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1. Botcinic acid biosynthesis in Botrytis cinerea relies on a subtelomeric gene cluster surrounded by relics of transposons and is regulated by the Zn 2 Cys 6 transcription factor BcBoa13.

2. Involvement of the cysteine protease BcAtg4 in development and virulence of Botrytis cinerea.

3. Ubiquitin-like activating enzymes BcAtg3 and BcAtg7 participate in development and pathogenesis of Botrytis cinerea.

4. Functional analysis of diacylglycerol O-acyl transferase 2 gene to decipher its role in virulence of Botrytis cinerea.

5. Identification of genes involved in fungal responses to strigolactones using mutants from fungal pathogens.

6. BcMctA, a putative monocarboxylate transporter, is required for pathogenicity in Botrytis cinerea.

7. Botrytis cinerea chitin synthase BcChsVI is required for normal growth and pathogenicity.

8. Single oligonucleotide nested PCR: a rapid method for the isolation of genes and their flanking regions from expressed sequence tags.

9. Agrobacterium-mediated transformation of Botrytis cinerea, simple purification of monokaryotic transformants and rapid conidia-based identification of the transfer-DNA host genomic DNA flanking sequences.

10. A semi-quantitative RT-PCR method to readily compare expression levels within Botrytis cinerea multigenic families in vitro and in planta.

11. Primary structure and transcription patterns of RPL36, a ribosomal protein-encoding gene of the mycoparasitic fungus, Trichoderma hamatum.

12. Regulation of endopolygalacturonase gene expression in Botrytis cinerea by galacturonic acid, ambient pH and carbon catabolite repression.

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