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Research article2021Peer reviewed

Picea species from humid continental and temperate marine climates perform better in monsoonal areas of middle latitudes of China

Ouyang, Fangqun; Ma, Jianwei; Wang, Junchen; Kong, Lisheng; Zhang, Hanguo; Tigabu, Mulualem; Wang, Junhui

Abstract

Piceaspp. are a prominent component of the boreal, montane, and sub-alpine forests in the Northern Hemisphere, and have substantial economic importance due to their high quality fibre. However, performance and wood properties of the genus have not been systematically evaluated in China. This study aimed to examine genetic variations in growth traits, phenology, and wood properties of 17Piceaspecies, (three from North America, two from Europe, and 12 from China), in response to specific climate factors using a randomized complete block design in a monsoonal, middle latitude area of China. Results show that all growth traits and wood properties significantly varied among species (P < 0.00). Of the 17 species examined,P. abiesandP. pungenswere the tallest with heights of 2.5 and 1.9 m at 9 years old, respectively, 90% and 50% greater than the average heights. Branch length, number, and angles of bothP. abiesandP. pungenswere greater than those of the other species. Heights ofP. glaucaandP. omorikawere 20-33% greater than the average. Fast-growing species had high quantities of first lateral branches and large top whorl branch lengths. The taller species exhibited greater tracheid lengths and average tracheid lengths to radial central diameter ratios (TL/R_D2), but smaller cell wall thicknesses to tracheid radial lumen diameter ratios (WT/R_D1), which is favorable for pulp production. Correlation analysis revealed that height and ring width had significant positive correlations with latitude but strongly negative correlations with longitude. Height was positively correlated with average annual rainfalls, but negative correlations with average yearly sunshine. Due to the increased average annual sunshine at the China test site relative to the seed source, species such asP. abies,P. pungens,P. glauca, andP. omorikafrom wet, humid areas performed better than native species. Considering similar temperatures, precipitation may be the main factor affecting growth, which is beneficial for predicting the extent of spruce expansion. These results should encourage further testing and provide reference information for future exotic species studies in this part of China.

Keywords

Climate; Growth performance; Genetic variations; Picea; Wood properties

Published in

Journal of Forestry Research
2021, Volume: 32, number: 4, pages: 1395-1408
Publisher: NORTHEAST FORESTRY UNIV

    UKÄ Subject classification

    Forest Science

    Publication identifier

    DOI: https://doi.org/10.1007/s11676-020-01209-4

    Permanent link to this page (URI)

    https://res.slu.se/id/publ/108145