Genome design of hybrid potato.

Zhang, Chunzhi; Yang, Zhongmin; Tang, Dié; Zhu, Yanhui; Wang, Pei; Li, Dawei; Zhu, Guangtao; Xiong, Xingyao et al. · Cell · 2021

basic_science · Level V

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Abstract

Reinventing potato from a clonally propagated tetraploid into a seed-propagated diploid, hybrid potato, is an important innovation in agriculture. Due to deleterious mutations, it has remained a challenge to develop highly homozygous inbred lines, a prerequisite to breed hybrid potato. Here, we employed genome design to develop a generation of pure and fertile potato lines and thereby the uniform, vigorous F<sub>1</sub>s. The metrics we applied in genome design included the percentage of genome homozygosity and the number of deleterious mutations in the starting material, the number of segregation distortions in the S<sub>1</sub> population, the haplotype information to infer the break of tight linkage between beneficial and deleterious alleles, and the genome complementarity of the parental lines. This study transforms potato breeding from a slow, non-accumulative mode into a fast-iterative one, thereby potentiating a broad spectrum of benefits to farmers and consumers.

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