Expression Analysis and Interaction Protein Screening of CoZTL in Camellia oleifera Abel

Author:

Ren Shuangshuang1234,Juan Lemei1234,He Jiacheng1234,Liu Qian1234,Yan Jindong1234ORCID,Li Jian’an1234

Affiliation:

1. Key Laboratory of Cultivation and Protection for Non-Wood Forest Trees of Ministry of Education, Central South University of Forestry and Technology, Changsha 410004, China

2. Key Laboratory of Non-Wood Forest Products of Forestry Ministry, Central South University of Forestry and Technology, Changsha 410004, China

3. Yuelu Mountain Laboratory Non-Wood Forests Variety Innovation Center, Changsha 410004, China

4. Key Laboratory of Breeding and Cultivation of Non-Wood Forest, National Forestry and Grassland Administration, Changsha 410004, China

Abstract

Camellia oleifera Abel., which produces fruits of high comprehensive utilization value, is an important woody oil tree in China. ZEITLUPE (ZTL) is a blue light receptor and clock component protein that is involved in various physiological and biochemical processes. However, the expression pattern and function of C. oleifera ZTL (CoZTL) remain unclear. In this study, the coding sequence of the CoZTL gene was isolated and the protein function was explored using bioinformatics and expression analyses and heterologous expression techniques. The results showed that the CoZTL protein was highly conserved during evolution and was on the same branch of the evolutionary tree as the ZTL proteins from Ipomoea nil and Nicotiana attenuata. CoZTL was mainly expressed in the fruit shells and stems of C. oleifera, and its expression level fluctuated greatly during flower bud development. Transgenic CoZTL-overexpressing Arabidopsis plants showed delayed flowering under long-day conditions as well as light-dependent promotion of hypocotyl elongation. Furthermore, yeast two-hybrid library screening revealed that seven C. oleifera proteins (CoAAT, Coβ-GAL, CoLAT52-like, CoCAR4-like, CoAO, CoUQCC1, and CoADF 2) interacted with CoZTL. Our results indicate that CoZTL plays an important role in C. oleifera flowering and hypocotyl growth.

Funder

China Postdoctoral Science Foundation

Natural Science Foundation of Hunan Province

Changsha Natural Science Foundation

Hunan Forestry Science and Technology Innovation Project

Publisher

MDPI AG

Subject

Horticulture,Plant Science

Reference54 articles.

1. Characterization and comprehensive evaluation of phenotypic characters in wild Camellia oleifera germplasm for conservation and breeding;Chen;Front. Plant Sci.,2023

2. Fatty acid composition of Camellia oleifera oil;Ma;J. Verbr. Lebensm.,2011

3. Applications of Chinese Camellia oleifera and its By-Products: A Review;Quan;Front. Chem.,2022

4. Recent advances in Camellia oleifera Abel: A review of nutritional constituents, biofunctional properties, and potential industrial applications;Luan;J. Funct. Foods,2020

5. Effect of Chilling Temperature on Chlorophyll Florescence, Leaf Anatomical Structure, and Physiological and Biochemical Characteristics of Two Camellia oleifera Cultivars;Wu;Int. J. Agric. Biol.,2020

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