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基因型-环境互作与心材的水平和垂直分布

Genotype-Environment Interaction and Horizontal and Vertical Distributions of Heartwood for R.Br.

机构信息

Research Institute of Tropical Forestry, Chinese Academy of Forestry, Guangzhou 510520, China.

出版信息

Genes (Basel). 2023 Jun 20;14(6):1299. doi: 10.3390/genes14061299.

Abstract

(blackwood) is a valuable wood with excellent-quality heartwood extensively utilized worldwide. The main aim of this study was to confirm the horizontal and vertical variation and provide estimated values of genetic gains and clonal repeatabilities for improving breeding program of . Six blackwood clones at 10 years old were analyzed in Heyuan and Baise cities in China. Stem trunk analysis was conducted for sample trees to explore the differences between heartwood and sapwood. The heartwood radius (HR), heartwood area (HA), and heartwood volume (HV) in heartwood properties decreased as tree height (H) in growth traits increased, and the HV = 1.2502 DBH (diameter at breast height) model can accurately estimate the heartwood volume. Furthermore, G × E analysis showed that the heritabilities of the eleven indices, including DBH, DGH (diameter at ground height), H, HR, SW (sapwood width), BT (bark thickness), HA, SA (sapwood area), HV, HRP (heartwood radius percentage), HAP (heartwood area percentage), and HVP (heartwood volume percentage) were between 0.94 and 0.99, and repeatabilities of the eleven indices were between 0.74 and 0.91. Clonal repeatability of DBH (0.91), DGH (0.88), and H (0.90) in growth traits, HR (0.90), HVP (0.90), and HV (0.88) in heartwood properties were slightly higher than for SA (0.74), SW (0.75), HAP (0.75), HRP (0.75), and HVP (0.75). These data also implied that the growth characteristics of heartwood and sapwood of blackwood clones were less affected by the environment and had substantial heritability.

摘要

(blackwood) 是一种具有优异心材质量的珍贵木材,在全球范围内得到广泛应用。本研究的主要目的是确认水平和垂直变异,并提供遗传增益和无性系重演性的估计值,以改进 的选育计划。在中国的河源和百色市,对 6 个 10 年生的黑木克隆体进行了分析。对样本树进行树干分析,以探讨心材和边材之间的差异。心材特性中的心材半径 (HR)、心材面积 (HA) 和心材体积 (HV) 随着生长性状中树高 (H) 的增加而减小,HV = 1.2502 DBH (胸径) 模型可准确估计心材体积。此外,G × E 分析表明,包括 DBH、DGH (离地高度直径)、H、HR、SW (边材宽度)、BT (树皮厚度)、HA、SA (边材面积)、HV、HRP (心材半径百分比)、HAP (心材面积百分比) 和 HVP (心材体积百分比) 在内的 11 项指标的遗传力在 0.94 到 0.99 之间,11 项指标的重演性在 0.74 到 0.91 之间。生长性状中 DBH (0.91)、DGH (0.88) 和 H (0.90) 的无性系重演性、心材特性中的 HR (0.90)、HVP (0.90) 和 HV (0.88) 略高于 SA (0.74)、SW (0.75)、HAP (0.75)、HRP (0.75) 和 HVP (0.75)。这些数据还表明,黑木克隆体的心材和边材的生长特性受环境影响较小,具有较高的遗传力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f9b/10298161/0554899eb1a7/genes-14-01299-g001.jpg

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