Literature DB >> 16105803

Induction and differential expression of beta-1,3-glucanase mRNAs in tolerant and susceptible Hevea clones in response to infection by Phytophthora meadii.

I Thanseem1, A Joseph, A Thulaseedharan.   

Abstract

Most cultivated rubber tree (Hevea brasiliensis Willd. ex A. Juss.) clones in India are susceptible to abnormal leaf fall disease (ALF), which is caused by various Phytophthora species and results in yield losses of up to 40%. Because the conventional breeding programs for this perennial tree crop are complex and time consuming, we attempted to find a molecular solution to increase the tolerance of rubber trees to ALF. The expression patterns of the gene coding for the pathogenesis-related beta-1,3-glucanase (beta-glu) enzyme in a tolerant (RRII 105) and a highly susceptible (RRIM 600) clone of rubber tree were examined, following infection with ALF-causing Phytophthora meadii McRae. Infected leaf samples were collected at different times after inoculation, and RNA was extracted and subjected to Northern blot hybridization and reverse transcriptase polymerase chain reaction (RT-PCR). On hybridization with a 1.25 kb beta-glu probe, Northern blots showed a marked increase in beta-glu transcript levels in both clones 48 h after inoculation. However, compared with the susceptible RRIM 600 clone, the tolerant RRII 105 clone had a higher rate of increase and a more prolonged induction, with beta-glu transcript levels remaining high for 4 days after inoculation. In RRIM 600, the mRNA levels decreased significantly 48 h after inoculation. On re-hybridization with an 18S rRNA probe, uniform signals were detected in all the lanes, indicating that an equal amount of total RNA was present in all samples. Similar results were obtained in relative quantitative RT-PCR experiments with the housekeeping actin gene as an internal control. Thus, although induction of the beta-glu gene occurred in both tolerant and susceptible clones, the predominant difference between clones was in the intensity and duration of the response. The tolerance of clone RRII 105 may be associated with the prolonged expression of the gene following infection. The antifungal activity of these hydrolase enzymes makes them rational candidates for overexpression by genetic transformation to produce disease resistant crops.

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Year:  2005        PMID: 16105803     DOI: 10.1093/treephys/25.11.1361

Source DB:  PubMed          Journal:  Tree Physiol        ISSN: 0829-318X            Impact factor:   4.196


  5 in total

Review 1.  Recent insights on gene expression studies on Hevea Brasiliensis fatal leaf fall diseases.

Authors:  Nur Syafiqah Mohd Afandi; Mohd Afiq Hazlami Habib; Mohd Nazri Ismail
Journal:  Physiol Mol Biol Plants       Date:  2022-02-15

2.  Construction of a high-density integrated genetic linkage map of rubber tree (Hevea brasiliensis) using genotyping-by-sequencing (GBS).

Authors:  Wirulda Pootakham; Panthita Ruang-Areerate; Nukoon Jomchai; Chutima Sonthirod; Duangjai Sangsrakru; Thippawan Yoocha; Kanikar Theerawattanasuk; Kanlaya Nirapathpongporn; Phayao Romruensukharom; Somvong Tragoonrung; Sithichoke Tangphatsornruang
Journal:  Front Plant Sci       Date:  2015-05-27       Impact factor: 5.753

3.  De novo sequencing, assembly, and analysis of the root transcriptome of Persea americana (Mill.) in response to Phytophthora cinnamomi and flooding.

Authors:  Bianca J Reeksting; Nanette Coetzer; Waheed Mahomed; Juanita Engelbrecht; Noëlani van den Berg
Journal:  PLoS One       Date:  2014-02-10       Impact factor: 3.240

4.  Thyme and Savory Essential Oil Efficacy and Induction of Resistance against Botrytis cinerea through Priming of Defense Responses in Apple.

Authors:  Houda Banani; Leone Olivieri; Karin Santoro; Angelo Garibaldi; Maria Lodovica Gullino; Davide Spadaro
Journal:  Foods       Date:  2018-01-23

5.  Comparative Transcriptome Analysis in Taraxacum koksaghyz to Identify Genes that Determine Root Volume and Root Length.

Authors:  Annika Wieghaus; Kai-Uwe Roelfs; Richard M Twyman; Dirk Prüfer; Christian Schulze Gronover
Journal:  Front Genet       Date:  2022-01-24       Impact factor: 4.599

  5 in total

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