Publications by authors named "Jibin Qu"

High temperature is a key limiting factor for mycelium growth and development in . Thermotolerance includes the direct response to heat stress and the ability to recover from heat stress. To better understand the mechanism of thermotolerance in , we used morphological and physiological analysis combined with an iTRAQ-based proteomics analysis of subjected to 40°C for 48 h followed by recovery at 25°C for 3 days.

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is a commercially grown mushroom species in China. However, studies on the mechanisms of the fruiting body development and stress response of are still at a primary stage. In this study, we report the entire genome sequence of CCMSSC03989.

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Background: Pleurotus tuoliensis (Bailinggu) is a commercially cultivated mushroom species with an increasing popularity in China and other Asian countries. Commercial profits are now low, mainly due to a low yield, long cultivation period and sensitivity to diseases. Breeding efforts are thus required to improve agronomical important traits.

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Noncoding RNAs (ncRNAs) have been identified in many fungi. However, no genome-scale identification of ncRNAs has been inventoried for basidiomycetes. In this research, we detected 254 small noncoding RNAs (sncRNAs) in a genome assembly of an isolate (CCEF00389) of , which is a widely cultivated edible basidiomycetous fungus worldwide.

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Simple sequence repeats (SSRs) play specific roles in many biological activities. In this paper, we focused on SSRs in the genome of Pleurotus ostreatus, which is a widely cultivated edible mushroom. The distribution curves of SSRs and exons are opposite throughout the genome, which means that SSRs are mostly located in non-coding regions.

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The genetic diversity of 123 wild strains of Pleurotus eryngii var. tuoliensis, which were collected from nine geographical locations in Yumin, Tuoli, and Qinghe counties in the Xinjiang Autonomous Region of China, was analysed using two molecular marker systems (inter-simple sequence repeat and start codon targeted). At the variety level, the percentage of polymorphic loci and Nei's gene diversity index for P.

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