Impact of Alien Chromosome Introgression from Thinopyrum ponticum on Wheat Grain Traits
Shuwei Zhang, Yu Zhang, Ting Hu, Linying Li, Zihao Wang, Linyi Qiao, Lifang Chang, Xin Li, Zhijian Chang, Peng Zhang, Xiaojun Zhang

TL;DR
This study explores how alien chromosomes from Thinopyrum ponticum affect wheat grain traits through chromosomal variations and their inheritance patterns.
Contribution
The study identifies specific chromosomal variations and their effects on wheat grain traits, offering insights for breeding and genetic improvement.
Findings
Alien chromosomes 1JS, 4J, and 6J showed the highest transmission stability across three generations.
Chromosomal presence/absence variations significantly influenced grain traits like length, width, and weight.
Increasing alien chromosome numbers correlated with stronger negative effects on grain characteristics.
Abstract
Structural variation (SV) serves as a fundamental driver of phenotypic diversity and environmental adaptation in plants and animals, significantly influencing key agronomic traits in crops. Common wheat (Triticum aestivum L.), an allohexaploid species, harbors extensive chromosomal SVs and distant hybridization-induced recombination events that provide critical resources for genetic improvement. This study utilizes non-denaturing fluorescence in situ hybridization (ND-FISH) and oligonucleotide multiplex probe-based FISH (ONPM-FISH) to analyze the karyotypes of 153 BC1F4–BC1F6 lines derived from the hybrid line Xiaoyan 7430 and common wheat Yannong 1212. The results revealed that Xiaoyan 7430 carries 8 alien chromosome pairs and 20 wheat chromosome pairs (lacking 6B), and Yannong 1212 contains 21 pairs of wheat chromosomes. The parental lines exhibited presence/absence variations (PAVs)…
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Taxonomy
TopicsWheat and Barley Genetics and Pathology · Chromosomal and Genetic Variations · Plant Disease Resistance and Genetics
