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玉米品种的抗病性评价及与农艺性状的灰色关联度分析 被引量:11
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作者 郗小倩 李洪 +2 位作者 王瑞军 张旭丽 杨志斌 《农学学报》 2022年第4期13-17,95,共6页
为了研究玉米农艺性状和病害抗性的关系,选育出高产高抗的玉米品种,以联合体玉米区试的19个品种进行病害的抗性鉴定,用灰色关联度分析法分析农艺性状与病害抗性的关系。结果表明:19个品种对茎基腐病和穗腐病的抗性都强,对丝黑穗病和矮... 为了研究玉米农艺性状和病害抗性的关系,选育出高产高抗的玉米品种,以联合体玉米区试的19个品种进行病害的抗性鉴定,用灰色关联度分析法分析农艺性状与病害抗性的关系。结果表明:19个品种对茎基腐病和穗腐病的抗性都强,对丝黑穗病和矮花叶病的抗性都弱,对大斑病的抗性中等;与产量关联度最密切的出籽率与茎基腐病关系最密切,对产量影响次之的是穗腐病,对产量影响排名第四的百粒重与大斑病关系密切,之后的穗行数与丝黑穗病关联度最大,与产量成正相关的株高与矮花叶病关联密切。因此,结合玉米农艺性状与病害抗性的灰色关联度分析和抗病性鉴定,应着重丝黑穗病、大斑病和矮花叶病的抗性选择。 展开更多
关键词 农艺 病害抗性 灰色关联度 丝黑穗病 大斑病 矮花叶病 茎基腐病 穗腐病
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鲜食甜玉米品种(系)比较试验研究
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作者 贾霄 《中国种业》 2025年第3期77-81,86,共6页
为筛选出适合甘肃省不同地区种植的鲜食甜玉米品种(系),以朝甜603为对照,对新选育的15个鲜食甜玉米品种(系)进行品种(系)比较试验,对其农艺特性、抗病性、品尝评价和产量等指标进行综合评价。结果表明:不同品种(系)在不同种植地的产量... 为筛选出适合甘肃省不同地区种植的鲜食甜玉米品种(系),以朝甜603为对照,对新选育的15个鲜食甜玉米品种(系)进行品种(系)比较试验,对其农艺特性、抗病性、品尝评价和产量等指标进行综合评价。结果表明:不同品种(系)在不同种植地的产量差异显著,具有一定的环境适应性,陇甜三号产量表现最佳,达21.53t/hm^(2),具有优良的高产特性;福甜73对瘤黑粉病的抗性评价为抗病,虽然陇甜三号对丝黑穗病和瘤黑粉病的抗性评价为感病,但病害程度相对较轻;金甜1号的品尝评价为1级,其余品种(系)品尝评价均为2级。综合而言,陇甜三号适应性和丰产性好,适合在甘肃各地区大规模推广种植;金甜1号产量低但品质高,可作为高端鲜食玉米产品供应市场;原玉甜819平均产量排名第3位,在各地均有增产,品质仅次于金甜1号,具有进一步培育的潜力。 展开更多
关键词 鲜食甜玉米 品种(系)比较 农艺 产量 病害抗性 品尝评价
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巴西、津巴布韦烤烟品种综合评价 被引量:9
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作者 陈学军 刘勇 +1 位作者 肖炳光 李梅云 《植物遗传资源学报》 CAS CSCD 北大核心 2010年第4期503-508,共6页
2007-2008年度,对检疫后的10份国外引进的烤烟不育系杂交种,开展了农艺性状、主要病害抗性鉴定、烟叶化学成分分析及不育胞质来源CAPS鉴别,结果表明:在这些杂交种中,PVH51、RGH51、PVH19和KRK26品种产量在2138.10~2788.05kg/hm2之间,... 2007-2008年度,对检疫后的10份国外引进的烤烟不育系杂交种,开展了农艺性状、主要病害抗性鉴定、烟叶化学成分分析及不育胞质来源CAPS鉴别,结果表明:在这些杂交种中,PVH51、RGH51、PVH19和KRK26品种产量在2138.10~2788.05kg/hm2之间,主要病害抗性及适应性较好,烤后烟叶化学成分含量较适宜,比例协调。这4个品种可直接应用于烟叶生产,也可作为烤烟抗病育种材料加以利用。CAPS分析结果表明,所有不育系杂交种胞质类型均来源于Nicotiana suaveolens。 展开更多
关键词 烤烟 引种 病害抗性鉴定 农艺 CAPS分析
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巴州地区甜菜新品种比较试验
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作者 叶远荣 阿依夏木·托胡提 +1 位作者 蒋世铮 张建文 《现代农业科技》 2020年第4期70-72,共3页
为了筛选出综合性状优良且适宜在巴州地区种植的甜菜品种,以引进的31个甜菜新品种进行了比较试验。结果表明,ADV 0401、SV 1375、SV 1569、SV 1574和BETA 218无论是地上部表现,还是抗病性、根产量、含糖率、产糖量等方面均表现十分突出... 为了筛选出综合性状优良且适宜在巴州地区种植的甜菜品种,以引进的31个甜菜新品种进行了比较试验。结果表明,ADV 0401、SV 1375、SV 1569、SV 1574和BETA 218无论是地上部表现,还是抗病性、根产量、含糖率、产糖量等方面均表现十分突出,优于对照品种,可根据当地需求,适当示范并推广选用。 展开更多
关键词 甜菜品种 叶片 病害抗性 产量 含糖率 产糖量
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Proteomic study of three component interactions: plant, pathogens and antagonistic fungi
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作者 Marra R Ambrosino P +9 位作者 Scala V Romano C Vinale F Ferraioli S Ruocco M Carbone V Woo S L Turrà D Scala F Lorito M 《浙江大学学报(农业与生命科学版)》 CAS CSCD 北大核心 2004年第4期449-449,共1页
The molecular factors involved in the three-way interaction between plant, pathogenic fungi and antagonistic/biocontrol fungi, such as Trichoderma, are still poorly understood, even if they represent a matter of inter... The molecular factors involved in the three-way interaction between plant, pathogenic fungi and antagonistic/biocontrol fungi, such as Trichoderma, are still poorly understood, even if they represent a matter of interest for improving crop management and developing new strategies for plant diseases control. The aim of this work is to investigate the components involved in this interaction and, for this purpose, a proteomic approach was used. 2-D maps of the protein extracts from the single components in various interactions between plants (potato, bean, tobacco or tomato), pathogens (Botrytis cinerea, Rhizoctonia solani or Pythium ultimum) and biocontrol fungi (Trichoderma atroviride strain P1 or Trichoderma harzianum strain T22) were obtained. The proteome of each partner was collected separately and extracted by acetone precipitation in presence of trichloroacetic acid and a reducing agent (DTT). The extracted proteins were separated by isoelectrofocusing (IEF), using IPG (Immobilized pH gradient) strips, followed by SDS-PAGE. In order to improve resolution the separations were performed both on wide than narrow pH range and on different gel lengths. Differential spots were noted in the proteome of the three-way interaction when compared to each single component. These were further characterized by mass spectrometry and in silico analysis with the aim of identifying and cloning the relative genes. During the in vitro interaction of T. harzianum strain T22 with tomato and the culture filtrate or cell walls of pathogens, the spot number was higher than in the presence of pathogen biomass. In terms of Trichoderma differential proteins displayed on 2D gels, the most important changes were obtained in the presence of P. ultimum . During the in vivo interaction with tomato, the antagonist proteome changed much more in presence of soilborne fungi R. solani and P. ultimum than with the foliar fungus B. cinerea, both in terms of total and increased or novel spots. In silico analysis of some of those spots revealed homology with intracellular enzymes (GTPases, hydrolases) and with stress-related proteins (heat shock proteins HSP70, bacteriocin cloacin). Specific proteins in the plant proteome, i.e. pathogenesis-related proteins, have been identified during the in vivo interaction of bean with R. solani and T. atroviride strain P1. This is in agreement with the demonstrated ability of these beneficial fungi to induce plant systemic disease resistance by activating expression of defence-related genes. Proteins extracted from T. atrovride strain P1 which were analysed by mass spectrometry, revealed some interesting homologies with a fungal hydrophobin of Pleurotus ostreatus and an ABC transporter of Ralstonia metallidurans. These could represent molecular factors involved in the antagonistic mechanisms of Trichoderma and play a role in the three-way interaction with the plant and other microbes. 展开更多
关键词 differential proteins in vivo interactions induced disease resistance
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