Population Genomics of Chinese Melia azedarach Germplasm: Latitudinal Genetic Structure, Spatial–Climatic Associations, and Climate-Associated Candidate Genes

To understand how geography shapes the genetic variation of Melia azedarach, we sequenced the whole genomes of 91 accessions from 91 maternal half-sib families across 15 provenances maintained in the National Germplasm Bank of China, an ex situ collection representing conserved germplasm. Genetic diversity increased from south to north (He: 0.098 to 0.333), whereas the Hainan population showed relatively low within-population diversity and, as confirmed by pairwise Fst, was highly differentiated from the mainland, forming an independent group. A Mantel test confirmed a significant isolation-by-distance (IBD) pattern (r = 0.307, p = 0.001). Redundancy analysis (RDA) explained 17.23% of the individual-level genetic variance, but a partial redundancy analysis (partial RDA) showed that most of this association was attributable to population structure, with the environmental variables explaining negligible independent variance after conditioning on population structure. Genome-wide association analysis (GWAS) further identified candidate loci potentially associated with climate-related traits, including a temperature-associated gene encoding a leucine-rich receptor-like protein kinase and a precipitation-associated gene encoding the stress-related protein RAR1. Together, these results map the genome-wide genetic diversity and spatial–climatic associations of M. azedarach. This study provides a genetic basis for evaluating banked resources, molecular breeding, and protecting this important tree species.

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Journal
Life
Published
2026-09-22
DOI
https://doi.org/10.3390/life16101582
Primary Topic
Genetic diversity and population structure
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article
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Population Genomics of Chinese Melia azedarach Germplasm: Latitudinal Genetic Structure, Spatial–Climatic Associations, and Climate-Associated Candidate Genes

Juan Liu, Yang Liu, H. R. Zhang, Wancun HE et al.
Life
Genetic diversity and population structure
article

Population Genomics of Chinese Melia azedarach Germplasm: Latitudinal Genetic Structure, Spatial–Climatic Associations, and Climate-Associated Candidate Genes

Juan Liu, Yang Liu, H. R. Zhang, Wancun HE, Wei Zhao, Maoyin Shi, Mengyi Chen, Tingting Zou
article en

Abstract

To understand how geography shapes the genetic variation of Melia azedarach, we sequenced the whole genomes of 91 accessions from 91 maternal half-sib families across 15 provenances maintained in the National Germplasm Bank of China, an ex situ collection representing conserved germplasm. Genetic diversity increased from south to north (He: 0.098 to 0.333), whereas the Hainan population showed relatively low within-population diversity and, as confirmed by pairwise Fst, was highly differentiated from the mainland, forming an independent group. A Mantel test confirmed a significant isolation-by-distance (IBD) pattern (r = 0.307, p = 0.001). Redundancy analysis (RDA) explained 17.23% of the individual-level genetic variance, but a partial redundancy analysis (partial RDA) showed that most of this association was attributable to population structure, with the environmental variables explaining negligible independent variance after conditioning on population structure. Genome-wide association analysis (GWAS) further identified candidate loci potentially associated with climate-related traits, including a temperature-associated gene encoding a leucine-rich receptor-like protein kinase and a precipitation-associated gene encoding the stress-related protein RAR1. Together, these results map the genome-wide genetic diversity and spatial–climatic associations of M. azedarach. This study provides a genetic basis for evaluating banked resources, molecular breeding, and protecting this important tree species.

LifeVol. 16(10)
Jiangxi Academy of Forestry (CN), Jiangxi Agricultural University (CN)
Climate action
Openalex Percentile: Top 11%
Genetic diversity and population structure
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Population Genomics of Chinese Melia azedarach Germplasm: Latitudinal Genetic Structure, Spatial–Climatic Associations, and Climate-Associated Candidate Genes — Juan Liu, Yang Liu, et al. · Life (2026) | TGRS Research Map | TGRS