Inheritance of wood color, decay resistance, and polyphenol content of heartwood in full-sib families of Japanese larch (Larix kaempferi (Lamb.) Carr.)

Author:

Nezu Ikumi12,Ishiguri Futoshi1,Suzuki Hinano1,Takahashi Yusuke123,Takashima Yuya4,Hiraoka Yuichiro5,Iki Taiichi6,Miyashita Hisaya4,Matsushita Michinari3,Habu Naoto1,Ohshima Jyunichi1,Yokota Shinso1

Affiliation:

1. School of Agriculture, Utsunomiya University , Utsunomiya 321-8505 , Japan

2. United Graduate School of Agricultural Science, Tokyo University of Agriculture and Technology , Fuchu , Tokyo 183-8509 , Japan

3. Forest Tree Breeding Center, Forestry and Forest Products Research Institute , Hitachi , Ibaraki , 319-1301 , Japan

4. Kansai Regional Office, Forest Tree Breeding Center, Forest and Forest Products Research Institute , Katsuta , Okayama , 709-4335 , Japan

5. Faculty of Production and Environmental Management, Shizuoka Professional University of Agriculture , Iwata , 438-8577 , Japan

6. Tohoku Regional Office, Tohoku Regional Breeding Office, Forest Tree Breeding Center, Forest and Forest Products Research Institute , Takizawa , Iwate , 020-0621 , Japan

Abstract

Abstract Japanese larch (Larix kaempferi) is an important plantation species in Japan as well as in Europe. The inheritance of wood color (L*, a* and b*), mass loss by a white-rot fungus (Trametes versicolor) and a brown-rot fungus (Fomitopsis palustris), and polyphenol content (as the taxifolin equivalent) in heartwood were examined for 75 trees in 15 full-sib families of L. kaempferi. The mean values of all trees were 74.5 in L*, 8.4 in a*, 23.0 in b*, 18.3 and 26.0% in mass loss by T. versicolor and F. palustris, and 0.045 µmol/mg in polyphenol content. The narrow-sense heritability (h 2) showed higher values in heartwood color (h 2 = 0.70–0.87), but mass loss and polyphenol content showed relatively lower values (h 2 = 0.00–0.33). Significant negative correlations were found between polyphenol content and mass loss by white-rot and brown-rot fungi. In addition, the polyphenol content of heartwood was significantly correlated with the color of heartwood. Similar results were obtained in genetic correlations. Thus, it is concluded that parents with lower L* and higher a* and b* in heartwood could produce progenies with higher polyphenol content in heartwood, thereby leading to higher decay resistance.

Publisher

Walter de Gruyter GmbH

Subject

Biomaterials

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