Chinese Agricultural Science Bulletin ›› 2022, Vol. 38 ›› Issue (18): 122-127.doi: 10.11924/j.issn.1000-6850.casb2021-0475
Special Issue: 生物技术
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QIU Tianyi(), XU Yue, ZHEN Jincheng, SI Lu, YU Hongjia, MU Yuting, XU Lijian()
Received:
2021-05-07
Revised:
2021-08-13
Online:
2022-06-25
Published:
2022-07-14
Contact:
XU Lijian
E-mail:393966992@qq.com;xulijian@hlju.edu.cn
CLC Number:
QIU Tianyi, XU Yue, ZHEN Jincheng, SI Lu, YU Hongjia, MU Yuting, XU Lijian. Active Fungi from Forest Litter of the Greater Khingan Mountains and Their Metabolites[J]. Chinese Agricultural Science Bulletin, 2022, 38(18): 122-127.
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URL: https://www.casb.org.cn/EN/10.11924/j.issn.1000-6850.casb2021-0475
序号 | 菌株 | 相似度/%* | 最相近菌种名称* |
---|---|---|---|
1 | FLF304 | 98.13 | Chloridium virescens |
2 | FLF314 | 97.67 | Pseudosigmoidea alnicola |
3 | FLF367 | 96.19 | Coleophoma paracylindrospora |
4 | FLF372 | 88.75 | Dactylospora parasitica |
5 | FLF381 | 92.79 | Capronia acutiseta |
6 | FLF392 | 93.19 | Cephalosporium gramineum |
7 | FLF399 | 94.52 | Cadophora fastigiata |
8 | FLF409 | 96.33 | Subulispora biappendiculata |
9 | FLF449 | 97.35 | Parapyrenochaeta sp. |
10 | FLF450 | 91.21 | Rosasphaeria moravica |
11 | FLF451 | 90.78 | Chalara sp. |
12 | FLF453 | 95.14 | Cadophora fastigiata |
13 | FLF455 | 87.97 | Cladophialophora lanosa |
14 | FLF457 | 87.72 | Dialonectria ullevolea |
15 | FLF459 | 96.77 | Exophiala moniliae |
16 | FLF460 | 90.47 | Matsushimaea fertilis |
17 | FLF462 | 95.18 | Crocicreas coronatum |
18 | FLF467 | 97.60 | Exophiala moniliae |
19 | FLF468 | 96.80 | Lophiostoma cynaroidis |
20 | FLF472 | 95.31 | Crocicreas coronatum |
21 | FLF473 | 93.01 | Orbilia clavuliformis |
序号 | 菌株 | 相似度/%* | 最相近菌种名称* |
---|---|---|---|
1 | FLF304 | 98.13 | Chloridium virescens |
2 | FLF314 | 97.67 | Pseudosigmoidea alnicola |
3 | FLF367 | 96.19 | Coleophoma paracylindrospora |
4 | FLF372 | 88.75 | Dactylospora parasitica |
5 | FLF381 | 92.79 | Capronia acutiseta |
6 | FLF392 | 93.19 | Cephalosporium gramineum |
7 | FLF399 | 94.52 | Cadophora fastigiata |
8 | FLF409 | 96.33 | Subulispora biappendiculata |
9 | FLF449 | 97.35 | Parapyrenochaeta sp. |
10 | FLF450 | 91.21 | Rosasphaeria moravica |
11 | FLF451 | 90.78 | Chalara sp. |
12 | FLF453 | 95.14 | Cadophora fastigiata |
13 | FLF455 | 87.97 | Cladophialophora lanosa |
14 | FLF457 | 87.72 | Dialonectria ullevolea |
15 | FLF459 | 96.77 | Exophiala moniliae |
16 | FLF460 | 90.47 | Matsushimaea fertilis |
17 | FLF462 | 95.18 | Crocicreas coronatum |
18 | FLF467 | 97.60 | Exophiala moniliae |
19 | FLF468 | 96.80 | Lophiostoma cynaroidis |
20 | FLF472 | 95.31 | Crocicreas coronatum |
21 | FLF473 | 93.01 | Orbilia clavuliformis |
菌株 | 菌落直径d/cm | 降解圈直径D/cm | 降解纤维素能力D/d |
---|---|---|---|
FLF367 | 0.80±0.08a | 1.23±0.09b | 1.57±0.26ab |
FLF449 | 0.86±0.12a | 1.30±0.16b | 1.50±0.05b |
FLF468 | 0.93±0.05a | 1.73±0.05a | 1.87±0.05a |
FLF473 | 0.91±0.08a | 1.33±0.09b | 1.33±0.17b |
菌株 | 菌落直径d/cm | 降解圈直径D/cm | 降解纤维素能力D/d |
---|---|---|---|
FLF367 | 0.80±0.08a | 1.23±0.09b | 1.57±0.26ab |
FLF449 | 0.86±0.12a | 1.30±0.16b | 1.50±0.05b |
FLF468 | 0.93±0.05a | 1.73±0.05a | 1.87±0.05a |
FLF473 | 0.91±0.08a | 1.33±0.09b | 1.33±0.17b |
[1] | ANTONELLI A, SMITH R J, FRY C, et al. State of the world’s plants and fungi[M]. Royal Botanic Gardens (Kew), 2020. |
[2] | BILLS G F, GLOER J B. Biologically active secondary metabolites from the fungi[J]. The fungal kingdom, 2017:1087-1119. |
[3] |
HUANG R H, LIN W, ZHANG P, et al. Anti-phytopathogenic bacterial metabolites from the seaweed-derived fungus Aspergillus sp. D40[J]. Frontiers in marine science, 2020, 7:313
doi: 10.3389/fmars.2020.00313 URL |
[4] |
CAIN J W, MILLER K I, KALAITZIS J A, et al. Genome mining of a fungal endophyte of Taxus yunnanensis (Chinese yew) leads to the discovery of a novel azaphilone polyketide, lijiquinone[J]. Microbial biotechnology, 2020, 13(5):1415-1427.
doi: 10.1111/1751-7915.13568 URL |
[5] |
SHARMA A, SINGH P, SARMAH B K, et al. Isolation of cellulose-degrading endophyte from capsicum Chinense and determination of its cellulolytic potential[J]. Biointerface research in applied chemistry, 2020, 10(6):6964-6973.
doi: 10.33263/BRIAC106.69646973 URL |
[6] | 马淑敏, 辛学兵, 裴顺祥, 等. 森林凋落物生产及分解研究进展[J]. 杨凌:陕西林业科技, 2019, 47(1):104-108. |
[7] |
Vuong T M D, Zeng J Y, Man X L. Soil fungal and bacterial communities in southern boreal forests of the Greater Khingan Mountains and their relationship with soil properties[J]. Scientific reports, 2020, 10(1):1-10.
doi: 10.1038/s41598-019-56847-4 URL |
[8] | 刘博洋, 朱美齐, 李泽宇, 等. 大兴安岭森林凋落物真菌及其次生代谢物活性研究[J]. 中国农学通报, 2019, 35(29):103-108. |
[9] | 李泽宇, 张志, 邱天艺, 等. 来源于大兴安岭多年冻土可培养真菌及其发酵物的生物活性[J]. 天然产物研究与开发, 2020, 32(3):453-463. |
[10] | 张哲栋, 梁晶, 李泽宇, 等. 大兴安岭北方森林凋落物真菌及其抗菌化合物[J]. 中国农学通报, 2021, 37(6):104-110. |
[11] |
LO Y C, SARATALE G D, CHEN W M, et al. Isolation of cellulose-hydrolytic bacteria and applications of the cellulolytic enzymes for cellulosic biohydrogen production[J]. Enzyme and microbial technology, 2009, 44(6-7):417-425.
doi: 10.1016/j.enzmictec.2009.03.002 URL |
[12] |
ZENG X, MA Y, MA L. Utilization of straw in biomass energy in China[J]. Renewable and sustainable energy reviews, 2007, 11(5):976-987.
doi: 10.1016/j.rser.2005.10.003 URL |
[13] | 景如贤, 张志宇, 贾培, 等. 纤维素降解菌株D2的分离鉴定及其产酶影响因素的研究[J]. 河南大学学报:自然科学版, 2020, 50(6):675-683. |
[14] |
YUAN J S, TILLER K H, AL-AHMAD H, et al. Plants to power: bioenergy to fuel the future[J]. Trends in plant science, 2008, 13(8):421-9.
doi: 10.1016/j.tplants.2008.06.001 URL |
[15] |
JIN X, LI Z, YANG G, et al. Winter wheat yield estimation based on multi-source medium resolution optical and radar imaging data and the AquaCrop model using the particle swarm optimization algorithm[J]. ISPRS journal of photogrammetry and remote sensing, 2017, 126:24-37.
doi: 10.1016/j.isprsjprs.2017.02.001 URL |
[16] | 蒋有绪, 卢俊培. 中国海南岛尖峰岭热带林生态系统[M]. 北京: 科学出版社, 1991. |
[17] |
LIANG J, LIU B Y, LI Z Y, et al. Myxotrichum albicans, a new slowly-growing species isolated from forest litters in China[J]. Mycoscience, 2019, 60(4):232-236.
doi: 10.1016/j.myc.2019.03.002 URL |
[18] | 周立刚. 植物抗菌化合物[M]. 北京: 中国农业科学技术出版社, 2005. |
[19] | TEATHER R M, WOOD P J. Use of Congo Red-Polysaccharide interactions in enumeration and characterization of cellulolytic bacteria from the bovine[J]. Applied & environmental microbiology, 1982, 43(4):777-780. |
[20] |
GUO W J, GUO S X, YANG J S, et al. Triterpenes and steroids from Armillaria mellea Vahl. ex Fr[J]. Biochemical systematics and ecology, 2007, 35(11):790-793.
doi: 10.1016/j.bse.2007.03.017 URL |
[21] |
AYER W A, LU P, ORSZANSKA H, et al. Deoxyscytalidin and lignicol: new metabolites from Scytalidium species[J]. Journal of natural products, 1993, 56(10):1835-1838.
doi: 10.1021/np50100a029 URL |
[22] |
VALENZUELA-LOPEZ N, CANO-LIRA 1 J F, GUARRO J, et al. Coelomycetous Dothideomycetes with emphasis on the families Cucurbitariaceae and Didymellaceae[J]. Studies in mycology, 2018, 90:1-69.
doi: 10.1016/j.simyco.2017.11.003 URL |
[23] | 刘博洋. 林下凋落物寡营养真菌的研究[D]. 哈尔滨: 黑龙江大学, 2019. |
[24] | 陈晓梅, 杨峻山, 郭顺星. 石斛小菇中的甾醇类化合物[J]. 药学学报, 2000, 35(5):367-369. |
[25] | 田梦青, 李建芳, 李国红. 韧革菌Stereum sp.YMF1.1660的化学成分研究[J]. 化学与生物工程, 2015, 32(2):29-32. |
[26] | 黄靖雯, 赖长江生, 袁媛, 等. 猪苓与蜜环菌化学成分研究的相关分析进展[J]. 中国中药杂志, 2017, 42(15):2905-2914. |
[27] |
AYER W A, LU P, ORSZANSKA H, et al. Deoxyscytalidin and lignicol: new metabolites from Scytalidium species[J]. Journal of natural products, 1993, 56(10):1835-1838.
doi: 10.1021/np50100a029 URL |
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