1 김수정 ; 고은주 ; 홍점규 ; 전용철, "Ultrastructures of Colletotrichum orbiculare in Cucumber Leaves Expressing Systemic Acquired Resistance Mediated by Chlorella fusca" 한국식물병리학회 34 (34): 113-120, 2018
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4 Kublanovskaya A, "The effect of the microalga Chlorella vulgaris Ippas C-1 biomass application on yield, biological activity, and the microbiome of the soil during bean growing" 74 : 227-234, 2019
5 Nedelcu AM, "The complete mitochondrial DNA sequence of Scenedesmus obliquus reflects an intermediate stage in the evolution of the green algal mitochondrial genome" 10 : 819-831, 2000
6 Bulgarelli D, "Revealing structure and assembly cues for Arabidopsis root-inhabiting bacterial microbiota" 488 : 91-95, 2012
7 Rana A, "Prospecting plant growth promoting bacteria and cyanobacteria as options for enrichment of macro-and micronutrients in grains in rice–wheat cropping sequence" 1 : 1037379-, 2015
8 Zulma Rocío Suárez-Moreno, "Plant-Growth Promotion and Biocontrol Properties of Three Streptomyces spp. Isolates to Control Bacterial Rice Pathogens" Frontiers Media SA 10 : 2019
9 Lee SM, "Plant anti-aging : delayed flower and leaf senescence in Erinus alpinus treated with cell-free Chlorella cultivation medium" 15 : 1763005-, 2020
10 Kessler E, "Physiological, biochemical, and molecular characters for the taxonomy of the subgenera of Scenedesmus(Chlorococcales, Chlorophyta)" 110 : 244-250, 1997
1 김수정 ; 고은주 ; 홍점규 ; 전용철, "Ultrastructures of Colletotrichum orbiculare in Cucumber Leaves Expressing Systemic Acquired Resistance Mediated by Chlorella fusca" 한국식물병리학회 34 (34): 113-120, 2018
2 Martini F, "The potential use of Chlamydomonas reinhardtii and Chlorella sorokiniana as biostimulants on maize plants" 60 : 102515-, 2021
3 Dineshkumar R, "The impact of using microalgae as biofertilizer in maize (Zea mays L.)" 10 : 1101-1110, 2019
4 Kublanovskaya A, "The effect of the microalga Chlorella vulgaris Ippas C-1 biomass application on yield, biological activity, and the microbiome of the soil during bean growing" 74 : 227-234, 2019
5 Nedelcu AM, "The complete mitochondrial DNA sequence of Scenedesmus obliquus reflects an intermediate stage in the evolution of the green algal mitochondrial genome" 10 : 819-831, 2000
6 Bulgarelli D, "Revealing structure and assembly cues for Arabidopsis root-inhabiting bacterial microbiota" 488 : 91-95, 2012
7 Rana A, "Prospecting plant growth promoting bacteria and cyanobacteria as options for enrichment of macro-and micronutrients in grains in rice–wheat cropping sequence" 1 : 1037379-, 2015
8 Zulma Rocío Suárez-Moreno, "Plant-Growth Promotion and Biocontrol Properties of Three Streptomyces spp. Isolates to Control Bacterial Rice Pathogens" Frontiers Media SA 10 : 2019
9 Lee SM, "Plant anti-aging : delayed flower and leaf senescence in Erinus alpinus treated with cell-free Chlorella cultivation medium" 15 : 1763005-, 2020
10 Kessler E, "Physiological, biochemical, and molecular characters for the taxonomy of the subgenera of Scenedesmus(Chlorococcales, Chlorophyta)" 110 : 244-250, 1997
11 Cha JY, "Microbial and biochemical basis of a Fusarium wilt-suppressive soil" 10 : 119-129, 2016
12 Rosenberg E, "Microbes drive evolution of animals and plants : the hologenome concept" 7 : e01395-15, 2016
13 Renuka N, "Microalgae as multi-functional options in modern agriculture : current trends, prospects and challenges" 36 : 1255-1273, 2018
14 Murali A, "IDTAXA : a novel approach for accurate taxonomic classification of microbiome sequences" 6 : 140-, 2018
15 Kim DR, "Glutamic acid reshaphes the plant microbiota to protec plants against pathogens" 9 : 244-, 2021
16 김민정 ; 심창기 ; 고병구 ; 김주, "Effect of the Microalga Chlorella fusca CHK0059 on Strawberry PGPR and Biological Control of Fusarium Wilt Disease in Non-Pesticide Hydroponic Strawberry Cultivation" 한국미생물·생명공학회 30 (30): 708-716, 2020
17 Sang‐Moo Lee, "D‐lactic acid secreted by Chlorella fusca primes pattern‐triggered immunity against Pseudomonas syringae in Arabidopsis" Wiley 102 (102): 761-778, 2020
18 Callahan BJ, "DADA2 : high-resolution sample inference from Illumina amplicon data" 13 : 581-583, 2016
19 Righini H, "Cyanobacteria : a natural source for controlling agricultural plant diseases caused by fungi and oomycetes and improving plant growth" 8 : 58-, 2022
20 Searchinger T, "Creating a sustainable food future: a menu of solutions to feed nearly 10 billion people by 2050" World Resources Institute 2019
21 Elvira Navarro-López, "Biostimulant Potential of Scenedesmus obliquus Grown in Brewery Wastewater" MDPI AG 25 (25): 664-, 2020
22 Lin H, "Analysis of compositions of microbiomes with bias correction" 11 : 3514-, 2020
23 Lee SM, "Algae as new kids in the beneficial plant microbiome" 12 : 599742-, 2021
24 Compant S, "A review on the plant microbiome : ecology, functions, and emerging trends in microbial application" 19 : 29-37, 2019
25 Kim DR, "A mutualistic interaction between Streptomyces bacteria, strawberry plants and pollinating bee" 10 : 4802-, 2019
26 Wu Y, "A field study reveals links between hyperaccumulating Sedum plants-associated bacterial communities and Cd/Zn uptake and translocation" 805 : 150400-, 2022
27 김다란 ; 곽연식, "A Genome-Wide Analysis of Antibiotic Producing Genes in Streptomyces globisporus SP6C4" 한국식물병리학회 37 (37): 389-395, 2021