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Chromosome location of semidwarf gene sd-t and sd-n in indica rice 被引量:1
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作者 LI Xin~((1))) Gu Minghong~(1)) Xu Jin-feng~(2)) YAN Changjie~(1)) LIANG Guohua~(1)) 1)Dept of Agronomy,Agri Coll,Yangzhou Univ ,Yangzhou 225009 2)Office of Guannan County Goverment,Guannan 222500,China 《Chinese Rice Research Newsletter》 2002年第1期12-13,共2页
Great achievements have been madein breeding of semidwarf varieties(indica) since 1960s. Resultsshowed that the dwarf traits widelyused .at present were controlled by thesame recessive major gene, sd-1,thus we faced t... Great achievements have been madein breeding of semidwarf varieties(indica) since 1960s. Resultsshowed that the dwarf traits widelyused .at present were controlled by thesame recessive major gene, sd-1,thus we faced the potential danger oflosing genetic diversity. The low yield 展开更多
关键词 chromosome location of semidwarf gene sd-t and sd-n in indica rice gene
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Chromosome location of a gene for aroma in rice
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作者 LI Xin GU Minghong CHENG Zhukuan and YU Hengxiu,Dept of Agro,Jiangsu Agri Coll,Yangzhou 225009,China 《Chinese Rice Research Newsletter》 1996年第2期5-6,共2页
Scented or aromatic rice(Oryza sativa L.)ishighly valued in many areas of the world,Thedevelopment of high yielding scented cultivarshas been limited because of lacking informationon the inheritance of scent such as l... Scented or aromatic rice(Oryza sativa L.)ishighly valued in many areas of the world,Thedevelopment of high yielding scented cultivarshas been limited because of lacking informationon the inheritance of scent such as linkage ofgenes for aroma with other genes.We reporthere our studies on the determination of the 展开更多
关键词 chromosome location of a gene for aroma in rice GENE
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Genetic Analysis and Molecular Tagging a Novel Yellow Rust Resistance Gene Derived from Synthetic Hexaploid Wheat Germplasm M08
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作者 CHEN Guo-yue LI Li-hui 《Agricultural Sciences in China》 CAS CSCD 2008年第3期266-271,共6页
Yellow rust of wheat (caused by Puccinia striiformis Westend. f. sp. tritici Eriks.) has been periodically epidemic and severely damaged wheat production in China. The development of resistant cultivars could be an ... Yellow rust of wheat (caused by Puccinia striiformis Westend. f. sp. tritici Eriks.) has been periodically epidemic and severely damaged wheat production in China. The development of resistant cultivars could be an effective way to reduce yield losses of wheat caused by yellow rust. Rust reaction tests and genetic analysis indicated that M08, the synthetic hexaploid wheat derived from hybridization between Triticum durum (2n = 6X = 28; genome AABB) and Aegilops tauschii (2n = 2X = 14; genome DD), showed resistance to current prevailing yellow rust races at seedling stage, which was controlled by a single dominant gene, designated as YrAm. Bulked segregant analysis was used to identify microsatellite markers linked to gene YrAm in an F2 population derived from cross M08 (resistant) × Jinan 17 (susceptible). Three microsatellite marker loci Xgwm77, Xgwm285, and Xgwml31 located on chromosome 3B were mapped to the YrAm locus. Xgwml31 was the closest marker locus and showed a linkage distance of 7.8 cM to the resistance locus. Thus, it is assumed that YrAm for resistance to yellow rust may be derived from Triticum durum and is located on the long arm of chromosome 3B. 展开更多
关键词 yellow rust resistance gene chromosomal location microsatellite marker synthetic hexaploid wheat Triticum durum
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W55a Encodes a Novel Protein Kinase That Is Involved in Multiple Stress Responses 被引量:13
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作者 Zhao-Shi Xu Li Liu +5 位作者 Zhi-Yong Ni Pei Liu Ming Chen Lian-Cheng Li Yao-Feng Chen You-Zhi Ma 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2009年第1期58-66,共9页
Protein kinases play crucial roles in response to external environment stress signals. A putative protein kinase, W55a, belonging to SNFl-related protein kinase 2 (SnRK2) subfamily, was isolated from a cDNA library ... Protein kinases play crucial roles in response to external environment stress signals. A putative protein kinase, W55a, belonging to SNFl-related protein kinase 2 (SnRK2) subfamily, was isolated from a cDNA library of drought-treated wheat seedlings. The entire length of W55a was obtained using rapid amplification of 5' cDNA ends (5'-RACE) and reverse transcription-polymerase chain reaction(RT-PCR). It contains a 1 029-bp open reading frame (ORF) encoding 342 amino acids. The deduced amino acid sequence of W55a had eleven conserved catalytic subdomains and one Ser/Thr protein kinase active-site that characterize Ser/Thr protein kinases. Phylogenetic analysis showed that W55a was 90.38% homologous with rice SAPK1, a member of the SnRK2 family. Using nullisomic-tetrasomic and ditelocentric lines of Chinese Spring, W55a was located on chromosome 2BS. Expression pattern analysis revealed that W55a was upregulated by drought and salt, exogenous abscisic acid, salicylic acid, ethylene and methyl jasmonate, but was not responsive to cold stress. In addition, W55a transcripts were abundant in leaves, but not in roots or stems, under environmental stresses. Transgenic Arabidopsis plants overexpressing W55a exhibited higher tolerance to drought. Based on these findings, W55a encodes a novel dehydration-responsive protein kinase that is involved in multiple stress signal transductions. 展开更多
关键词 chromosomal location induction kinetics SnRK2 stress response transgenic Arabidopsis wheat.
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