Characterization of Chromosomal Structural Polymorphism in Roegneria nutans from the Western Sichuan Plateau, China Based on Tandem Repeat Sequences

Roegneria nutans, a premium grass on Western Sichuan Plateau, China, is vital for ecological stability and pastoral security. Studying its chromosomal architecture and environmental correlations lays a foundation for Roegneria genetic evolution research. This study used genomic in situ hybridization (GISH) and non-denaturing fluorescence in situ hybridization (ND-FISH) with two tandem repetitive sequence probes pAs1 and (AAG)10) to analyze the species’ St and Y genomes of R. nutans from different altitudes. Our findings demonstrated that for both the number of probe signals and variant types, inter-population variation was higher than intra-population variation. Distinct altitudinal response patterns of (AAG)10 and pAs1 FISH signals were detected between the St and Y genomes. Within the St genome, the abundance of (AAG)10 loci exhibited a trend of initial decline followed by a marked rise with increasing altitude. The pAs1 probe displayed higher signal density than (AAG)10, with its signal abundance peaking in medium-altitude populations, and polymorphic loci were most abundant in high-altitude populations. In contrast, medium-altitude samples harboured relatively fewer (AAG)10 signals within the Y genome. Although pAs1 exhibited lower signal density than (AAG)10 in the Y genome, its maximum signal number was observed in medium-altitude populations, where polymorphic loci predominated. Low-altitude populations maintained relatively conserved hybridization patterns, and chromosomal variation was mainly detected in the Y genome at medium altitudes and in the St genome at high altitudes. This study provides a valuable basis for exploring the genetic diversity of R. nutans across the Western Sichuan Plateau.

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Journal
Plants
Published
2026-09-16
DOI
https://doi.org/10.3390/plants15182832
Primary Topic
Photosynthetic Processes and Mechanisms
Type
article
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article

Characterization of Chromosomal Structural Polymorphism in Roegneria nutans from the Western Sichuan Plateau, China Based on Tandem Repeat Sequences

Cairong Yang, Zhuxin Wang, Zhou Yueju, Yi Ou et al.
Plants
Photosynthetic Processes and Mechanisms
article

Characterization of Chromosomal Structural Polymorphism in Roegneria nutans from the Western Sichuan Plateau, China Based on Tandem Repeat Sequences

Cairong Yang, Zhuxin Wang, Zhou Yueju, Yi Ou, D.-W. Luo, Jiezhi Yang, Yutong Qiao, Xin Lin, Jiaping Zhou
article en

Abstract

Roegneria nutans, a premium grass on Western Sichuan Plateau, China, is vital for ecological stability and pastoral security. Studying its chromosomal architecture and environmental correlations lays a foundation for Roegneria genetic evolution research. This study used genomic in situ hybridization (GISH) and non-denaturing fluorescence in situ hybridization (ND-FISH) with two tandem repetitive sequence probes pAs1 and (AAG)10) to analyze the species’ St and Y genomes of R. nutans from different altitudes. Our findings demonstrated that for both the number of probe signals and variant types, inter-population variation was higher than intra-population variation. Distinct altitudinal response patterns of (AAG)10 and pAs1 FISH signals were detected between the St and Y genomes. Within the St genome, the abundance of (AAG)10 loci exhibited a trend of initial decline followed by a marked rise with increasing altitude. The pAs1 probe displayed higher signal density than (AAG)10, with its signal abundance peaking in medium-altitude populations, and polymorphic loci were most abundant in high-altitude populations. In contrast, medium-altitude samples harboured relatively fewer (AAG)10 signals within the Y genome. Although pAs1 exhibited lower signal density than (AAG)10 in the Y genome, its maximum signal number was observed in medium-altitude populations, where polymorphic loci predominated. Low-altitude populations maintained relatively conserved hybridization patterns, and chromosomal variation was mainly detected in the Y genome at medium altitudes and in the St genome at high altitudes. This study provides a valuable basis for exploring the genetic diversity of R. nutans across the Western Sichuan Plateau.

PlantsVol. 15(18)
Chengdu Research Base of Giant Panda Breeding (CN), Neijiang Normal University (CN), Chengdu Normal University (CN)
Life in Land
Openalex Percentile: Top 18%
Photosynthetic Processes and Mechanisms
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