Seasonal nitrogen remobilization and the role of auxin transport in poplar trees

Author:

Li Gen1,Lin Rongshoung1,Egekwu Chioma1,Blakeslee Joshua2,Lin Jinshan2,Pettengill Emily1,Murphy Angus S1,Peer Wendy A3,Islam Nazrul1,Babst Benjamin A4,Gao Fei4,Komarov Sergey5,Tai Yuan-Chuan5,Coleman Gary D1ORCID

Affiliation:

1. Department of Plant Science and Landscape Architecture, University of Maryland, College Park, USA

2. OARDC Metabolite Analysis Center, Department of Horticulture and Crop Science, The Ohio State University, Wooster, USA

3. Department of Environmental Science and Technology, University of Maryland, College Park, USA

4. College of Forestry, Agriculture and Natural Resources, University of Arkansas at Monticello, Monticello, USA

5. Department of Radiology, Washington University in St. Louis, St. Louis, USA

Abstract

Abstract Seasonal nitrogen (N) cycling in Populus, involves bark storage proteins (BSPs) that accumulate in bark phloem parenchyma in the autumn and decline when shoot growth resumes in the spring. Little is known about the contribution of BSPs to growth or the signals regulating N remobilization from BSPs. Knockdown of BSP accumulation via RNAi and N sink manipulations were used to understand how BSP storage influences shoot growth. Reduced accumulation of BSPs delayed bud break and reduced shoot growth following dormancy. Further, 13N tracer studies also showed that BSP accumulation is an important factor in N partitioning from senescing leaves to bark. Thus, BSP accumulation has a role in N remobilization during N partitioning both from senescing leaves to bark and from bark to expanding shoots once growth commences following dormancy. The bark transcriptome during BSP catabolism and N remobilization was enriched in genes associated with auxin transport and signaling, and manipulation of the source of auxin or auxin transport revealed a role for auxin in regulating BSP catabolism and N remobilization. Therefore, N remobilization appears to be regulated by auxin produced in expanding buds and shoots that is transported to bark where it regulates protease gene expression and BSP catabolism.

Funder

National Science Foundation

Plant Imaging Consortium

National Institute of Food and Agriculture

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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