collection, specific haplotypes were associated with important traits like thousand grain weight and spike length, suggesting that certain alleles have been favored in breeding, and KASP markers may help improve wheat yield through marker-assisted selection.

Article Abstract

Wheat is a staple food commodity grown worldwide, and wheat starch is a valuable source of energy and carbon that constitutes 80% of the grain weight. Manipulation of genes involved in starch synthesis significantly affects wheat grain weight and yield. plays an important role in starch synthesis and its main function is granule formation. To mine and stack more favorable alleles, single nucleotide polymorphisms (SNPs) of , , and were investigated across 362 wheat accessions by Ecotype-Targeting Induced Local Lesions IN Genome (EcoTILLING). As a result, a total of 38 SNPs in the amplified regions of three genes were identified, of which 10, 15, and 13 were in , , and , respectively. These 38 SNPs were evaluated by using KASP and six SNPs showed an allele frequency >5% whereas the rest were <5%, i.e., considered to be minor alleles. In the Chinese mini core collection, three haplotypes were detected for TaSSIV-A and three for TaSSIV-B. The results of an association study in the Chinese mini core collection with thousand grain weight (TGW) and spike length (SPL) showed that Hap-2-1A was significantly associated with TGW and Hap-3-1B with SPL. Allelic frequency and geographic distribution indicated that the favored haplotype () has been positively selected in Chinese wheat breeding. These results suggested that the Kompetitive Allele Specific PCR (KASP) markers can be applied in starch improvement to ultimately improve wheat yield by marker assisted selection in wheat breeding.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6523294PMC
http://dx.doi.org/10.3390/genes10040307DOI Listing

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