Auxin Regulates Sucrose Transport to Repress Petal Abscission in Rose (Rosa hybrida)

Author:

Liang Yue1ORCID,Jiang Chuyan1ORCID,Liu Yang1ORCID,Gao Yuerong1ORCID,Lu Jingyun1ORCID,Aiwaili Palinuer1ORCID,Fei Zhangjun23ORCID,Jiang Cai-Zhong45ORCID,Hong Bo1ORCID,Ma Chao1ORCID,Gao Junping1ORCID

Affiliation:

1. State Key Laboratory of Agrobiotechnology, Beijing Key Laboratory of Development and Quality Control of Ornamental Crops, Department of Ornamental Horticulture, College of Horticulture, China Agricultural University, Beijing 100193, China

2. Robert W. Holley Center for Agriculture and Health, United States Department of Agriculture, Agricultural Research Service, Ithaca, New York 14853

3. Boyce Thompson Institute, Ithaca, New York 14853

4. Crops Pathology and Genetic Research Unit, United States Department of Agriculture, Agricultural Research Service, Davis, California 95616

5. Department of Plant Sciences, University of California at Davis, Davis, California 95616

Abstract

Abstract Developmental transitions in plants require adequate carbon resources, and organ abscission often occurs due to competition for carbohydrates/assimilates. Physiological studies have indicated that organ abscission may be activated by Suc deprivation; however, an underlying regulatory mechanism that links Suc transport to organ shedding has yet to be identified. Here, we report that transport of Suc and the phytohormone auxin to petals through the phloem of the abscission zone (AZ) decreases during petal abscission in rose (Rosa hybrida), and that auxin regulates Suc transport into the petals. Expression of the Suc transporter RhSUC2 decreased in the AZ during rose petal abscission. Similarly, silencing of RhSUC2 reduced the Suc content in the petals and promotes petal abscission. We established that the auxin signaling protein RhARF7 binds to the promoter of RhSUC2, and that silencing of RhARF7 reduces petal Suc contents and promotes petal abscission. Overexpression of RhSUC2 in the petal AZ restored accelerated petal abscission caused by RhARF7 silencing. Moreover, treatment of rose petals with auxin and Suc delayed ethylene-induced abscission, whereas silencing of RhARF7 and RhSUC2 accelerated ethylene-induced petal abscission. Our results demonstrate that auxin modulates Suc transport during petal abscission, and that this process is regulated by a RhARF7-RhSUC2 module in the AZ.

Funder

Ministry of Science and Technology of the People's Republic of China

National Natural Science Foundation of China

Ministry of Education of the People's Republic of China

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science

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