Global dissection of the recombination landscape in soybean using a high‐density <scp>600K SoySNP</scp> array

Xin Ma(Chinese Academy of Sciences), Lei Fan(Chinese Academy of Sciences), Zhifang Zhang(Chinese Academy of Sciences), Xia Yang(Chinese Academy of Sciences), Yucheng Liu(Chinese Academy of Sciences), Yanming Ma(Chinese Academy of Sciences), Yi Pan(Chinese Academy of Sciences), Guoan Zhou(Chinese Academy of Sciences), Min Zhang(Chinese Academy of Sciences), Hailong Ning(Northeast Agricultural University), Fanjiang Kong(Guangzhou University), Junkui Ma(Shanxi Agricultural University), Shulin Liu(Chinese Academy of Sciences), Zhixi Tian(Chinese Academy of Sciences)
Plant Biotechnology Journal
December 2, 2022
Cited by 17Open Access
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Abstract

Summary Recombination is crucial for crop breeding because it can break linkage drag and generate novel allele combinations. However, the high‐resolution recombination landscape and its driving forces in soybean are largely unknown. Here, we constructed eight recombinant inbred line (RIL) populations and genotyped individual lines using the high‐density 600K SoySNP array, which yielded a high‐resolution recombination map with 5636 recombination sites at a resolution of 1.37 kb. The recombination rate was negatively correlated with transposable element density and GC content but positively correlated with gene density. Interestingly, we found that meiotic recombination was enriched at the promoters of active genes. Further investigations revealed that chromatin accessibility and active epigenetic modifications promoted recombination. Our findings provide important insights into the control of homologous recombination and thus will increase our ability to accelerate soybean breeding by manipulating meiotic recombination rate.


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