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16篇 您的检索式:作者名="Doil Choi"
    题名 作者 年代 出处 被引量
1Exploitation of pepper EST–SSRs and an SSR-based linkage map显示文摘Gibum Yi Je Min Lee Sanghyeob Lee Doil Choi Byung-Dong Kim 2006Theoretical and Applied Genetics2006,,1:3
2Rapid stimulation of 5-lipoxygenase activity in potato by the fungal elicitor arachidonic acid 显示文摘 HIROYUKI Y DOIL CHOI 1992Plant Physiol1992,100,:1
3Expression of a novel NAC domain-containing transcription factor (CaNAC1) is preferentially associated with incompatible interactions between chili pepper and pathogens显示文摘Sang-Keun Oh Sanghyeob Lee Seung Hun Yu Doil Choi 2005Planta2005,,5:1
4The ethylene-responsive factor like protein 1 (CaERFLP1) of hot pepper (Capsicum annuum L.) interacts in vitro with both GCC and DRE/CRT sequences with different binding affinities: Possible biological roles of CaERFLP1 in response to pathogen infection a显示文摘Jae-Hoon Lee Jong-Pil Hong Sang-Keun Oh Sanghyeob Lee Doil Choi Woo Kim 2004Plant Molecular Biology2004,,1:1
5Positive-selection and ligation-independent cloning vectors for large scale in Planta expression for plant functional genomics显示文摘Sang-Keun Oh Saet-Byul Kim Seon-In Yeom Hyun-Ah Lee Doil Choi 2010Molecules and Cells2010,,6:1
6Combined use of bulked segregant analysis and microarrays reveals SNP markers pinpointing a major QTL for resistance to Phytophthora capsici in pepper显示文摘Wing-Yee Liu Jin-Ho Kang Hyeon-Seok Jeong Hye-Jeong Choi Hee-Bum Yang Ki-Taek Kim Doil Choi Gyung Ja Choi Molly Jahn Byoung-Cheorl Kang 2014Theoretical and Applied Genetics2014,,11:1
7Positive-selection and ligation-independent cloning vectors for large scale in Planta expression for plant functional genomics显示文摘Sang-Keun Oh Saet-Byul Kim Seon-In Yeom Hyun-Ah Lee Doil Choi 2010Molecules and Cells2010,,6:1
8Exploitation of pepper EST–SSRs and an SSR-based linkage map显示文摘Gibum Yi Je Min Lee Sanghyeob Lee Doil Choi Byung-Dong Kim 2006Theoretical and Applied Genetics2006,,1:1
9The ethylene-responsive factor like protein 1 (CaERFLP1) of hot pepper (Capsicum annuum L.) interacts in vitro with both GCC and DRE/CRT sequences with different binding affinities: Possible biological roles of CaERFLP1 in response to pathogen infection a显示文摘Jae-Hoon Lee Jong-Pil Hong Sang-Keun Oh Sanghyeob Lee Doil Choi Woo Kim 2004Plant Molecular Biology2004,,1:1
10The ethylene-responsive factor like protein 1 (CaERFLP1) of hot pepper (Capsicum annuum L.) interacts in vitro with both GCC and DRE/CRT sequences with different binding affinities: Possible biological roles of CaERFLP1 in response to pathogen infection a显示文摘Jae-Hoon Lee Jong-Pil Hong Sang-Keun Oh Sanghyeob Lee Doil Choi Woo Kim 2004Plant Molecular Biology2004,,1:1
11BAC-derived markers converted from RFLP linked to Phytophthora capsici resistance in pepper ( Capsicum annuum L.)显示文摘Hyoun-Joung Kim Seok-Hyeon Nahm Heung-Ryul Lee Gi-Bo Yoon Ki-Taek Kim Byoung-Cheorl Kang Doil Choi Oh Yeol Kweon Myeong-Cheoul Cho Jin-Kyung Kwon Jung-Heon Han Jeong-Ho Kim MinKyu Park Jong Hwa Ahn Soon Ho Choi Nam Han Her Joo-Hee Sung Byung-Dong Kim 2008Theoretical and Applied Genetics2008,,:1
12Molecular cloning of a novel pathogen-inducible cDNA encoding a putative acyl-CoA synthetase from Capsicum annuum L.显示文摘Sang Jik Lee Mi-Chung Suh Shinje Kim Jin-Kyung Kwon Minwoo Kim Kyung-Hee Paek Doil Choi Byung-Dong Kim 2001Plant Molecular Biology2001,,6:1
13The ethylene-responsive factor like protein 1 (CaERFLP1) of hot pepper (Capsicum annuum L.) interacts in vitro with both GCC and DRE/CRT sequences with different binding affinities: Possible biological roles of CaERFLP1 in response to pathogen infection a显示文摘Jae-Hoon Lee Jong-Pil Hong Sang-Keun Oh Sanghyeob Lee Doil Choi Woo Kim 0,2004,:1
14The Phytophthora nucleolar effector Pi23226 targets host ribosome biogenesis to induce necrotrophic cell death显示文摘Pathogen effectors target diverse subcellular organelles to manipulate the plant immune system.Although the nucleolus has emerged as a stress marker and several effectors are localized in the nucleolus,the roles of nucleolar-targeted effectors remain elusive.In this study,we showed that Phytophthora infestans infection of Nicotiana benthamiana results in nucleolar inflation during the transition from the biotrophic to the necrotrophic phase.Multiple P.infestans effectors were localized in the nucleolus:Pi23226 induced cell death in N.benthamiana and nucleolar inflation similar to that observed in the necrotrophic stage of infection,whereas its homolog Pi23015 and a deletion mutant(Pi23226DC)did not induce cell death or affect nucleolar size.RNA immunoprecipitation and individual-nucleotide-resolution UV crosslinking and immunoprecipitation sequencing analysis indicated that Pi23226 bound to the 30 end of 25S rRNA precursors,resulting in accumulation of unprocessed 27S pre-rRNAs.The nucleolar stress marker NAC082 was strongly upregulated under Pi23226-expressing conditions.Pi23226 subsequently inhibited global protein translation in host cells by interacting with ribosomes.Pi23226 enhanced P.infestans pathogenicity,indicating that Pi23226-induced ribosome malfunction and cell death were beneficial for pathogenesis in the host.Our results provide evidence for the molecular mechanism underlying RNA-binding effector activity in host ribosome biogenesis and lead to new insights into the nucleolar action of effectors in pathogenesis.Soeui Lee Jaehwan Kim Myung-Shin Kim Cheol Woo Min Sun Tae Kim Sang-Bong Choi Joo Hyun Lee Doil Choi 2023Plant Communications2023,4,5:0
15Dof转录因子的全基因组分析揭示辣椒发育和响应生物胁迫的功能特征显示文摘Dofs(DNA-binding with one zinc finger proteins)是植物特有的转录因子家族。Dof蛋白参与许多生物过程,如植物激素的产生,种子发育和环境适应。Dof蛋白已经在多种植物中被鉴定,但在辣椒中尚未开展类似的研究。我们在辣椒中鉴定出了33个可能的Dof基因(CaDofs)。为了了解CaDof基因的特征,我们分析了其系统进化关系、蛋白质基序和进化历史。我们将含有25个基序且分布在8条染色体上的33个CaDof基因分成4个族。我们发现CaDof基因的扩张可追溯到最近的复制事件。茄科种系形成之前,片段复制在CaDof家族基因中占主导地位。通过RNA-seq分析获得了CaDof基因表达谱,发现在对包括两种TMV菌株,辣椒斑驳病毒和辣椒疫霉菌的生物胁迫响应过程中,Ca Dof家族基因表现出了时间和病原特异性变化,这表明CaDof基因的功能具有多样性。这些结果不仅为研究Dof基因在生物胁迫中的响应提供有价值的信息,同时也有助于更好地理解Dof基因在辣椒和其他物种中的多重功能。Won-Hee Kang Seungill Kim Hyun-Ah Lee Doil Choi Seon-In Yeom 胡震竺(译) 孔秋生(译) 2018辣椒杂志2018,,2:0
16基于辣椒基因组测序探究辣味在种群中的进化显示文摘辣椒(Capsicum annuum)是美洲最古老的驯化作物之一,在全世界被广泛种植。本研究对CM334(墨西哥地方品种)进行了全基因组测序和组装(覆盖度为186.6×),同时还对另外两个栽培种和一个野生种分别进行了重测序和从头(de novo)测序。结果表明辣椒基因组大小约为番茄的4倍,辣椒基因组上存在大量gypsy转座子和花椰菜病毒家族元件的积累。结合转录组综合分析认为,辣椒素合成酶基因表达模式的改变及新功能化是导致辣椒素生物合成的原因,研究还发现辣椒与番茄在乙烯合成及果实成熟调控方面存在明显不同的分子模式。辣椒参考基因组的发布为辣椒营养品质和药用价值的改善提供了重要平台。Seungill Kim Minkyu Park Seon-In Yeom Yong-Min Kim Je Min Lee Hyun-Ah Lee Eunyoung Seo Jaeyoung Choi Kyeongchae Cheong Ki-Tae Kim Kyongyong Jung Gir-Won Lee Sang-Keun Oh Chungyun Bae Saet-Byul Kim Hye-Young Lee Shin-Young Kim Myung-Shin Kim Byoung-Cheorl Kang Yeong Deuk Jo Hee-Bum Yang Hee-Jin Jeong Won-Hee Kang Jin-Kyung Kwon Chanseok Shin Jae Yun Lim June Hyun Park Jin Hoe Huh June-Sik Kim Byung-Dong Kim Oded Cohen Ilan Paran Mi Chung Suh Saet Buyl Lee Yeon-Ki Kim Younhee Shin Seung-Jae Noh Junhyung Park Young Sam Seo Suk-Yoon Kwon Hyun A Kim Jeong Mee Park Hyun-Jin Kim Sang-Bong Choi Paul W Bosland Gregory Reeves Sung-Hwan Jo Bong-Woo Lee Hyung-Taeg Cho Hee-Seung Choi Min-Soo Lee Yeisoo Yu Yang Do Choi Beom-Seok Park Allen van Deynze Hamid Ashrafi Theresa Hill Woo Taek Kim Hyun-Sook Pai Hee Kyung Ahn Inhwa Yeam James J Giovannoni Jocelyn K C Rose Iben Sφrensen Sang-Jik Lee Ryan W Kim Ik-Young Choi Beom-Soon Choi Jong-Sung Lim Yong-Hwan Lee Doil Choi 刘峰 张西露 2014辣椒杂志2014,0,2:0
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