Potential of Novel Sequence Type of for Biological Control of Root Rot of Maize ( L.) Caused by .

Potential of Novel Sequence Type of for Biological Control of Root Rot of Maize ( L.) Caused by .

Tagele, Setu Bazie;Kim, Sang Woo;Lee, Hyun Gu;Lee, Youn Su;
International journal of molecular sciences 2019 Vol. 20
240
tagele2019potentialinternational

Abstract

In this study, two strains, strain KNU17BI2 and strain KNU17BI3, were isolated from maize rhizospheric soil, South Korea. The 16S rRNA gene and multilocus sequence analysis and typing (MLSA-MLST) were used for the identification of the studied strains. Strain KNU17BI2, which belonged to was of a novel sequence type (ST) designated ST-1538, while strain KNU17BI3 had a similar allelic profile with the seven loci of strain LMG 23361. The strains were evaluated in vitro for their specific plant growth promoting (PGP) traits, such as zinc solubilization, phosphate solubilization, ammonia production, 1-aminocyclopropane-1-carboxylate (ACC) deaminase activity, indole acetic acid (IAA) production, siderophore, and hydrolytic enzyme activity. Interestingly, the strains exhibited a positive effect on all of the tested parameters. The strains also showed broad-spectrum antifungal activity against economically important phytopathogens in the dual culture assay. Furthermore, the strains were evaluated under greenhouse conditions for their in vivo effect to promote plant growth and to suppress the root rot of maize that is caused by on four Korean maize cultivars. The results of the greenhouse study revealed that both of the strains were promising to significantly suppress root rot and enhance plant growth promotion on the four maize cultivars. This study, for the first time, reported in vitro antifungal potential of of novel ST against economically important plant pathogens viz., , , , f.sp. , subglutinans, and . This is also the first report of zinc solubilization by . Moreover, the present research work reports, for the first time, about the potential of and to control the root rot of maize that is caused by . Therefore, we recommend further studies to precisely identify the bioactive chemical compounds behind such activities that would be novel sources of natural products for biological control and plant growth promotion of different crops.

Access

Citation

ID: 41416
Ref Key: tagele2019potentialinternational
Use this key to autocite in SciMatic or Thesis Manager

References

Blockchain Verification

Account:
NFT Contract Address:
0x95644003c57E6F55A65596E3D9Eac6813e3566dA
Article ID:
41416
Unique Identifier:
E1005
Network:
Scimatic Chain (ID: 481)
Loading...
Blockchain Readiness Checklist
Authors
Abstract
Journal Name
Year
Title
5/5
Creates 1,000,000 NFT tokens for this article
Token Features:
  • ERC-1155 Standard NFT
  • 1 Million Supply per Article
  • Transferable via MetaMask
  • Permanent Blockchain Record
Blockchain QR Code
Scan with Saymatik Web3.0 Wallet

Saymatik Web3.0 Wallet