Rapid Visual Detection of Elite Erect Panicle Dense and Erect Panicle 1 Allele for Marker-Assisted Improvement in Rice (Oryza sativa L.) Using the Loop-Mediated Isothermal Amplification Method

Author:

Tian Yonghang12ORCID,Chen Xiyi12,Xu Peizhou3,Wang Yuping3,Wu Xianjun3,Wu Kun4,Fu Xiangdong4,Chin Yaoxian12,Liao Yongxiang3

Affiliation:

1. College of Food Science and Engineering, Hainan Tropical Ocean University, No. 1 Yucai Road, Sanya 572022, China

2. Marine Food Engineering Technology Research Center of Hainan Province, No. 1 Yucai Road, Sanya 572022, China

3. State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Rice Research Institute, Sichuan Agricultural University, No. 211 Huiming Road, Chengdu 611130, China

4. Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, No. 1 West Beichen Road, Beijing 100101, China

Abstract

Molecular-assisted breeding is an effective way to improve targeted agronomic traits. dep1 (dense and erect panicle 1) is a pleiotropic gene that regulates yield, quality, disease resistance, and stress tolerance, traits that are of great value in rice (Oryza sativa L.) breeding. In this study, a colorimetric LAMP (loop-mediated isothermal amplification) assay was developed for the detection of the dep1 allele and tested for the screening and selection of the heavy-panicle hybrid rice elite restorer line SHUHUI498, modified with the allele. InDel (Insertion and Deletion) primers (DEP1_F and DEP1_R) and LAMP primers (F3, B3, FIP, and BIP) for genotyping were designed using the Primer3 Plus (version 3.3.0) and PrimerExplore (version 5) software. Our results showed that both InDel and LAMP markers could be used for accurate genotyping. After incubation at a constant temperature of 65 °C for 60 min with hydroxynaphthol blue (HNB) as a color indicator, the color of the LAMP assay containing the dep1 allele changed to sky blue. The SHUHUI498 rice line that was detected in our LAMP assay displayed phenotypes consistent with the dep1 allele such as having a more compact plant architecture, straight stems and leaves, and a significant increase in the number of effective panicles and spikelets, demonstrating the effectiveness of our method in screening for the dep1 allele in rice breeding.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Hainan Province

Chengdu Science and Technology Bureau

Publisher

MDPI AG

Reference53 articles.

1. The breeding of subspecific heavy ear hybrid rice-exploration about super-high yield breeding of hybrid rice;Zhou;J. Sichuan Agric. Univ.,1995

2. Mutation of DEP1 facilitates the improvement of plant architecture in Xian rice (Oryza sativa);Zhang;Plant Breed.,2023

3. Modulating the C-terminus of DEP1 synergistically enhances grain quality and yield in rice;Huang;J. Genet. Genom.,2022

4. Mutation of G-protein γ subunit DEP1 increases planting density and resistance to sheath blight disease in rice;Liu;Plant Biotechnol. J.,2020

5. Natural variation at the DEP1 locus enhances grain yield in rice;Huang;Nat. Genet.,2009

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