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Microcystin-LR biodegradation by bacillus sp. Reaction rates and possible genes involved in the degradation
Michelline M.R. Kansole,
Tsair Fuh Lin
環境工程學系
研究成果
:
Article
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同行評審
29
引文 斯高帕斯(Scopus)
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Agriculture & Biology
microcystin-LR
89%
Bacilli
68%
biodegradation
62%
Bacillus (bacteria)
52%
degradation
38%
cyanobacterial toxins
30%
genes
21%
Cyanobacteria
18%
lakes
17%
animal and human health
13%
aquatic organisms
12%
water quality
10%
Taiwan
10%
proteinases
7%
metabolites
7%
monitoring
6%
bacteria
5%
water
4%
temperature
4%
sampling
3%
Earth & Environmental Sciences
reaction rate
63%
biodegradation
54%
gene
48%
degradation
41%
cyanobacterium
23%
degradability
17%
freshwater environment
15%
lake water
12%
metabolite
11%
algal bloom
11%
water body
10%
health
8%
animal
8%
water quality
8%
rate
8%
bacterium
8%
lake
7%
removal
6%
monitoring
6%
temperature
4%
Medicine & Life Sciences
cyanoginosin LR
100%
Bacillus
62%
Cyanobacteria
27%
Lakes
26%
Fresh Water
25%
Genes
25%
Peptide Hydrolases
8%
Poisons
7%
Temperature
7%
Bacteria
7%
Water
7%
Animals
5%
Health
5%
Chemical Compounds
Microcystin-LR
89%
Biodegradation
66%
Cyanotoxin
34%
Degradation Rate
10%
Toxic
7%
Metabolite
7%
Rate Constant
6%
Environment
5%
Social Sciences
water
49%
Water quality
40%
Taiwan
26%
animal
25%
monitoring
23%
health
14%