Host-induced climate change: Carbon dioxide tolerance as a Cryptococcus neoformans virulence trait. [PDF]
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Splitting Haploid Chromosomes into Different Nuclei: New Mechanisms of Adaptation in Fungi? [PDF]
Liu L, Kronstad JW, Wu Z.
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Histone Deacetylase 19 Controls Powdery Mildew Susceptibility by Attenuating Biosynthesis of Cuticular Wax and Salicylic Acid. [PDF]
Zhang M, Zhao W, Zhi P, Li H, Chang C.
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Draft whole genome sequence of <i>Alternaria alternata</i> strain P02PL2<i>,</i> an endophytic fungal species isolated from <i>Sclerocarya birrea</i>. [PDF]
Matandela AN, Mafuna T, Ndlovu SI.
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Limited and idiosyncratic thermal acclimation in soil saprotrophic fungi. [PDF]
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Editorial: Integrative techniques to alleviate abiotic stress in plants using plant growth promoting bacteria and fungi: mechanisms, interactions, and applications. [PDF]
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Biochemical characterization of wood decay and metabolization of phenolic compounds by causal fungi of grapevine trunk diseases. [PDF]
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An analysis of the bacterial and fungal diversity of the fecal material of gopher tortoises. [PDF]
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Alternative splicing in ascomycetes
Applied Microbiology and Biotechnology, 2013Alternative splicing is a complex and regulated process, which results in mRNA with different coding capacities from a single gene. Extend and types of alternative splicing vary greatly among eukaryotes. In this review, I focus on alternative splicing in ascomycetes, which in general have significant lower extend of alternative splicing than mammals ...
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