Radial distribution of vascular bundle morphology in Chinese bamboos: machine learning methodology for rapid sampling and classification

Author:

Li Jing123,Xu Haocheng2,Zhang Ying2,Zhong Tuhua2,Semple Katherine3,Nasir Vahid34,Wang Hankun2,Dai Chunping3ORCID

Affiliation:

1. Research Institute of Wood Industry, Chinese Academy of Forestry; Key Laboratory of National Forestry and Grassland Administration for Wood Science and Technology , Beijing 100091 , China

2. Institute of New Bamboo and Rattan Based Biomaterials, International Center for Bamboo and Rattan, Key Laboratory of National Forestry and Grassland Administration/Beijing for Bamboo & Rattan Science and Technology , Beijing 100102 , China

3. Department of Wood Science , Faculty of Forestry, The University of British Columbia , Vancouver V6T 1Z4 , Canada

4. Department of Wood Science and Engineering, College of Forestry, Oregon State University , Corvallis , OR, 97331 , USA

Abstract

Abstract Variation in anatomical features of the culm wall namely the shape and size distributions of vascular bundles between different genera and species of bamboo is not well understood due to the cumbersome task of manual measurements. Using machine learning methodology, this work presents a universal vascular bundle detection model for rapid, reliable, and automatic characterization of vascular bundles in culm cross sections of 213 species across 23 genera of Chinese bamboos. The number of vascular bundles and the fiber sheath area have positive linear correlations with the outer circumference and the wall thickness, respectively. The distribution density of vascular bundles has a decay exponential correlation with the outer circumference and the wall thickness. The average fiber volume fraction was 35.2 % ± 7 % with relatively small variation between species. Bamboo species could be grouped into three categories based the endodermis to epidermis distribution pattern of radial and tangential length of vascular bundles, two categories of radial-to-tangential ratio and four categories of fiber sheath area distribution pattern. Implications on bamboo classification, structural and pulp/paper applications were discussed. The findings from this study provide groundwork for the establishment of a unified, authoritative and objective bamboo classification system based on the vascular tissue morphology.

Funder

Basic Scientific Research Funds of the International Center for Bamboo and Rattan

National Natural Science Foundation of China

Publisher

Walter de Gruyter GmbH

Subject

Biomaterials

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