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转NPR1和CHR3抗病基因提高大豆对疫霉根腐病抗性研究 被引量:1
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作者 朱婷婷 王春生 +4 位作者 孙珊珊 赵贺 曲硕 焦耀磊 王丕武 《大豆科学》 CAS CSCD 北大核心 2021年第2期168-176,共9页
为检测GmCHR3和广谱抗病基因NPR1双抗基因转化到大豆吉林30中的遗传稳定性和抗病能力,从而为培育出抵抗疫霉根腐病大豆新品种提供有效参考,以大豆品种吉林30转CHR3抗病基因转化品系JL30+GmCHR3为目标受体材料,以吉林30为对照受体材料,... 为检测GmCHR3和广谱抗病基因NPR1双抗基因转化到大豆吉林30中的遗传稳定性和抗病能力,从而为培育出抵抗疫霉根腐病大豆新品种提供有效参考,以大豆品种吉林30转CHR3抗病基因转化品系JL30+GmCHR3为目标受体材料,以吉林30为对照受体材料,利用农杆菌介导法将NPR1导入受体中。利用常规PCR检测基因转化情况,利用Southern杂交和qRT-PCR技术分别鉴定JL30+GmCHR3受体和双抗基因转化株系T1和T2代中两个基因的整合和表达情况,采用下胚轴侵染法鉴定转基因大豆植株对疫霉根腐病的抗性。PCR研究结果显示:转化元件的启动子35s、终止子Nos、筛选标记基因Bar以及目的基因NPR1全部转入到受体基因组中;NPR1基因以单拷贝的形式在转化植株中完成整合;NPR1基因在大豆植株根、茎和叶中均有表达,其中T1代株系在3个部位的相对表达量分别是2.732,1.614和3.316,T2代株系的相对表达量分别是2.936,2.084和3.864;NPR1基因在各组织中的相对表达量为茎<根<叶。CHR3和NPR1双抗基因转化株系对疫霉根腐病表现为高抗,NPR1单抗基因转化株系表现为中抗,非转基因吉林30植株表现为感病。结果说明大豆吉林30转入双价抗病基因GmCHR3和NPR1可以增强其对疫霉根腐病的抗性。 展开更多
关键词 大豆 NPR1 JLL30+GmCHR3 双价转基因 疫霉根腐病 抗病性
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Missense mutation of a class B heat shock factor is responsible for the tomato bushy root-2 phenotype
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作者 Zoltan Kevei Silva Demetryus Silva Ferreira +5 位作者 Cristina Maria Perez Casenave Tomasz Kurowski Fady Mohareb Daniel Rickett Chris Stain Andrew J.Thompson 《Molecular Horticulture》 2022年第1期51-62,共12页
The bushy root-2(brt-2)tomato mutant has twisting roots,and slower plant development.Here we used whole genome resequencing and genetic mapping to show that brt-2 is caused by a serine to cysteine(S75C)substitution in... The bushy root-2(brt-2)tomato mutant has twisting roots,and slower plant development.Here we used whole genome resequencing and genetic mapping to show that brt-2 is caused by a serine to cysteine(S75C)substitution in the DNA binding domain(DBD)of a heat shock factor class B(HsfB)encoded by SolycHsfB4a.This gene is orthologous to the Arabidopsis SCHIZORIZA gene,also known as AtHsfB4.The brt-2 phenotype is very similar to Arabidopsis lines in which the function of AtHsfB4 is altered:a proliferation of lateral root cap and root meristematic tissues,and a tendency for lateral root cap cells to easily separate.The brt-2 S75C mutation is unusual because all other reported amino acid substitutions in the highly conserved DBD of eukaryotic heat shock factors are dominant negative mutations,but brt-2 is recessive.We further show through reciprocal grafting that brt-2 exerts its effects predominantly through the root genotype even through BRT-2 is expressed at similar levels in both root and shoot meristems.Since AtHsfB4 is induced by root knot nematodes(RKN),and loss-of-function mutants of this gene are resistant to RKNs,BRT-2 could be a target gene for RKN resistance,an important trait in tomato rootstock breeding.Gene&accession numbers SolycHsfB4a-Solyc04g078770. 展开更多
关键词 Bushy root-2 Genetic mapping HsfB4 root knot nematode resistance SCHIZORIZA TOMATO
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