|Table of Contents|

Comparison of the Contents of Polysaccharide in Hypha and Fermentation Broth of Different Panellus edulis Strains(PDF)

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2013年19期
Page:
155-158
Research Field:
Publishing date:

Info

Title:
Comparison of the Contents of Polysaccharide in Hypha and Fermentation Broth of Different Panellus edulis Strains
Author(s):
LIU Yu1WANG Jian-rui2LU Tie2HAO Xiao-dong1Tuliguer12
1.Shandong Key Laboratory of Edible Mushroom Technology,Agricultural Institute,Ludong University,Yantai,Shandong 264025;
2.Engineering Research Center of Chinese Ministry of Education for Edible and Medicinal Fungi,Institute of Mycology,Jilin Agricultural University,Changchun,Jilin 130118
Keywords:
IPSEPSmycelial biomassliquid fermentation cultivation
PACS:
Q 815
DOI:
-
Abstract:
Mycelia polysaccharide and fermented liquid polysaccharide of cultivated strains and wild strains (wild non-stipe strain and wild long stipe strain) of Panellus edulis were extracted and separated after different fermentation time.IPS and EPS concentration of every strain were determined.The dynamic change trend of correlative indexes about mycelia biomass,the contents of IPS and EPS of three kinds of strains in different fermentation time were analyzed.The results showed that mycelia biomass of Panellus edulis reached the maximum at 12 d in the conditions of constant temperature and oscillation,as 25℃ and 180 r/min culture.The growth rate of cultivated strain was faster than other two wild stains;in the process of Panellus edulis liquid culture,the change of intracellular polysaccharide content was positively related to mycelia biomass;at the early stage of fermentation,the content of intracellular polysaccharide got increased when biomass was added more,but got decreased when the fermented strains as plateau or recession time.Among them,the content of IPS in two cultivated strains was considerably higher than wild strains.EPS change was irregularly during the fermental cultivation time.

References:

[1]Masuda YKodama NNanba H.Macrophage J774.1 cell is activated by MZ-Fraction (Klasma-MZ) polysaccharide in Grifola frondosa[J].Mycoscience200647360-366.

[2]Dai Y CNiemela TQin G F.Changbai wood-rotting fungi 14.a new pleurotoid species Panellus edulis[J].Annales Botanici Fennici200340107-112.

[3]李玉,图力古尔.中国长白山蘑菇[M].北京:科学出版社,2003.

[4]戴玉成,杨祝良.中国药用真菌名录及部分名称的修订[J].菌物学报,200827(6)801-824.

[5]戴玉成,周丽伟,杨祝良,等.中国食用菌名录[J].菌物学报,201029(1)1-21.

[6]马岩,张锐,于小风,.黄蘑多糖对荷瘤小鼠化疗的减毒增效作用[J].中草药,200637(8)1199-1202.

[7]马岩,马颖哲,张家颖,等.黄蘑多糖Fb对小鼠免疫功能的调节作用[J].吉林大学学报(医学版),200531(5)692-695.

[8]田杰,张大方.亚侧耳的药理作用研究进展[J].长春中医学院学报,200420(4)63-64.

[9]陈湘,林炳昌.黄蘑子实体总糖的提取[J].食用菌学报,200714(1)47-48.

[10]江海霞,赵海,张大方.亚侧耳人工培养工艺及其化学成分的研究进展[J].长春中医学院学报,200521(2)59-60.

[11]贾静,叶云霞,王军英,等.菌糠袋栽元蘑技术初步研究[J].山西农业大学学报(自然科学版)201131(3)247-249.

[12]甄世梅,杨树德,于兰兰,等.金福菇液体发酵培养基的优化[J].中国酿造,2010220(7)92-95.

[13]顾华杰,黄金汇,金琎,等.4种灰树花多糖测定方法的比较[J].江苏农业科学,201139(4)400-402.

[14]汪敬健,温鲁,翁梁,等.不同碳、氮源对猴头菌菌丝体多糖含量的影响[J].食品科学,201031(1)149-151.

[15]刘菊香,贾建波.木蹄层孔菌多糖分离纯化及其结构初步鉴定[J].食品科学,200930(24)80-83.

[16]王艳萍,黄剑,刘舒翔,等.灰树花胞内多糖和胞外多糖的组成分析[J].中国酿造,2011230(5)95-97.


Memo

Memo:
-
Last Update: 2014-08-26