A Novel ZmLG1 Allele as a Genetic Resource for Breeding Compact Plant Architecture in Maize

Background: Leaf angle is a key determinant of plant architecture and yield under high-density planting. Loss of the ligule reduces leaf angle, offering a strategy for breeding compact maize. This study aims to identify the genetic basis of the liguleless mutant jd30 and develop a functional marker for breeding. Methods: The jd30 mutant was phenotypically characterized and compared with the wild type (WT). Genetic analysis was performed using F2 populations. Map-based cloning was conducted with simple sequence repeat (SSR) and insertion/deletion (InDel) markers. Candidate genes were annotated and sequenced. Allelism tests were performed by crossing jd30 with other lg1 mutants. A Cleaved Amplified Polymorphic Sequence (CAPS) marker was developed based on the causal mutation. Results: The jd30 mutant showed complete ligule loss from the V2 stage onward and had a significantly smaller leaf angle than the wild type. The phenotype is controlled by a single recessive nuclear gene, mapped to a 123-kb interval on chromosome 2 containing four candidate genes. A single-base cytosine (C) deletion at nucleotide 522 of ZmLG1 caused a frameshift and premature stop codon. Two other lg1 mutants, 20292 and 29163, carried distinct mutations—a C insertion and multiple base substitutions, respectively. Allelism tests confirmed jd30 as a novel allele of ZmLG1. A co-dominant CAPS marker, M5, was developed to distinguish wild-type and mutant alleles. Conclusions: This study identifies a novel loss-of-function allele of ZmLG1, designated ZmLG1-1, and the M5 marker, providing valuable genetic resources for modifying leaf architecture and improving maize plant compactness.

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Journal
Genes
Published
2026-09-06
DOI
https://doi.org/10.3390/genes17091075
Primary Topic
Genetic Mapping and Diversity in Plants and Animals
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article
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article

A Novel ZmLG1 Allele as a Genetic Resource for Breeding Compact Plant Architecture in Maize

Qingzhi Liu, Shiyi Zhong, Yongzhong Zhang, Baoshen Liu et al.
Genes
Genetic Mapping and Diversity in Plants and Animals
article

A Novel ZmLG1 Allele as a Genetic Resource for Breeding Compact Plant Architecture in Maize

Qingzhi Liu, Shiyi Zhong, Yongzhong Zhang, Baoshen Liu, Lijing Wang, Yan Zhao, Wei Xu, Haimo Zhu, Shengkun Liu, Yue Feng
article en

Abstract

Background: Leaf angle is a key determinant of plant architecture and yield under high-density planting. Loss of the ligule reduces leaf angle, offering a strategy for breeding compact maize. This study aims to identify the genetic basis of the liguleless mutant jd30 and develop a functional marker for breeding. Methods: The jd30 mutant was phenotypically characterized and compared with the wild type (WT). Genetic analysis was performed using F2 populations. Map-based cloning was conducted with simple sequence repeat (SSR) and insertion/deletion (InDel) markers. Candidate genes were annotated and sequenced. Allelism tests were performed by crossing jd30 with other lg1 mutants. A Cleaved Amplified Polymorphic Sequence (CAPS) marker was developed based on the causal mutation. Results: The jd30 mutant showed complete ligule loss from the V2 stage onward and had a significantly smaller leaf angle than the wild type. The phenotype is controlled by a single recessive nuclear gene, mapped to a 123-kb interval on chromosome 2 containing four candidate genes. A single-base cytosine (C) deletion at nucleotide 522 of ZmLG1 caused a frameshift and premature stop codon. Two other lg1 mutants, 20292 and 29163, carried distinct mutations—a C insertion and multiple base substitutions, respectively. Allelism tests confirmed jd30 as a novel allele of ZmLG1. A co-dominant CAPS marker, M5, was developed to distinguish wild-type and mutant alleles. Conclusions: This study identifies a novel loss-of-function allele of ZmLG1, designated ZmLG1-1, and the M5 marker, providing valuable genetic resources for modifying leaf architecture and improving maize plant compactness.

GenesVol. 17(9)
Shandong Agricultural University (CN)
Responsible consumption and production
Openalex Percentile: Top 11%
Genetic Mapping and Diversity in Plants and Animals
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A Novel ZmLG1 Allele as a Genetic Resource for Breeding Compact Plant Architecture in Maize — Qingzhi Liu, Shiyi Zhong, et al. · Genes (2026) | TGRS Research Map | TGRS