Natural variation in the prolyl 4-hydroxylase gene PtoP4H9 contributes to perennial stem growth in Populus

Author:

Xiao Liang123ORCID,Fang Yuanyuan23ORCID,Zhang He4ORCID,Quan Mingyang23ORCID,Zhou Jiaxuan23ORCID,Li Peng23ORCID,Wang Dan23ORCID,Ji Li5ORCID,Ingvarsson Pär K6ORCID,Wu Harry X7ORCID,El-Kassaby Yousry A8ORCID,Du Qingzhang239ORCID,Zhang Deqiang123ORCID

Affiliation:

1. School of Landscape Architecture, Beijing University of Agriculture , Beijing 102206, China

2. National Engineering Research Center of Tree Breeding and Ecological Restoration, College of Biological Sciences and Technology, Beijing Forestry University , Beijing 100083, China

3. Key Laboratory of Genetics and Breeding in Forest Trees and Ornamental Plants, Ministry of Education, College of Biological Sciences and Technology, Beijing Forestry University , Beijing 100083, China

4. State Key Laboratory of Protein and Plant Gene Research, School of Advanced Agricultural Sciences, Peking University , Beijing 100871, China

5. MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University , Beijing 100083, China

6. Linnean Center for Plant Biology, Department of Plant Biology, Swedish University of Agricultural Sciences , Box 7080, SE-750 07 Uppsala, Sweden

7. Umeå Plant Science Centre, Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Science , 90183 Umeå, Sweden

8. Department of Forest and Conservation Sciences, Faculty of Forestry, The University of British Columbia , Vancouver, British Columbia V6T 1Z4, Canada

9. State Key Laboratory of Tree Genetics and Breeding, College of Biological Sciences and Technology, Beijing Forestry University , Beijing, 100083, China

Abstract

Abstract Perennial trees must maintain stem growth throughout their entire lifespan to progressively increase in size as they age. The overarching question of the molecular mechanisms that govern stem perennial growth in trees remains largely unanswered. Here we deciphered the genetic architecture that underlies perennial growth trajectories using genome-wide association studies (GWAS) for measures of growth traits across years in a natural population of Populus tomentosa. By analyzing the stem growth trajectory, we identified PtoP4H9, encoding prolyl 4-hydroxylase 9, which is responsible for the natural variation in the growth rate of diameter at breast height (DBH) across years. Quantifying the dynamic genetic contribution of PtoP4H9 loci to stem growth showed that PtoP4H9 played a pivotal role in stem growth regulation. Spatiotemporal expression analysis showed that PtoP4H9 was highly expressed in cambium tissues of poplars of various ages. Overexpression and knockdown of PtoP4H9 revealed that it altered cell expansion to regulate cell wall modification and mechanical characteristics, thereby promoting stem growth in Populus. We showed that natural variation in PtoP4H9 occurred in a BASIC PENTACYSTEINE transcription factor PtoBPC1-binding promoter element controlling PtoP4H9 expression. The geographic distribution of PtoP4H9 allelic variation was consistent with the modes of selection among populations. Altogether, our study provides important genetic insights into dynamic stem growth in Populus, and we confirmed PtoP4H9 as a potential useful marker for breeding or genetic engineering of poplars.

Funder

Key Research Program of China

National Natural Science Foundation of China

Key Research and Development Project of Zhejiang Province

111 Project

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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