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| 1 | Association analysis using SSR markers to find QTL for seed protein content in soybean显示文摘 | Tae-Hwan Jun Kyujung Van Moon Young Kim Suk-Ha Lee David R. Walker | 2008 | Euphytica2008,,2: | 2 |
| 2 | Microenvironment of a corn-soybeanoat strip intercrop system显示文摘 | Thomas W Jurik Kyujung Van | 2004 | Field Crops Research2004,90,: | 1 |
| 3 | Molecular diversity and relationships among elite maize inbreds from US and CIMMYT and China显示文摘 | Zheng D H Kyujung V Lee S H | 2008 | Hereditas2008,145,: | 1 |
| 4 | Association analysis using SSR markers to find QTL for seed protein content in soybean显示文摘 | Tae-Hwan Jun Kyujung Van Moon Young Kim Suk-Ha Lee David R. Walker | 2008 | Euphytica2008,,2: | 1 |
| 5 | Microenvironment of a corn–soybean–oat strip intercrop system显示文摘 | Thomas W. Jurik Kyujung Van | 2004 | Field Crops Research2004,,2: | 1 |
| 6 | Evaluation of soybean cultivars for resistance to Phomopsis seed decay in Korea显示文摘 | Suli S Kyujung V Moon Y K | 2012 | Journal of Crop Science and Biotechnology2012,15,2: | 1 |
| 7 | QTLs for resist- ance to Phomopsis seed decay are associated with days to maturity in soybean ( Glycine max ) 显示文摘 | Sun Suli Kim Moon Young van Kyujung | 2013 | Theoretical Applied Genetics2013,126,: | 1 |
| 8 | Differentially expressed genes related to symbiotic association in a supernodulation soybean mutant and its wild types 显示文摘 | Puji L Kyujung V Moon Y | 2006 | Molecular Plant Pathology2006,7,4: | 1 |
| 9 | 在韩国引起大豆种腐病的拟茎点霉属Phomopsis/间座壳属(Diaporthe)显示文摘大豆是一种能够寄藏间座壳属(Diaporthe)和拟茎点霉属(Phomopsis)病原菌复合体的重要作物,这种复合病原菌侵染体已报道可引起多种大豆病害,包括大豆拟茎点霉属种腐病。该研究采用了大豆拟茎点霉属和间座壳属的2个种病原菌,这2个种分离自大豆植株,并已通过形态学和分子特性鉴定。采用克赫氏法则对大豆幼苗下胚轴致病性进行试验。证明了这2种病菌对大豆具有致病性。大豆拟茎点种腐病菌(Phomopsis longicolla)在韩国被认为是最常见和致病的病原菌。拟茎点霉属病菌(Phomopsis sp.)作为一个新的大豆病原菌,可能已经被传入到其他植物上,且在中国、日本和葡萄牙该拟茎点霉属病菌的相似菌株能够侵染果树,在美国也有侵染蔬菜的报道。 | Suli Sun Moon Young Kim Tanapon Chaisan Yin-Won Lee Kyujung Van Suk-Ha Lee 宋洁 | 2014 | 大豆科技2014,0,5: | 1 |
| 10 | A Study on the Composition of Wastewater Produced during Ship Biofouling Management显示文摘The IMO(International Maritime Organization)recognized the problem of invasive species invasion and adopted the“International Convention for the Control and Management of Ships’Ballast Water and Sediments”in 2004,which came into force on September 8,2017.In 2011,the IMO approved the“Guidelines for the Control and Management of Ships’Biofouling to Minimize the Transfer of Invasive Aquatic Species”to minimize the movement of invasive species by hull-attached organisms and required ships to manage the organisms attached to their hulls.Invasive species enter new environments through ships’ballast water and hull attachment.However,several obstacles to implementing these guidelines have been identified,including a lack of underwater cleaning equipment,regulations on underwater cleaning activities in ports,and difficulty in accessing crevices in underwater areas.The shipping industry,which is the party responsible for understanding these guidelines,wants to implement them for fuel cost savings resulting from the removal of organisms attached to the hull,but they anticipate significant difficulties in implementing the guidelines due to the obstacles mentioned above.Robots or people remove the organisms attached to the hull underwater,and the resulting wastewater includes various species of organisms and particles of paint and other pollutants.Currently,there is no technology available to sterilize the organisms in the wastewater or stabilize the heavy metals in the paint particles.In this study,we aim to analyse the characteristics of the wastewater generated from the removal of hull-attached organisms and select the optimal treatment technology.The organisms in the wastewater generated from the removal of the attached organisms meet the biological treatment standard(D-2)using the sterilization technology applied in the ships’ballast water treatment system.The heavy metals and other pollutants in the paint particles generated during removal are treated using stabilization technologies such as thermal decomposition.The wastewater generated is treated using a two-step process:(1)development of sterilization technology through pretreatment filtration equipment and electrolytic sterilization treatment and(2)development of technology for removing particle pollutants such as heavy metals and dissolved inorganic substances.Through this study,we will develop a biological removal technology and an environmentally friendly processing system for the waste generated after removal that meets the requirements of the government and the shipping industry and lay the groundwork for future treatment standards. | Sangho Park Mansoo Kim YoungChae Song Kyujung Chae Joohyung Choi Junhyuk Yang | 2023 | Journal of Environmental Science and Engineering(B)2023,12,6: | 0 |
| 11 | 韩国抗大豆拟茎点种腐病(Phomopsis longicolla)的大豆品种评价显示文摘大豆拟茎点种腐病(PSO),主要由Phomopsis longicolla引起的,是大豆重要种传病害之一,造成大豆产量严重损失。该研究评价了韩国主要大豆栽培品种对P.Longicolla的抗性,这些主栽品种主要用于亲本基因图谱绘制。2009--2010年间在韩国3个不同地点测定了田间自然发病条件下P.longicolla和其他3种种传真菌的发病率。研究显示被测大豆品种对种传病害敏感性差异明显。品种Tae—kwangkong表现对P.longicolla最大的抗性,平均发病率仅为0.33%,其他种传真菌平均发生率为6.17%。此外,在密阳(Milyang)和大邱(Daegu),品种Taekwangkong没有受到P.lo0ngicolla的侵染。 | Suli Sun Kyujung Van Moon Young Kim Yeong-Ho Lee Jong-Min Ko In-Youl Baek Yin-Won Lee Weixian Liu Suk-Ha Lee Baek Suk-Ha Lee 李雪光 | 2014 | 大豆科技2014,0,5: | 0 |