scholarly journals Influence of plant substrate composition on the efficiency of edible mushrooms cultivation Cyclocybe aegerita (V. Brig.), Pleurotus eryngii (DC.) Quel., Pleurotus citrinopileatus Singer and Flammulina velutipes (Curtis) Singer

2020 ◽  
Vol 107 (3) ◽  
pp. 62-70
Author(s):  
I. Bandura ◽  
◽  
A. Kulyk ◽  
S. Chausov ◽  
O. Tsyz ◽  
...  

Influence of plant substrate composition on the efficiency of edible mushrooms cultivation Cyclocybe aegerita (V. Brig.), Pleurotus eryngii (DC.) Quel., Pleurotus citrinopileatus Singer and Flammulina velutipes (Curtis) Singer. The possibility of using plant substrates based on straw and sunflower husk, with the addition of rape seeds and corn processing waste for the cultivation of edible xylotrophic mushrooms: poplar mushroom, lemon-hat oyster mushroom and winter mushroom (white and yellow races) was investigated. The optimal formula of the substrate was established, the use of which increases the biological effectiveness of the studied strains and reduces the time required for obtaining fresh fruit bodies. Keywords: lemon-cap oyster mushroom Pleurotus citrinopileatus, poplar mushroom Cyclocybe aegerita, winter mushroom Flammulina velutipes, biological efficiency, technological cyclemushrooms (Flammulina velutipes), biological efficiency, technological cycle.

2019 ◽  
Vol 85 (24) ◽  
Author(s):  
Taju Wu ◽  
Chengcheng Hu ◽  
Baogui Xie ◽  
Long Zhang ◽  
Shujie Yan ◽  
...  

ABSTRACT Most of the edible mushrooms cannot be cultivated or have low yield under industrial conditions, partially due to the lack of knowledge on how basidioma (fruiting body) development is regulated. From winter mushroom (Flammulina velutipes), one of the most popular industrially cultivated mushrooms, a transcription factor, PDD1, with a high-mobility group (HMG)-box domain was identified based on its increased transcription during basidioma development. pdd1 knockdown by RNA interference affected vegetative growth and dramatically impaired basidioma development. A strain with an 89.9% reduction in the level of pdd1 transcription failed to produce primordia, while overexpression of pdd1 promoted basidioma development. When the transcriptional level of pdd1 was increased to 5 times the base level, the mushroom cultivation time was shortened by 9.8% and the yield was increased by at least 33%. RNA sequencing (RNA-seq) analysis revealed that pdd1 knockdown downregulated 331 genes and upregulated 463 genes. PDD1 positively regulated several genes related to fruiting, including 6 pheromone receptor-encoding genes, 3 jacalin-related lectin-encoding genes, FVFD16, and 2 FVFD16 homolog-encoding genes. PDD1 is a novel transcription factor with regulatory function in basidioma development found in industrially cultivated mushrooms. Since its orthologs are widely present in fungal species of the Basidiomycota phylum, PDD1 might have important application prospects in mushroom breeding. IMPORTANCE Mushrooms are sources of food and medicine and provide abundant nutrients and bioactive compounds. However, most of the edible mushrooms cannot be cultivated commercially due to the limited understanding of basidioma development. From winter mushroom (Flammulina velutipes; also known as Enokitake), one of the most commonly cultivated mushrooms, we identified a novel transcription factor, PDD1, positively regulating basidioma development. PDD1 increases expression during basidioma development. Artificially increasing its expression promoted basidioma formation and dramatically increased mushroom yield, while reducing its expression dramatically impaired its development. In its PDD1 overexpression mutants, mushroom number, height, yield, and biological efficiency were significantly increased. PDD1 regulates the expression of some genes that are important in or related to basidioma development. PDD1 is the first identified transcription factor with defined functions in mushroom development among commercially cultivated mushroom species, and it might be useful in mushroom breeding.


Author(s):  
I. Bandura ◽  
◽  
N. Bisko ◽  
A. Kulik ◽  
O. Tsyz ◽  
...  

Flammulina velutipes - enokitake or shortly - "enoki", is one of the most widely cultivated mushrooms on the planet. The value of the fruit bodies of the “gold mushroom” is determined by their high functional properties, in particular, the presence of bio-active proteins FIP-fve (fungal immunomodulatory protein), and special polysaccharides. Consumers like its delicate texture and bright rich aroma. In Ukraine, this mushroom is successfully grown in small-scale production, but the technological foundations for introducing it into industrial culture have not been developed until current time. The aim of the work was to determine the effective technical operations of the Flammulina industrial production using local agricultural wastes. The substrate formula (sawdust 400 g; straw 400 g; wheat bran 180g; chalk (CaCO3) 20g; water 1850 g) after sterilization (under 121°C for 120 minutes) was used for the cultivation. Ten strains from the IBK mushroom culture collection were checked, and three strains: 2038 (white race), 2039 and 2337 (yellow race), were selected. These strains have shown the best technological characteristics – short harvesting time (38 days for 2039 and 2037, 45 days for 2038) and the high level of biological efficiency (2037 -52,6%, 2039-51,3%, 2038-45,4%) in comparison with strain 1994 (white race) with the worse indexes (62 days of fruiting and 25,7% of biological efficiency) in the screening experiment. In addition, any bacterial diseases did not detect during cultivation process, except strain 1880. In the second part of the experiment selected strains have been grown in industrial conditions and their main technical characteristics were studied: biological efficiency and the time of first flush harvesting on 8 substrate compositions from local agricultural wastes. Pellets from sunflower husks as a substrate ingredient has had some technical advantages: the time of substrate preparation was shorter because it was soaked in a few minutes and the necessary density was reached. The statistical analyses data show significant differences in the parameters of vegetative growth time as for one strain on the different substrate composition as between strains. The best overall rate of vegetative development rate (U-test) was obtained in strain 2337. The transition to the generative stage was the shortest when the substrate of formula 8 was used (2337 and 2039 with a term of 27 and 28 days, respectively). The lowest time was recorded in treatment 2 (39-42 days for these strains). The most biological efficiency index (81,2%) was noted on substrate composition 8, and the lowest (35,4%) on formula 2 in strain 2039. The selected substrate formula 8 (sunflower husk 400 g, pellets of sunflower husk 300 g, corn bran 200 g, rapeseed 90 g, chalk 10 g, water 1800 g) was used for the estimation of effect weight of substrate bag to the biological efficiency of strain 2039. As a result, the biological efficiency of 2039 strain was in 1,6 times more in case of using smaller bags with 1500 g weight in comparison with treatment of bigger bag with weight 3000 g, 121,2±17,3% and 75,8±9,4% respectively. However, statistical analyses did not reveal the effect of weight for first harvesting time of 2039 strain (no statistical differences between 39±3 and 44±2 days for 1500 g and 3000 g bag weight respectively). F. velutipes strains 2037, 2039 (yellow race) and 2038 (white race) can be recommended for cultivation, but according to our research, the further studies of local agro wastes using, the influence of micro-climate on the growing process, morphological characteristics and biochemical content are importantly necessary for the development of successful industrial production.


2021 ◽  
Vol 17 (2) ◽  
pp. 130-138
Author(s):  
I.I. Bandura ◽  
A. S. Kulyk ◽  
S. V. Makohon ◽  
O. V. Khareba ◽  
V. V. Khareba

Purpose. To reveal the influence of the substrate compositions on technical indicators and the chemical composition of the fruiting bodies of the golden oyster mushroom and poplar mushroom. Methods. The experimental design included cultivation of two species of wood-decay fungi Pleurotus citrinopileatus Singer (strain 2161 IVK) and Cyclocybe aegerita (V.Brig.) Vizzini (strain 2230 IVK) on three variants of substrate composition. Laboratory, laboratory-production methods for evaluating the effectiveness of growing technology, chemical composition of the obtained raw materials, statistical methods of analysis were applied. Results. The structure and composition of substrates affect the technological characteristics of the culture, physical and chemical properties of fruiting bodies. The shortest fruiting cycle of 35.2 ± 1.7 days was determined for C. aegerita under growing conditions on SC1 substrate which formula included «straw, husks, pellet, rapeseed, corn, and CaCO3» in the ratio of 30: 40: 70: 20: 20: 1. The highest yield (170.5 ± 15.2 g per 1 kg of substrate) in the experiment was determined for P. citrinopileatus on the SC1 substrate composed of «straw / pellets  / rapeseed / corn / CaCO3» in the ratio 40: 90: 20: 25: 1. Fruiting bodies of P. citrinopileatus obtained from the SC3 substrate composed of  «pellets / rapeseed / corn / CaCO3» in the ratio 60: 110: 20: 30: 1 had the highest protein content – 22.47 ± 0.19%, and fruiting bodies from the SC1 substrate had the least amount of proteins – 17.38 ± 2.60%. Fruiting bodies of C. aegerita contained more lipids than those of P. citrinopileatus, but the factor of the influence of the substrate composition on the total amount of lipids for some cultivars was insignificant. The largest amount of endopolysaccharides was isolated from the fruiting bodies of C. aegerita (6.81 ± 0.41%) cultivated on SC3 substrate, and the smallest in the SC1 variant (1.38 ± 0.25%). The content of endopolysaccharides in the fruiting bodies of P. citrinopileatus had less variability from 2.54 ± 0.54 (SC3) to 4.72 ± 0.61% (SC1). Conclusion. Substrate compositions significantly affect the biological efficiency of cultivars and the content of nutrients in fruiting bodies of the studied species. The obtained results enable producers of mushrooms to predict the production efficiency and quality of grown mushrooms in accordance with the use of available raw materials.


Agronomy ◽  
2020 ◽  
Vol 10 (12) ◽  
pp. 1892
Author(s):  
Chiu-Yeh Wu ◽  
Chih-Hung Liang ◽  
Zeng-Chin Liang

The purpose of this study was to investigate the suitability of different spent mushroom sawdust wastes (SMSWs) and different proportions of SMSWs as potential substrates for the cultivation of Auricularia polytricha by evaluating yield and biological efficiency of the fruiting body. Nine SMSWs were respectively utilized as the main ingredient in the cultivation of A. polytricha. Then, spent Pleurotus eryngii, Pleurotus cystidiosus, and Pleurotus ostreatus sawdust wastes were screened among these nine SMSWs to be utilized as substrate and to determine the suitable proportion of SMSW in the cultivation of A. polytricha based on their yields and biological efficiencies. The highest yield and biological efficiency (total of two flushes) of A. polytricha cultivation on a single SMSW substrate was obtained with spent P. eryngii sawdust waste, followed by spent P. cystidiosus and P. ostreatus sawdust wastes. These three SMSWs were then applied in nine combination substrates, which were screened based on yield and biological efficiency for cultivation of A. polytricha. The combination substrate with the highest yield and biological efficiency of A. polytricha cultivation was P. eryngii (PES) + P. cystidiosus spent sawdust (PCYS) (235.4 g/bag yield and 58.85% biological efficiency); its yield was 1.62 folds higher than that of the control. From the results, we found that it was feasible to use spent sawdust wastes of P. eryngii and P. cystidiosus to replace sawdust for cultivation of A. polytricha.


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