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DOI10.1371/journal.pone.0158207
Endophytic Fungi from Frankincense Tree Improves Host Growth and Produces Extracellular Enzymes and Indole Acetic Acid
Khan, Abdul Latif1; Al-Harrasi, Ahmed1; Al-Rawahi, Ahmed1; Al-Farsi, Zainab1; Al-Mamari, Aza1; Waqas, Muhammad2,3; Asaf, Sajjad2; Elyassi, Ali1; Mabood, Fazal1; Shin, Jae-Ho2; Lee, In-Jung2
通讯作者Al-Harrasi, Ahmed ; Lee, In-Jung
来源期刊PLOS ONE
ISSN1932-6203
出版年2016
卷号11期号:6
英文摘要

Boswellia sacra, an economically important frankincense-producing tree found in the desert woodlands of Oman, is least known for its endophytic fungal diversity and the potential of these fungi to produce extracellular enzymes and auxins. We isolated various fungal endophytes belonging to Eurotiales (11.8%), Chaetomiaceae (17.6%), Incertae sadis (29.5%), Aureobasidiaceae (17.6%), Nectriaceae (5.9%) and Sporomiaceae (17.6%) from the phylloplane (leaf) and caulosphere (stem) of the tree. Endophytes were identified using genomic DNA extraction, PCR amplification and sequencing the internal transcribed spacer regions, whereas a detailed phylogenetic analysis of the same gene fragment was made with homologous sequences. The endophytic colonization rate was significantly higher in the leaf (5.33%) than the stem (0.262%). The Shannon-Weiner diversity index was H’ 0.8729, while Simpson index was higher in the leaf (0.583) than in the stem (0.416). Regarding the endophytic fungi’s potential for extracellular enzyme production, fluorogenic 4-methylum-belliferone standards and substrates were used to determine the presence of cellulases, phosphatases and glucosidases in the pure culture. Among fungal strains, Penicillum citrinum BSL17 showed significantly higher amounts of glucosidases (62.15 +/- 1.8 mu M(-1)min(-1)mL) and cellulases (62.11 +/- 1.6 mu M(-1)min(-1)mL), whereas Preussia sp. BSL10 showed significantly higher secretion of glucosidases (69.4 +/- 0.79 mu M(-1)min(-1)mL) and phosphatases (3.46 +/- 0.31 mu M(-1)min(-1)mL) compared to other strains. Aureobasidium sp. BSS6 and Preussia sp. BSL10 showed significantly higher potential for indole acetic acid production (tryptophan-dependent and independent pathways). Preussia sp. BSL10 was applied to the host B. sacra tree saplings, which exhibited significant improvements in plant growth parameters and accumulation of photosynthetic pigments. The current study concluded that endophytic microbial resources producing extracellular enzymes and auxin could establish a unique niche for ecological adaptation during symbiosis with the host Frankincense tree.


类型Article
语种英语
国家Oman ; South Korea ; Pakistan
收录类别SCI-E
WOS记录号WOS:000378865200048
WOS关键词STRESS TOLERANCE ; PLANT-GROWTH ; DIVERSITY ; BIOSYNTHESIS ; PHYLLOPLANE ; CAPABILITY ; BACTERIA ; TISSUE ; L.
WOS类目Multidisciplinary Sciences
WOS研究方向Science & Technology - Other Topics
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/195641
作者单位1.Univ Nizwa, UoN Chair Omans Med Plants & Marine Nat Prod, Nizwa, Oman;
2.Kyungpook Natl Univ, Sch Appl Biosci, Daegu, South Korea;
3.Abdul Wali Khan Univ Mardan, Dept Agr, Mardan, Pakistan
推荐引用方式
GB/T 7714
Khan, Abdul Latif,Al-Harrasi, Ahmed,Al-Rawahi, Ahmed,et al. Endophytic Fungi from Frankincense Tree Improves Host Growth and Produces Extracellular Enzymes and Indole Acetic Acid[J],2016,11(6).
APA Khan, Abdul Latif.,Al-Harrasi, Ahmed.,Al-Rawahi, Ahmed.,Al-Farsi, Zainab.,Al-Mamari, Aza.,...&Lee, In-Jung.(2016).Endophytic Fungi from Frankincense Tree Improves Host Growth and Produces Extracellular Enzymes and Indole Acetic Acid.PLOS ONE,11(6).
MLA Khan, Abdul Latif,et al."Endophytic Fungi from Frankincense Tree Improves Host Growth and Produces Extracellular Enzymes and Indole Acetic Acid".PLOS ONE 11.6(2016).
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