Investigation of Imidazolinone Herbicide Resistance Gene with KASP Markers for Japonica/Geng Rice Varieties in the Huanghuaihai Region of China

Author:

Liu Peng1ORCID,Feng Wenjie2,Wang Tao1,Zhang Huadong1,Mao Shuaige1,Zhang Hua3,Huang Wenchao1,Liu Haifeng4,Feng Shangzong5,Chu Zhaohui14ORCID

Affiliation:

1. State Key Laboratory of Hybrid Rice, Hongshan Laboratory, College of Life Science, Wuhan University, Wuhan 430072, China

2. Jining Academy of Agricultural Sciences, Jining 272031, China

3. Tancheng Jinghua Seed Co., Ltd., Linyi 276100, China

4. College of Agronomy, Shandong Agricultural University, Taian 271018, China

5. Agro-Technical Popularization Centre of Linyi City, Linyi 276000, China

Abstract

Rice is a staple food for more than half of the global population due to its food security and sustainable development. Weeds compete with crops for sunlight and indispensable nutrients, affecting the yield and quality of crops. Breeding herbicide-tolerant rice varieties paired with herbicide application is expected to help with weed control. In this study, 194 Japonica/Geng rice varieties or lines collected from the Huanghuaihai region of China were screened by Kompetitive Allele-Specific PCR (KASP) markers based on four mutation sites within OsALS1 (LOC_Os02g30630), which is the target of imidazolinone (IMI) herbicides. Only the OsALS1627N haplotype was identified in 18 varieties, including the previously reported Jingeng818 (JG818), and its herbicide resistance was validated by treatment with three IMIs. To investigate the origin of the OsALS1627N haplotype in the identified varieties, six codominant PCR-based markers tightly linked with OsALS1 were developed. PCR analysis revealed that the other 17 IMI-tolerant varieties were derived from JG818. We randomly selected three IMI-tolerant varieties for comparative whole-genome resequencing with known receptor parent varieties. Sequence alignment revealed that more loci from JG818 have been introduced into IMI-tolerant varieties. However, all three IMI-tolerant varieties carried clustered third type single nucleotide polymorphism (SNP) sites from unknown parents, indicating that these varieties were not directly derived from JG818, whereas those from different intermediate improved lines were crossed with JG818. Overall, we found that only OsALS1627N from JG818 has been broadly introduced into the Huanghuaihai region of China. Additionally, the 17 identified IMI-tolerant varieties provide alternative opportunities for improving such varieties along with other good traits.

Funder

Key Research and Development Program of Hubei Province

Central Funds Guiding the Local Science and Technology Development

Science and Technology Innovation Team of Hubei Province

Shandong Modern Agricultural Technology and Industry System

Tancheng Jinghua Seed Co., Ltd.

Publisher

MDPI AG

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