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Brief Introduction of Research Progresses in Control and Biocontrol of Clubroot Disease in China

  • He, Yueqiu;Wu, Yixin;He, Pengfei;Li, Xinyu
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2015년도 춘계학술대회 및 임시총회
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    • pp.45-46
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    • 2015
  • Clubroot disease of crucifers has occurred since 1957. It has spread to the whole China, especially in the southwest and nourtheast where it causes 30-80% loss in some fields. The disease has being expanded in the recent years as seeds are imported and the floating seedling system practices. For its effective control, the Ministry of Agriculture of China set up a program in 2010 and a research team led by Dr. Yueqiu HE, Yunnan Agricultural University. The team includes 20 main reseachers of 11 universities and 5 institutions. After 5 years, the team has made a lot of progresses in disease occurrence regulation, resources collection, resistance identification and breeding, biological agent exploration, formulation, chemicals evaluation, and control strategy. About 1200 collections of local and commercial crucifers were identified in the field and by artificiall inoculation in the laboratories, 10 resistant cultivars were breeded including 7 Chinese cabbages and 3 cabbages. More than 800 antagostic strains were isolated including bacteria, stretomyces and fungi. Around 100 chemicals were evaluated in the field and greenhouse based on its control effect, among them, 6 showed high control effect, especially fluazinam and cyazofamid could control about 80% the disease. However, fluzinam has negative effect on soil microbes. Clubroot disease could not be controlled by bioagents and chemicals once when the pathogen Plasmodiophora brassicae infected its hosts and set up the parasitic relationship. We found the earlier the pathogent infected its host, the severer the disease was. Therefore, early control was the most effective. For Chinese cabbage, all controlling measures should be taken in the early 30 days because the new infection could not cause severe symptom after 30 days of seeding. For example, a biocontrol agent, Bacillus subtilis Strain XF-1 could control the disease 70%-85% averagely when it mixed with seedling substrate and was drenching 3 times after transplanting, i.e. immediately, 7 days, 14 days. XF-1 has been deeply researched in control mechanisms, its genome, and development and application of biocontrol formulate. It could produce antagonistic protein, enzyme, antibiotics and IAA, which promoted rhizogenesis and growth. Its The genome was sequenced by Illumina/Solexa Genome Analyzer to assembled into 20 scaffolds then the gaps between scaffolds were filled by long fragment PCR amplification to obtain complet genmone with 4,061,186 bp in size. The whole genome was found to have 43.8% GC, 108 tandem repeats with an average of 2.65 copies and 84 transposons. The CDSs were predicted as 3,853 in which 112 CDSs were predicted to secondary metabolite biosynthesis, transport and catabolism. Among those, five NRPS/PKS giant gene clusters being responsible for the biosynthesis of polyketide (pksABCDEFHJLMNRS in size 72.9 kb), surfactin(srfABCD, 26.148 kb, bacilysin(bacABCDE 5.903 kb), bacillibactin(dhbABCEF, 11.774 kb) and fengycin(ppsABCDE, 37.799 kb) have high homolgous to fuction confirmed biosynthesis gene in other strain. Moreover, there are many of key regulatory genes for secondary metabolites from XF-1, such as comABPQKX Z, degQ, sfp, yczE, degU, ycxABCD and ywfG. were also predicted. Therefore, XF-1 has potential of biosynthesis for secondary metabolites surfactin, fengycin, bacillibactin, bacilysin and Bacillaene. Thirty two compounds were detected from cell extracts of XF-1 by MALDI-TOF-MS, including one Macrolactin (m/z 441.06), two fusaricidin (m/z 850.493 and 968.515), one circulocin (m/z 852.509), nine surfactin (m/z 1044.656~1102.652), five iturin (m/z 1096.631~1150.57) and forty fengycin (m/z 1449.79~1543.805). The top three compositions types (contening 56.67% of total extract) are surfactin, iturin and fengycin, in which the most abundant is the surfactin type composition 30.37% of total extract and in second place is the fengycin with 23.28% content with rich diversity of chemical structure, and the smallest one is the iturin with 3.02% content. Moreover, the same main compositions were detected in Bacillus sp.355 which is also a good effects biocontol bacterial for controlling the clubroot of crucifer. Wherefore those compounds surfactin, iturin and fengycin maybe the main active compositions of XF-1 against P. brassicae. Twenty one fengycin type compounds were evaluate by LC-ESI-MS/MS with antifungal activities, including fengycin A $C_{16{\sim}C19}$, fengycin B $C_{14{\sim}C17}$, fengycin C $C_{15{\sim}C18}$, fengycin D $C_{15{\sim}C18}$ and fengycin S $C_{15{\sim}C18}$. Furthermore, one novel compound was identified as Dehydroxyfengycin $C_{17}$ according its MS, 1D and 2D NMR spectral data, which molecular weight is 1488.8480 Da and formula $C_{75}H_{116}N_{12}O_{19}$. The fengycin type compounds (FTCPs $250{\mu}g/mL$) were used to treat the resting spores of P. brassicae ($10^7/mL$) by detecting leakage of the cytoplasm components and cell destruction. After 12 h treatment, the absorbencies at 260 nm (A260) and at 280 nm (A280) increased gradually to approaching the maximum of absorbance, accompanying the collapse of P. brassicae resting spores, and nearly no complete cells were observed at 24 h treatment. The results suggested that the cells could be lyzed by the FTCPs of XF-1, and the diversity of FTCPs was mainly attributed to a mechanism of clubroot disease biocontrol. In the five selected medium MOLP, PSA, LB, Landy and LD, the most suitable for growth of strain medium is MOLP, and the least for strains longevity is the Landy sucrose medium. However, the lipopeptide highest yield is in Landy sucrose medium. The lipopeptides in five medium were analyzed with HPLC, and the results showed that lipopeptides component were same, while their contents from B. subtilis XF-1 fermented in five medium were different. We found that it is the lipopeptides content but ingredients of XF-1 could be impacted by medium and lacking of nutrition seems promoting lipopeptides secretion from XF-1. The volatile components with inhibition fungal Cylindrocarpon spp. activity which were collect in sealed vesel were detected with metheds of HS-SPME-GC-MS in eight biocontrol Bacillus species and four positive mutant strains of XF-1 mutagenized with chemical mutagens, respectively. They have same main volatile components including pyrazine, aldehydes, oxazolidinone and sulfide which are composed of 91.62% in XF-1, in which, the most abundant is the pyrazine type composition with 47.03%, and in second place is the aldehydes with 23.84%, and the third place is oxazolidinone with 15.68%, and the smallest ones is the sulfide with 5.07%.

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물류센터 선진화를 위한 발전 방안에 대한 소고 (A Contemplation on Measures to Advance Logistics Centers)

  • 선일석;이원동
    • 유통과학연구
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    • 제9권1호
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    • pp.17-27
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    • 2011
  • 세계화의 진전으로 기업 간의 경쟁은 날로 치열해지고 있으며 그동안 단순 비용으로만 인식되던 물류분야가 비용과 서비스 제고 측면에서 제3의 이익원으로 인식되고 있다. 이에 물류경로 상에서 공급자와 판매자 및 수송과 보관의 연계를 원활하게 수행하도록 하는 핵심 인프라인 물류센터의 관심이 고조되고 있으며 본 연구에서는 물류센터의 활성화 및 발전을 위한 방안을 모색하고자 한다. 먼저 이론적 고찰을 통하여 선행연구 및 물류센터의 개요 및 역할, 현황 등에 대하여 알아보았으며 물류센터의 문제점 파악과 더불어 물류시설의 수요조사 및 표준화 구축을 위한 가이드 제시, 관련 법령 및 제도 정비, 규제 보완, 불공정 거래 척결을 위한 방안 등의 정책 개선, 공동화, 정보화 등을 통한 효율적 운영을 위한 시스템 구축, 안전관리, 원가산정을 통한 비용개선, 파트너쉽 구축, 재정적 지원, 부처별 협력 등의 발전방안을 제시하였으며, 이러한 방안은 물류센터의 활성화 및 선진화에 도움이 될 것으로 기대한다.

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기내(器內) 대량(大量) 생산(生産) 반하(半夏) 종구(種球)의 포장(圃場) 재배기술(裁培技術) 연구(硏究) I. 파종시기(播種詩期)가 생육(生育)과 괴경형성(塊莖形成) 및 수량(收量)에 미치는 영향(影響) (Cultural Practices of In vitro Tuber of Pinellia ternata(Thunb.) Breit I. Effects of Planting Time on Growth, Tuber Formation and Yield)

  • 박호기;김태수;박문수;최인록;장영선;박근용
    • 한국약용작물학회지
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    • 제1권2호
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    • pp.109-114
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    • 1993
  • 조직(組織) 배양(培養)을 통(通)하여 대량(大量) 생산(生産)된 반하(半夏) 종구(種球)의 포장재배(圃場裁培) 파종(播種) 적기(適期)를 구명(究明)하기 위하여 '90년(年) 4월(月) 20일(日), 5월(月) 20일(日), 6월(月) 20일(日), 7월(月) 20일(日), 8월(月) 20일(日) 및 9월(月) 20일(日)에 파종(播種)하여 출아특성(出芽特性), 생육특성(生育特性), 괴경형성(傀莖形成) 및 수량(收量)에 관련된 몇 가지 형질(形質)에 대하여 2개년간(個年間)$('90{\sim}'91)$ 검토(檢討)한 결과(結果)를 요약(要約)하면 다음과 같다. 1. 파종기별(播種期別) 출아소요기간(出芽所要期間)(파종(播種)${\sim}$출아(出芽))은 $9{\sim}26$일(日) 이었으며 파종기(播種期)가 빠른 4월(月) 20일(日)이 26일(日), 온도(溫度)가 높은 시기(時期)인 8월(月) 20일(日) 파종(播種)이 9일(日)로 가장 짧았으며 이 기간(期間)의 적산온도(積算溫度)는 $256{\sim}334^{\circ}C$이었다. 2. 파종기별(播種期別) 출아율(出芽率)은 $68{\sim}87%$로 대체로 좋았으나 7월(月) 20일(日) 파종(播種)은 고온(高溫) 및 한발(旱魃)의 영향(影響)으로 저조(低調) (55%)하였다. 3. 파종기별(播種期別) 재배기간중(栽培期間中)(2년(年)) 생육과정(生育過程)은 4월(月) 20일(日), 5월(月) 20일(日), 6월(月) 20일(日) 및 7월(月) 20일(日) 파종(播種)은 4회(回) 생육(生育)을, 8월(月) 20일(日)과 9월(月) 20일(日) 파종(播種)은 3회(回) 생육(生育)하였고, 총(總) 생육기간(生育期間)은 125일(日)${\sim}$239일(日)로 파종기(潘種期)가 빠를 수록 길었으며 9월(月) 20일(日) 파종(播種)은 125일(日)에 불과(不過)하였다. 4. 파종기별(潘種期別) 수확(收穫) 당시(當時)의 초장(草長), 괴경장(塊莖長) 및 괴경폭(塊莖幅)은 4월(月) 20일(日)${\sim}$6월(月) 20일(日) 파종(播種)은 큰 반면(反面) 7월(月) 20일(日) 이후(以後) 파종(播種)은 극히 적었으며 초장(草長)과 괴경장(塊莖長), 괴경폭(塊莖幅) 및 괴경수량(塊莖收量)과는 유의(有意) 상관(相關)이 인정(認定)되었다. 5. 파종기별(播種期別) 수확당시(收穫當時)의 $m^2$당(當) 주수(株數)는 5월(月) 20일(日)과 6월(月) 20일(日) 파종(播種)은 다른 파종기(播種期)에 비해 유의적(有意的)으로 많았으며(P<0.05) 7월(月) 20일(日) 이후(以後) 파종(播種)은 급멸(急滅)하였다. 6. 파종기별(播種期別) 생체수량(生體收量)은 4월(月) 20일(日) 파종(播種)(352kg/10a)에 비해 5월(月) 20일(日)이 9%(P<0.05), 6월(月) 20일(日)이 3% 증수(增收)하였고, 7월(月) 20일(日) 이하(以後) 파종(播種)은 $59{\sim}81%$까지 크게 감수(減收)하였으며 건물수량(乾物收量)도 같은 경향(傾向)이었다. 7. 파종기별(播種期訓) 상품가치(商品價値)가 있는 7.1mm이상(以上)의 괴경(塊莖)크기 분포(分布)는 5월(月) 20일(日) 파종(播種)이 322kg/10a, 6월(月) 20일(日) 파종(播種)이 299kg/10a으로 훨씬 많은 반면 7월(月) 20일(日)${\sim}$9월(月) 20일(日) 파종(播種)은 $55{\sim}117kg/10a$으로 극히 적었다. 8. 수량(收量)과 $m^2$당(當) 주수(株數)와는 고도(高度)의 상관(相關)$(r=0.992^{**})$이 인정(認定)되었으며 다수확(多收獲)을 위해서는 기내(器內) 생육(生産) 반하(半夏) 종구(種球)를 5월(月) 20일(日)${\sim}$6월(月) 20일(日)에 파종(播種)하는것이 가장 바람직하였다.

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