Corrigendum to "Conservation genomics provides insights into genetic resilience and adaptation of the endangered Chinese hazelnut, Corylus chinensis" [Plant Divers. 46 (3) (2024) 294–308]
Zhen Yanga, Lisong Lianga, Weibo Xiangb,c, Lujun Wangd, Qinghua Maa,*, Zhaoshan Wanga,     
a. Key Laboratory of Tree Breeding and Cultivation, National Forestry and Grassland Administration, Research Institute of Forestry, Chinese Academy of Forestry, Beijing 100091, China;
b. National Engineering Research Center of Eco-Environment Protection for Yangtze River Economic Belt, China Three Gorges Corporation, Beijing 100083, China;
c. Rare Plants Research Institute of Yangtze River, China Three Gorges Corporation, Yichang 443133, China;
d. Research Institute of Economic Forest Cultivation and Processing, Anhui Academy of Forestry, Hefei 230031, China

The authors regret the following errors in the published paper. Corrections are provided below.

1. Figure 7C: The positions of the receptors and donors were reversed.

- Incorrect positions: receptors (left) → donors (right)

- Corrected positions: donors (left) → receptors (right)

2. Figure 7D: spelling mistake.

- Incorrect spelling: Chromsome

- Corrected spelling: Chromosome

Fig. 7 Genome-wide introgression patterns between Corylus chinensis (CCH) and C. kwechowensis-C. yunnanensis complex (CKY). (A) Introgression detection measured by ABBA-BABA statistics. (B) The f-branch (fb) statistic identifies possible gene flow from the branch of the tree on the y axis to the species or lineages on the x axis. (C) The number and direction of adaptive introgression genes (AIGs) between pairwise lineages of CCH and CKY. (D) Manhattan plot of fdM values calculated through a sliding windows analysis across genome. The horizontal dashed lines indicate the significance threshold (5%) for selection signals. The red star indicated two linked AIGs that are closely homologous to Arabidopsis CYP98A3, which involves in secondary metabolite biosynthetic processes.

The authors would like to apologize for any inconvenience caused.