Breaking deep epicotyl physiological dormancy in C hionanthus retusus (Oleaceae) seeds

Author:

Rong Zihan1,Yi Yanying2,Shen Xueyang1,Deng Shiming1,Xu Li2,Li Jitao2,Mou Jiaolin1,Deng Zhijun1

Affiliation:

1. Hubei Key Laboratory of Biologic Resources Protection and Utilization (Hubei Minzu University); Research Center for Germplasm Engineering technology of Characteristic Plant Resources in Enshi Prefecture (Hubei Minzu University); The Germplasm Resources Laboratory for Landscape and Horticulture Plants, School of Forestry and Horticulture, Hubei Minzu University; Enshi, Hubei Province 445000, P.R. China

2. Hubei Key Laboratory of Biologic Resources Protection and Utilization (Hubei Minzu University); Research Center for Germplasm Engineering technology of Characteristic Plant Resources in Enshi Prefecture (Hubei Minzu University); The Germplasm Resources Laboratory for Landscape and Horticulture Plants, School of Forestry and Horticulture, Hubei Minzu University; Enshi, Hubei Province 445000, P.R. China

Abstract

Given that the cause and the method of dormancy release in Chionanthus retusus seeds are unclear, in this study, C. retusus seeds with a hard endocarp (seed dispersal unit) were used for endocarp permeability determination, germination test after endocarp removal and isolated embryo culture to detect the cause of radicle dormancy. Endosperm removal, cold moist stratification, warm moist stratification and GA3 treatment of rooted seeds were used to detect the cause of epicotyl dormancy. The results indicated that C. retusus seeds have non-deep physiological dormancy and deep epicotyl physiological dormancy, the release of which was closely related to the length of the emerged radicle. Rooted seeds with a radicle length < 3 cm could not be effectively released from epicotyl physiological dormancy by endosperm removal, GA3 soaking or cold/warm stratification treatments, whereas those > 3 cm could be significantly promoted for release from epicotyl physiological dormancy by endosperm removal and cold moist stratification treatments. The highest shoot emergence rate of rooted seeds (radicle length > 3 cm) was achieved after 120 days of cold moisture stratification treatment. These results could improve our understanding of seed dormancy and promote the conservation and use of C. retusus.

Publisher

International Seed Testing Association

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Seed Science and Technology. Volume 52 Issue 1 (2024);Seed Science and Technology;2024-04-30

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