Leaf phenotypic variation and its response to environmental factors in natural populations of Eucommia ulmoides.

Altitude Climate factors Correlation analysis Eucommia ulmoides Leaf traits

Journal

BMC plant biology
ISSN: 1471-2229
Titre abrégé: BMC Plant Biol
Pays: England
ID NLM: 100967807

Informations de publication

Date de publication:
15 Nov 2023
Historique:
received: 03 08 2023
accepted: 03 11 2023
medline: 16 11 2023
pubmed: 15 11 2023
entrez: 14 11 2023
Statut: epublish

Résumé

Eucommia ulmoides leaves have high medicinal and economic value as a dual-purpose substance for medicine and food. Employing leaves from 13 natural populations of Eucommia ulmoides as research objects, this study reveals the variation patterns of intra-specific and inter-specific trait variation and explores the response of leaf characteristics to geographical and climatic changes, aiming to provide a scientific basis for the efficient utilization of leaf resources and the breeding of superior varieties. Descriptive statistical analysis and nested analysis of variance showed significant differences in 11 leaf traits of Eucommia ulmoides inter-populations and intra-populations, with an average coefficient of variation of 17.45%. The coefficient of variation for average leaf phenotypic traits is 20.77%, and the leaf phenotypic variation is mainly from the variation intra-populations. Principal component analysis reveals that the cumulative contribution rate of the top three principal components which mainly contributed to the phenotypic variation of Eucommia ulmoides leaves reached 74.98%, which could be sorted into size traits (34.57%), color traits (25.82%) and shape traits (14.58%). In addition, correlation analysis expresses there is a specific co-variation pattern among leaf traits, with a strong connection between shape, size, and color traits. Geographic and climatic distances are significantly correlated, and mantel test and correlation analysis indicate that leaf traits of Eucommia ulmoides are mainly influenced by altitude. With the increase of altitude, the leaves become smaller. Partial correlation analysis shows that after controlling climate factors, the correlation between some characters and geographical factors disappears significantly. Temperature and precipitation have a great influence on the variation of leaf phenotypic traits, and the larger the leaves are in areas with high temperature and heavy rainfall. These findings contribute to a further understanding of the leaf morphological characteristics of Eucommia ulmoides and the extent to which the environment influences leaf trait variation. They can provide a scientific basis for the protection and application of Eucommia ulmoides leaf resources in the future.

Sections du résumé

BACKGROUND BACKGROUND
Eucommia ulmoides leaves have high medicinal and economic value as a dual-purpose substance for medicine and food. Employing leaves from 13 natural populations of Eucommia ulmoides as research objects, this study reveals the variation patterns of intra-specific and inter-specific trait variation and explores the response of leaf characteristics to geographical and climatic changes, aiming to provide a scientific basis for the efficient utilization of leaf resources and the breeding of superior varieties.
RESULTS RESULTS
Descriptive statistical analysis and nested analysis of variance showed significant differences in 11 leaf traits of Eucommia ulmoides inter-populations and intra-populations, with an average coefficient of variation of 17.45%. The coefficient of variation for average leaf phenotypic traits is 20.77%, and the leaf phenotypic variation is mainly from the variation intra-populations. Principal component analysis reveals that the cumulative contribution rate of the top three principal components which mainly contributed to the phenotypic variation of Eucommia ulmoides leaves reached 74.98%, which could be sorted into size traits (34.57%), color traits (25.82%) and shape traits (14.58%). In addition, correlation analysis expresses there is a specific co-variation pattern among leaf traits, with a strong connection between shape, size, and color traits. Geographic and climatic distances are significantly correlated, and mantel test and correlation analysis indicate that leaf traits of Eucommia ulmoides are mainly influenced by altitude. With the increase of altitude, the leaves become smaller. Partial correlation analysis shows that after controlling climate factors, the correlation between some characters and geographical factors disappears significantly. Temperature and precipitation have a great influence on the variation of leaf phenotypic traits, and the larger the leaves are in areas with high temperature and heavy rainfall.
CONCLUSIONS CONCLUSIONS
These findings contribute to a further understanding of the leaf morphological characteristics of Eucommia ulmoides and the extent to which the environment influences leaf trait variation. They can provide a scientific basis for the protection and application of Eucommia ulmoides leaf resources in the future.

Identifiants

pubmed: 37964219
doi: 10.1186/s12870-023-04583-3
pii: 10.1186/s12870-023-04583-3
pmc: PMC10647038
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

562

Subventions

Organisme : National Natural Science Foundation of China
ID : 32160388
Organisme : National Natural Science Foundation of China
ID : 32160388
Organisme : National Natural Science Foundation of China
ID : 32160388
Organisme : National Natural Science Foundation of China
ID : 32160388
Organisme : the open fund project of Key Laboratory of Hunan Forest Products and Chemical Industry Engineering, Jishou University
ID : LCHG2102
Organisme : the open fund project of Key Laboratory of Hunan Forest Products and Chemical Industry Engineering, Jishou University
ID : LCHG2102
Organisme : the open fund project of Key Laboratory of Hunan Forest Products and Chemical Industry Engineering, Jishou University
ID : LCHG2102
Organisme : the open fund project of Key Laboratory of Hunan Forest Products and Chemical Industry Engineering, Jishou University
ID : LCHG2102
Organisme : Graduate Research and Innovation Project of Hunan Province
ID : CX20231082
Organisme : Graduate Research and Innovation Project of Hunan Province
ID : CX20231082
Organisme : Graduate Research and Innovation Project of Hunan Province
ID : CX20231082
Organisme : Graduate Research and Innovation Project of Hunan Province
ID : CX20231082

Informations de copyright

© 2023. The Author(s).

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Auteurs

Huimin Gong (H)

Key Laboratory of Hunan Forest Products and Chemical Industry Engineering, National and Local United Engineering Laboratory of Integrative Utilization Technology of Eucommia ulmoides, Jishou University, Zhangjiajie, 427000, China.
College of Biology and Environmental Sciences, Jishou University, Jishou, 416000, China.

Min Yang (M)

Key Laboratory of Hunan Forest Products and Chemical Industry Engineering, National and Local United Engineering Laboratory of Integrative Utilization Technology of Eucommia ulmoides, Jishou University, Zhangjiajie, 427000, China.
College of Biology and Environmental Sciences, Jishou University, Jishou, 416000, China.

Chaochun Wang (C)

Key Laboratory of Hunan Forest Products and Chemical Industry Engineering, National and Local United Engineering Laboratory of Integrative Utilization Technology of Eucommia ulmoides, Jishou University, Zhangjiajie, 427000, China.

Chunlian Tian (C)

Key Laboratory of Hunan Forest Products and Chemical Industry Engineering, National and Local United Engineering Laboratory of Integrative Utilization Technology of Eucommia ulmoides, Jishou University, Zhangjiajie, 427000, China. chunltian@jsu.edu.cn.
College of Biology and Environmental Sciences, Jishou University, Jishou, 416000, China. chunltian@jsu.edu.cn.

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Classifications MeSH