Multi-Year Phenotypic Assessment and Genetic Selection in Progeny Trials of Liriodendron Hybrids
Yanghui Fang, Fuhui Liu, Tong Wang, Liang Fang, Jie Guo, Shunde Su, Xiaochou Chen, Libin Zhuang, Jie Sun, Daiquan Ye, Zhou Wang, Xuemei Wang

TL;DR
This study evaluates the growth of hybrid Liriodendron trees in China, identifying top-performing hybrids for potential use in sustainable forest management.
Contribution
The study provides empirical evidence on the genetic potential of Liriodendron hybrids for early selection and improvement.
Findings
Significant genetic variation was observed in growth traits among Liriodendron hybrids.
Hybrids No. 39, No. 59, and No. 74 showed the highest predictive accuracy and genetic gain.
Individual stem volume selection yielded the highest genetic gains at 95.55–107.12%.
Abstract
The conservation and genetic improvement of rare and endangered tree species are crucial for sustainable forest management. Liriodendron chinense, a relict species with limited distribution in China, exhibits high cross-compatibility with Liriodendron tulipifera, providing opportunities for interspecific hybrid breeding. In this study, 29 Liriodendron hybrids were established in a progeny trial plantation in Fujian Province, China, and subjected to multi-year evaluation of tree height, diameter at breast height (DBH), and individual stem volume. Significant differences (p < 0.01) among hybrids and hybrid × replicate interactions were detected for all traits across all assessment years, with individual stem volume showing the highest phenotypic coefficient of variation (35.30–40.56%). The mean annual increment in tree height increased during the early years, peaking at 1.50 m in the…
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Taxonomy
TopicsGenetic diversity and population structure · Forest ecology and management · Genetic and phenotypic traits in livestock
