Abstract
AbstractBanana, one of the most important staple fruit among global consumers is highly sterile owing to natural parthenocarpy. Identification of genetic factors responsible for parthenocarpy would facilitate the conventional breeders to improve the seeded accessions. We have constructed Protein–protein interaction (PPI) network through mining differentially expressed genes and the genes used for transgenic studies with respect to parthenocarpy. Based on the topological and pathway enrichment analysis of proteins in PPI network, 12 candidate genes were shortlisted. By further validating these candidate genes in seeded and seedless accession of Musa spp. we put forward MaAGL8, MaMADS16, MaGH3.8, MaMADS29, MaRGA1, MaEXPA1, MaGID1C, MaHK2 and MaBAM1 as possible target genes in the study of natural parthenocarpy. In contrary, expression profile of MaACLB-2 and MaZEP is anticipated to highlight the difference in artificially induced and natural parthenocarpy. By exploring the PPI of validated genes from the network, we postulated a putative pathway that bring insights into the significance of cytokinin mediated CLAVATA(CLV)–WUSHEL(WUS) signaling pathway in addition to gibberellin mediated auxin signaling in parthenocarpy. Our analysis is the first attempt to identify candidate genes and to hypothesize a putative mechanism that bridges the gaps in understanding natural parthenocarpy through PPI network.
Funder
Department of Biotechnology, Ministry of Science and Technology, India
Publisher
Springer Science and Business Media LLC
Reference94 articles.
1. Dhatt, A. S. & Kaur, G. Parthenocarpy: A potential trait to exploit in vegetable crops: A review. Agric. Rev. 37, 300–308 (2016).
2. Gillaspy, G., Ben-David, H. & Gruissem, W. Fruits: A developmental perspective. Plant Cell 5, 1439–1451 (1993).
3. Sykes, S. R. & Lewis, S. Comparing Imperial mandarin and Silverhill Satsuma mandarins as seed parents in a breeding program aimed at developing new seedless Citrus cultivars for Australia. Aust. J. Exp. Agric. 36, 731–738 (1996).
4. Goetz, M., Vivian-Smith, A., Johnson, S. D. & Koltunow, A. M. AUXIN RESPONSE FACTOR8 Is a negative regulator of fruit initiation in Arabidopsis. Plant Cell 18, 1873–1886 (2006).
5. Yoshida, T., Matsunaga, S. & Saito, T. Inheritance of parthenocarpic character in eggplant. J. Jpn. Soc. Hortic. Sci. 67, 257 (1998).
Cited by
10 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