skip to main content

The Expression of Glucanase Encoding Gene (CaβGlu) in Chili (Capsicum annuum L.) As a Response to Fusarium oxysporum Infection.

*Yunnia Rahmandanni  -  Universitas Diponegoro
Sri Pujiyanto  -  Universitas Diponegoro, Indonesia
Rejeki Siti Ferniah  -  Universitas Diponegoro, Indonesia

Citation Format:
Abstract
Indonesia is a tropical country with highest level of biodiversity, especially in the agricultural sector. Chili (Capsicum annumm. L) is a very well-known and widely used agricultural product in the world, which makes chili becomes one of the most considerable national product. The chili production is oftentimes very susceptible to some diseases caused by virus, fungi, or bacteria. One of the most common diseases in chili cultivation is Fusarium wilt, which is caused by Fusarium oxysporum. This disease can cause a major loss and up to 50% crop failure. Many procedures have been done to find the best cultivar with a resistance trait to Fusarium oxysporum, including by observing and testing the chili’s genetic resistance. One of the resistance genes in chili is β -1, 3- glucanase-encoding gene, which produces an enzyme to hydrolize the cell wall of pathogenic fungi. This research aimed to determine the expression of the glucanase-encoding gene (CaβGlu) in chili as a response to Fusarium oxysporum infection. The methods including chili cultivation, F. oxysporum inoculation, isolation of chili leaves RNA, glucanase-encoding gene expression analysis using qRT-PCR, and data analysis. The result of CaβGlu gene expression is higher than the control in the first 6 hours after inoculation, and decreasing in the 48th and 96th hours. The conclusion was the infection of Fusarium oxysporum is activating the expression of CaβGlu gene which was expressed best in the first 6 hours after inoculation.
Fulltext View|Download
  1. Livak, K.J., and Schmittgen, T.D. 2001. Analysis of Relative Gene Expression Data Using RealTime Quantitative PCR and the 22DDCT Method. Elsevier Science (USA). 25 : 402-408
  2. Madigan, M.T., Martinko, J.M., and Parker, J. (2009). Biology of Microorganisms. 12th ed. New York: Prentice Hall International
  3. Tian, S. P., Yao, H. J, Deng, X., Xu, X. B., Qin, G. Z., and Chan, Z. L. 2007. Characterization and expression of β-1,3-glucanase genes in jujube fruit induced by the microbial biocontrol agent Cryptococcus laurentii. Phytopathology, 97:260-268. Yanlin, S. 2005. Isolation, characterization, and expression analysis of β-1,3-glucanase genes from strawberry plants. Dissertation submitted to the Graduate Faculty of the Lousiania State University and Agricultural and Mechanical College
  4. Zhang, YL., D.-W. Li, Z.-H. Gong, J.-E. Wang, Y.-X. Yin and J.-J. Ji. 2013. Genetic
  5. determinants of the defense response of resistant and susceptible pepper (Capsicum annuum) cultivars infected with Phytophthora capsici (Oomycetes; Pythiaceae). Genetics and Molecular Research, 12 (3): 3605-3621

Last update:

No citation recorded.

Last update:

No citation recorded.