Effect of button mushroom compost on mobilization of heavy metals by sunflower
* 본 문서는 배포용으로 복사 및 편집이 불가합니다.
서지정보
ㆍ발행기관 : 한국버섯학회
ㆍ수록지정보 : 한국버섯학회지 / 12권 / 3호
ㆍ저자명 : Kyeong, Ki-Cheon, Kim, Yong-Gyun, Lee, Chan-Jung, Lee, Byung-Eui, Lee, Heon-Hak, Yoon, Min-Ho
ㆍ저자명 : Kyeong, Ki-Cheon, Kim, Yong-Gyun, Lee, Chan-Jung, Lee, Byung-Eui, Lee, Heon-Hak, Yoon, Min-Ho
목차
ABSTRACTIntroduction
Materials and Methods
Preparation of Button mushroon compost
Isolation of microorganisms from BMC
Strain identification
Mobility of the metals in soil
Effect of bioagumentation on growth and metal uptake by H. annuus
Results
Microbial diversity of BMC
Isolation and identification of microorganisms
Mobility of the metals in soil
Effect of bacterial strain on growth and metal uptake by H. annuus
Discussion
Conclusion
Acknowledgment
References
영어 초록
The potential ability of Button mushroom compost (BMC) to solubilize heavy metals was estimated with metal contaminated soils collected from abandoned mines of Boryeong area in South Korea. The bacterial strains in BMC were isolated for investigating the mobilization of metals in soil or plant by the strains and identified according to 16S rRNA gene sequence analysis. When metal solubilization potential of BMC was assessed in a batch experiment, the BMC was found to be capable of solubilizing metals in the presence of metals (Co, Pb and Zn) and the results showed that inoculation of BMC could increase the concentrations of water soluble Co, Pb and Cd by 35, 25 and 45% respectively, than those of non-inoculated soils. BMC-assisted growth promotion and metal uptake in sunflower (Helianthus annuus) was also evaluated in a pot experiment. In comparison with non-inoculated seedlings, the inoculation led to increase the growth of H. annuus by 27, 25 and 28% respectively in Co, Pb and Zn contaminated soils. Moreover, enhanced accumulation of Co, Pb and Zn in the shoot and root systems was observed in inoculated plants, where metal translocation from root to the above-ground tissues was also found to be enhanced by the BMC. The apparent results suggested that the BMC could effectively be employed in enhancing phytoextraction of Co, Pb and Zn from contaminated soils.참고 자료
없음"한국버섯학회지"의 다른 논문
- 옻나무톱밥 첨가에 따른 느타리버섯의 생육 특성 및 수량성4페이지
- 큰느타리버섯의 고온적응성 형질에 관련된 SCAR Marker 개발6페이지
- 복토살균 조건에 따른 양송이 재배과정별 복토내 미생물 밀도 및 수량 특성6페이지
- 목이버섯 봉지재배 배지 개발4페이지
- 참나무류 톱밥의 발효기간 중 물리화학적 특성 변화7페이지
- Paenibacillus polymyxa CK-1이 생산한 길항물질이 Trichoderma sp. ..8페이지
- 팽이버섯 자실체, 팽이버섯 균사체 및 동충하초 균사체의 유용성분 분석8페이지
- 고온적응성 큰느타리(새송이)버섯 품종육성6페이지
- 느티만가닥버섯의 재래종과 감마선 돌연변이체들의 유전적 변이6페이지
- URP-PCR 분석에 의한 느타리 단핵 계통간 교잡주의 핵 DNA 유전10페이지