[HTML][HTML] De novo genome assembly and annotation of rice sheath rot fungus Sarocladium oryzae reveals genes involved in Helvolic acid and Cerulenin biosynthesis …

S Hittalmani, HB Mahesh, C Mahadevaiah… - BMC genomics, 2016 - Springer
Background Sheath rot disease caused by Sarocladium oryzae is an emerging threat for rice
cultivation at global level. However, limited information with respect to genomic resources …

[HTML][HTML] De novo genome assembly and annotation of rice sheath rot fungus Sarocladium oryzae reveals genes involved in Helvolic acid and Cerulenin biosynthesis …

S Hittalmani, HB Mahesh… - BMC …, 2016 - bmcgenomics.biomedcentral.com
Sheath rot disease caused by Sarocladium oryzae is an emerging threat for rice cultivation
at global level. However, limited information with respect to genomic resources and …

De novo genome assembly and annotation of rice sheath rot fungus Sarocladium oryzae reveals genes involved in Helvolic acid and Cerulenin biosynthesis …

S Hittalmani, HB Mahesh, C Mahadevaiah… - BMC Genomics, 2016 - infona.pl
Background Sheath rot disease caused by Sarocladium oryzae is an emerging threat for rice
cultivation at global level. However, limited information with respect to genomic resources …

[PDF][PDF] De novo genome assembly and annotation of rice sheath rot fungus Sarocladium oryzae reveals genes involved in Helvolic acid and Cerulenin biosynthesis …

S Hittalmani, HB Mahesh, C Mahadevaiah… - 2016 - cyberleninka.org
Background: Sheath rot disease caused by Sarocladium oryzae is an emerging threat for
rice cultivation at global level. However, limited information with respect to genomic …

[PDF][PDF] De novo genome assembly and annotation of rice sheath rot fungus Sarocladium oryzae reveals genes involved in Helvolic acid and Cerulenin biosynthesis …

S Hittalmani, HB Mahesh, C Mahadevaiah… - 2016 - core.ac.uk
Background: Sheath rot disease caused by Sarocladium oryzae is an emerging threat for
rice cultivation at global level. However, limited information with respect to genomic …

[HTML][HTML] De novo genome assembly and annotation of rice sheath rot fungus Sarocladium oryzae reveals genes involved in Helvolic acid and Cerulenin biosynthesis …

S Hittalmani, HB Mahesh, C Mahadevaiah… - BMC …, 2016 - ncbi.nlm.nih.gov
Background Sheath rot disease caused by Sarocladium oryzae is an emerging threat for rice
cultivation at global level. However, limited information with respect to genomic resources …

De novo genome assembly and annotation of rice sheath rot fungus Sarocladium oryzae reveals genes involved in Helvolic acid and Cerulenin biosynthesis …

S Hittalmani, HB Mahesh, C Mahadevaiah… - BMC …, 2016 - pubmed.ncbi.nlm.nih.gov
Background Sheath rot disease caused by Sarocladium oryzae is an emerging threat for rice
cultivation at global level. However, limited information with respect to genomic resources …

De novo genome assembly and annotation of rice sheath rot fungus Sarocladium oryzae reveals genes involved in Helvolic acid and Cerulenin biosynthesis …

S Hittalmani, HB Mahesh, C Mahadevaiah… - BMC …, 2016 - europepmc.org
Background Sheath rot disease caused by Sarocladium oryzae is an emerging threat for rice
cultivation at global level. However, limited information with respect to genomic resources …

De novo genome assembly and annotation of rice sheath rot fungus Sarocladium oryzae reveals genes involved in Helvolic acid and Cerulenin biosynthesis …

S Hittalmani, HB Mahesh, C Mahadevaiah… - BMC Genomics, 2016 - go.gale.com
De novo genome assembly and annotation of rice sheath rot fungus Sarocladium oryzae
reveals genes involved in Helvolic acid and Cerulenin biosynthesis pathways - Document …

De novo genome assembly and annotation of rice sheath rot fungus Sarocladium oryzae reveals genes involved in Helvolic acid and Cerulenin biosynthesis …

S Hittalmani, HB Mahesh, C Mahadevaiah… - BMC …, 2016 - search.ebscohost.com
Background: Sheath rot disease caused by Sarocladium oryzae is an emerging threat for
rice cultivation at global level. However, limited information with respect to genomic …