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大豆耐胁迫相关蛋白编码基因GmSAMDC1的克隆及表达分析 被引量:3
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作者 任锐 杨凤玺 +3 位作者 王涛 高乐 智海剑 李凯 《大豆科学》 CAS CSCD 北大核心 2018年第5期672-680,共9页
S-腺苷甲硫氨酸脱羧酶(S-adenosine methionine decarboxylase,SAMDC)是亚精胺和精胺合成的关键酶,更是多胺生物合成的限速酶之一,在植物耐胁迫反应中发挥重要调控作用。为研究大豆SAMDC编码基因的结构和表达特性,本研究从抗病大豆品种... S-腺苷甲硫氨酸脱羧酶(S-adenosine methionine decarboxylase,SAMDC)是亚精胺和精胺合成的关键酶,更是多胺生物合成的限速酶之一,在植物耐胁迫反应中发挥重要调控作用。为研究大豆SAMDC编码基因的结构和表达特性,本研究从抗病大豆品种科丰1号中克隆了位于大豆基因组2号染色体上的GmSAMDC1(Glyma. 02G128000)基因,分析结果表明:其完整ORF长度为1 068 bp,编码一个由355个氨基酸组成的包含1个SAM_decarbox结构域的蛋白; GmSAMDC1基因所编码蛋白的理论等电点为4. 86,相对分子质量为38 987. 13 Da,为亲水性蛋白,不含跨膜区;大豆中共有8个GmSAMDC1的同源基因,GmSAMDC1与红车轴草(PNY09439. 1,82. 64%)和拟南芥(At SAMDC3,67. 22%)中的SAMDC蛋白编码基因亲缘关系最近; GmSAMDC1启动子序列包含防卫和胁迫响应元件、植物激素应答元件、光应答元件等许多顺式作用元件; GmSAMDC1在花中的表达量最高,与其大豆同源基因Glyma. 01G071300(序列相似性为94. 6%)、Glyma. 18G278800(66. 8%)和Glyma. 08G25580(66. 5%)的组织特异性表达模式比较相似; Glyma. 02G128000-GFP融合蛋白在细胞膜和细胞质上表达。本研究结果为进一步阐明大豆GmSAMDC1基因在大豆耐胁迫过程中的作用提供了理论依据。 展开更多
关键词 大豆 GmSAMDC1 耐胁迫 顺式作用元件 亚细胞定位
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大豆蚜虫龄鉴别特征 被引量:4
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作者 李慧 刘小侠 +3 位作者 智海剑 李凯 张青文 李贞 《昆虫学报》 CAS CSCD 北大核心 2018年第7期877-884,共8页
【目的】明确大豆蚜Aphis glycines虫龄鉴别特征,达到准确快速识别的目的。【方法】在超景深显微镜观察的基础上,测定无翅与有翅型大豆蚜不同虫龄个体的体长、体宽、头壳宽、触角节数、触角长度、腹管长度、尾片长度和后足胫节长度8项... 【目的】明确大豆蚜Aphis glycines虫龄鉴别特征,达到准确快速识别的目的。【方法】在超景深显微镜观察的基础上,测定无翅与有翅型大豆蚜不同虫龄个体的体长、体宽、头壳宽、触角节数、触角长度、腹管长度、尾片长度和后足胫节长度8项指标。【结果】不同龄期大豆蚜形态特征存在差异,无翅型及有翅型个体的后足胫节长度在各龄期间均无重叠,无翅型个体的尾片长度及有翅型个体的体长、触角长度和尾片长度范围在各龄期间重叠程度较小,均可作为龄期鉴定的重要指标。此外,尾片形状可作为区分若蚜与成蚜的典型形态特征,触角节数可作为区分1龄、2龄若蚜与其他龄期蚜虫的形态特征。【结论】以无翅型个体后足胫节长度和尾片长度及有翅型个体后足胫节长度、体长、触角长度和尾片长度作为大豆蚜龄期鉴定的主要指标,配合触角节数、尾片形状、体宽、腹管长及翅基的发育程度,可准确鉴定不同翅型的各龄期大豆蚜。 展开更多
关键词 大豆蚜 虫龄 形态特征 有翅型 无翅型
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160份广西春大豆种质对大豆花叶病毒株系SC15和SC18的抗性评价 被引量:6
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作者 唐向民 杨守臻 +5 位作者 陈怀珠 孙祖东 蔡昭艳 智海剑 李凯 赖振光 《大豆科学》 CAS CSCD 北大核心 2019年第2期181-188,197,共9页
广西是大豆花叶病发生较为严重的地区,大豆花叶病毒株系SC15及SC18株系是广西区内主要流行株系。为了调查广西本地大豆种质对这两个流行株系的抗性,采用人工接种的方法对160份广西本地春大豆种质进行抗性鉴定。结果显示:桂下湾灰地豆、... 广西是大豆花叶病发生较为严重的地区,大豆花叶病毒株系SC15及SC18株系是广西区内主要流行株系。为了调查广西本地大豆种质对这两个流行株系的抗性,采用人工接种的方法对160份广西本地春大豆种质进行抗性鉴定。结果显示:桂下湾灰地豆、小青豆(桂平)、小青豆-1(上思)、横县黑豆-1、横县黑豆-2、横县黑豆-3、那坡黑眼豆、隆林蛇场本地豆8份种质对SC15株系高抗,占所鉴定材料总数的5%;石塘五月黄、灌阳黄豆、凤山早黄豆、三石六月黄、两造黄豆、横县黑豆-1、田黑豆7份春大豆种质对SC18株系表现抗浸染,占所鉴定材料总数的4.37%。所鉴定的广西春大豆种质中,抗SC15株系的抗病种质抗性级别低,没有对SC15株系完全免疫的大豆种质;而抗SC18株系的大豆种质抗性级别比SC15株系高,其中有7份春大豆种质对SC18株系免疫。从抗性鉴定结果看,SC18株系对广西春大豆的致病力比SC15株系弱。因此SC15株系对大豆生产的危害更为严重,是更为值得重视的一个强毒株系。本研究筛选出的抗SMV春大豆种质可作为抗源材料用于大豆抗病育种及抗性相关的研究。 展开更多
关键词 春大豆 大豆花叶病(SMV) 抗性评价 抗源筛选
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大豆抗花叶病毒SC3株系的分子标记筛选及种质抗性鉴定 被引量:1
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作者 蔡晗 赵琳 +3 位作者 沈颖 陈圆圆 智海剑 李凯 《大豆科学》 CAS CSCD 北大核心 2021年第1期1-10,共10页
为进一步寻找与大豆花叶病毒(Soybean Mosaic Virus, SMV)流行株系SC3抗病基因(Rsc3)紧密连锁的分子标记,以促进SMV抗病基因挖掘及抗病品种的选育,本研究利用96份品种(系)对SMV抗性位点Rsc3附近新设计的30个SSR标记和50个已知与Rsc3连锁... 为进一步寻找与大豆花叶病毒(Soybean Mosaic Virus, SMV)流行株系SC3抗病基因(Rsc3)紧密连锁的分子标记,以促进SMV抗病基因挖掘及抗病品种的选育,本研究利用96份品种(系)对SMV抗性位点Rsc3附近新设计的30个SSR标记和50个已知与Rsc3连锁的SSR标记进行初筛,然后采用基因型与表型和血清学鉴定相结合的方法,对288份2016—2019年中国新育成的大豆品种(系)进行了大豆花叶病毒SC3株系的抗性鉴定。结果表明:筛选到1个新开发的SSR标记CH0211,与大豆品种抗性表型选择的符合率为87.8%;进一步利用该标记对288份大豆品种(系)进行检测和分析,结合人工接种表型和血清学联合鉴定,抗病表型与基因型符合率为80.56%。288份大豆品种(系)中共鉴定出158份对SC3表现抗病的大豆品种(系),占参试材料总数的54.86%。鉴定出与抗病品种带型一致的材料144份,PI96983、齐黄34、汾豆104、山宁28等116份品种(系)的抗性表型与抗病分子带型一致。本研究开发和鉴定了1个与Rsc3紧密连锁的分子标记CH0211,该标记可有效用于大豆品种抗SMV SC3的种质资源筛选,加速大豆抗SMV育种进程。 展开更多
关键词 大豆花叶病毒 分子标记 SSR CH0211 抗性鉴定 抗病表型符合率
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Marker-assisted pyramiding of soybean resistance genes R_(SC4),R_(SC8),and R_(SC14Q) to soybean mosaic virus 被引量:4
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作者 WANG Da-gang ZHAO Lin +5 位作者 LI Kai MA Ying WANG Li-qun YANG Yong-qing YANG Yun-hua zhi hai-jian 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2017年第11期2413-2420,共8页
Soybean mosaic virus (SMV) is one of the major viral pathogens affecting soybean crops worldwide. Three SMV resistance genes, Rsc4, Rsc8, and Rsc14Q, have been identified and mapped on soybean chromosomes 14, 2, and... Soybean mosaic virus (SMV) is one of the major viral pathogens affecting soybean crops worldwide. Three SMV resistance genes, Rsc4, Rsc8, and Rsc14Q, have been identified and mapped on soybean chromosomes 14, 2, and 13 from Dabaima, Kefeng 1, and Qihuang 1 cultivars, respectively. Soybean cultivar Nannong 1138-2 is widely grown in the Yangtze River Valley of China. In this study, crosses were made between Qihuang l^Kefeng 1 and DabaimaxNannong 1138-2. Ten simple sequence repeat (SSR) markers linked to three resistance loci (Rsc4, Rsc8, and Rsc^4Q) were used to assist pyramided breeding. Pyramided families containing three resistance loci (Rsc4, Rsc8, and Rsc14Q) were evaluated by inoculating them with 21 SMV strains from China. Results indicated that the 10 markers can be used effectively to assist the selection of resistant individuals containing Rsc4, Rsc8, and Rsc14Q. A total of 53 F6 plants were confirmed to contain three homozygous alleles conferring resistance to SMV. Five F7 homozygous pyramided families exhibited resistance to 21 strains of SMV and showed desirable agronomic traits using dual selection. The strategy of pyramiding resistance gene derived from different varieties has practical breeding value in providing broad-spectrum resistance against the existing strains of SMV in China. 展开更多
关键词 SOYBEAN soybean mosaic virus resistance genes PYRAMIDING marker-assisted breeding
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Fine Mapping and Candidate Gene Analysis of Resistance Gene R_(SC3Q) to Soybean mosaic virus in Qihuang 1 被引量:11
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作者 ZHENG Gui-jie YANG Yong-qing +6 位作者 MA Ying YANG Xiao-feng CHEN Shan-yu REN Rui WANG Da-gang YANG Zhong-lu zhi hai-jian 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2014年第12期2608-2615,共8页
Soybean mosaic virus (SMV) disease is one of the most destructive viral diseases in soybean (Glycine max (L.) Merr.). SMV strain SC3 is the major prevalent strain in huang-huai and Yangtze valleys, China. The so... Soybean mosaic virus (SMV) disease is one of the most destructive viral diseases in soybean (Glycine max (L.) Merr.). SMV strain SC3 is the major prevalent strain in huang-huai and Yangtze valleys, China. The soybean cultivar Qihuang 1 is of a rich resistance spectrum and has a wide range of application in breeding programs in China. In this study, F1, F2 and F2:3 from Qihuang 1×nannong 1138-2 were used to study inheritance and linkage mapping of the SC3 resistance gene in Qihuang 1. The secondary F2 population and near isogenic lines (nILs) derived from residual heterozygous lines (RhLs) of Qihuang 1×nannong 1138-2 were separatively used in the ifne mapping and candidate gene analysis of the resistance gene. Results indicated that a single dominant gene (designated RSC3Q) controls resistance, which was located on chromosome 13. Two genomic-simple sequence repeat (SSR) markers BARCSOYSSR_13_1114 and BARCSOYSSR_13_1136 were found lfanking the two sides of the RSC3Q. The interval between the two markers was 651 kb. Quantitative real-time PCR analysis of the candidate genes showed that ifve genes (Glyma13g25730, 25750, 25950, 25970 and 26000) were likely involved in soybean SMV resistance. These results would have utility in cloning of RSC3Q resistance candidate gene and marker-assisted selection (MaS) in resistance breeding to SMV. 展开更多
关键词 Soybean mosaic virus (SMV) resistance gene ifne mapping residual heterozygous line (RHLs) near isogenic lines (nILs) qRT-PCR
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Genetic Diversity of Chinese Soybean mosaic virus Strains and Their Relationships with Other Plant Potyviruses Based on P3 Gene Sequences 被引量:1
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作者 YANG Qing-hua LI Kai +1 位作者 zhi hai-jian GAI Jun-yi 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2014年第10期2184-2195,共12页
Soybean mosaic virus (SMV), a member of the genus Potyvirus, is a major pathogen of soybean plants in China, and 16 SMV strains have been identified nationwide based on a former detailed SMV classification system. A... Soybean mosaic virus (SMV), a member of the genus Potyvirus, is a major pathogen of soybean plants in China, and 16 SMV strains have been identified nationwide based on a former detailed SMV classification system. As the P3 gene is thought to be involved in viral replication, systemic infection, pathogenicity, and overcoming resistance, knowledge of the P3 gene sequences of SMV and other potyviruses would be useful in efforts to know the genetic relationships among them and control the disease. P3 gene sequences were obtained from representative isolates of the above-mentioned 16 SMV strains and were compared with other SMV strains and 16 Potyvirus species from the National Center for Biotechnology GenBank database. The P3 genes from the 16 SMV isolates are composed of 1041 nucleotides, encoding 347 amino acids, and share 90.7-100% nucleotide (NT) sequence identities and 95.1-100% amino acid (AA) sequence identities. The P3 coding regions of the 16 SMV isolates share high identities (92.4-98.9% NT and 96.0-100% AA) with the reported Korean isolates, followed by the USA isolates (88.5-97.9% NT and 91.4-98.6% AA), and share low identities (80.5-85.2% NT and 82.1-84.7% AA) with the reported HZ 1 and P isolates from Pinellia ternata. The sequence identities of the P3 genes between SMV and the 16 potyviruses varied from 44.4 to 81.9% in the NT sequences and from 21.4 to 85.3% in the AA sequences, respectively. Among them, SMV was closely related to Watermelon mosaic virus (WMV), with 76.0-81.9% NT and 77.5-85.3% AA identities. In addition, the SMV isolates and potyvirus species were clustered into six distinct groups. All the SMV strains isolated from soybean were clustered in Group I, and the remaining species were clustered in other groups. A multiple sequence alignment analysis of the C-terminal regions indicated that the P3 genes within a species were highly conserved, whereas those among species were relatively variable. 展开更多
关键词 Soybean mosaic virus POTYVIRUS P3 gene homology analysis phylogenetic tree multiple sequence alignment
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