Author:
Lu Danying,Xu Bin,Yu Qin,Liu Zhigao,Ren Mingjie,Wang Yaling,Zhang Shouzhou,Wu Chao,Shen Yamei
Abstract
AbstractMagnolia sinostellata is one of the endangered species in China and largely suffers light deficiency stress in the understory of forest. However, the weak light response molecular mechanism remains unclear. More importantly, hub genes in the molecular network have not been pinpointed. To explore potential regulators in the mechanism, weighted gene co-expression network analysis (WGCNA) was performed to analysis the trancriptome data of M. sinostellata leaves subjected to weak light with different time points. Gene co-expression analysis illustrated that module 1, 2 and 3 were closely associated with light deficiency treatment, which. Gene ontology and KEGG analyses showed that genes in module 1 mainly participated in amino and nucleotide metabolism, module 2 mostly involved in carbon fixation and module 3 mostly regulated photosynthesis related pathways, among which 6, 7 and 8 hub genes were identified, respectively. Hub genes isoform_107196 in module 1 and isoform_55976 in module 2 were unique to M. sinostellata. This study found that light deficiency inhibited photosynthesis and stress tolerance, while improved carbon metabolism and flowering related pathways in M. sinostellata, which can impact its accumulation reserves of growth and reproduction in the next season. In addition, key shade response regulators identified in this study have laid a firm foundation for further investigation of shade response molecular mechanism and protection of other shade sensitive plants.
Funder
Natural Science Foundation of Zhejiang Province
Publisher
Springer Science and Business Media LLC
Reference77 articles.
1. Baranova, M. Systematic anatomy of the leaf epidermis in the Magnoliaceae and some related families. Int. Assoc. Plant Taxon. (IAPT) 21, 447–469 (1972).
2. Suzuki, S., Kiyoshi, I., Saneyoshi, U., Yoshihiko, T. & Nobuhiro, T. Population differentiation and gene flow within ametapopulation of a threatened tree, Magnolia stellata (magnoliaceae). Am. J. Bot. 94, 128–136 (2007).
3. Tan, M. et al. Study on seed germination and seedling growth of Magnolia officinalis in different habitats. J. Ecol. Rural Environ. 34, 910–916 (2018).
4. Zezhi, Y. et al. Study on population distribution and community structure of Magnolia sinostellata. Zhejiang For. Sci. Technol. 35, 47–52 (2015).
5. Yu, Q. et al. Light deficiency and waterlogging affect chlorophyll metabolism and photosynthesis in Magnolia sinostellata. Trees 33, 11–22. https://doi.org/10.1007/s00468-018-1753-5 (2018).