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169篇 您的检索式:作者名="Hary D"
    题名 作者 年代 出处 被引量
1中国花生小核心种质与ICRISAT微核心种质的SSR遗传多样性比较显示文摘明确花生种质资源的遗传多样性和分布规律,对于发掘优良种质资源,选配优良亲本,拓宽育成品种的遗传基础具有重要意义。核心种质为种质资源的研究、评价和鉴定带来了方便。本研究从206对SSR引物中筛选26对引物对我国花生小核心种质和ICRISAT微核心种质共466份资源进行了遗传多样性分析,相似系数为0.49~0.99,鉴定出遗传差异最大的种质L2刚果(中国花生资源)与ICG12625(ICRISAT资源),相似系数为0.49。分析结果表明,多粒型花生的多态性信息量(0.761)和遗传多样性指数(0.97~1.11)均最大(平均相似系数最小,0.73~0.76),其次是普通型花生。中国花生种质资源与ICRISAT资源存在较大差异,尤其是ICRISAT的赤道型材料ICG12625,与中国花生资源的差异最大。相似系数和遗传多样性指数的分析结果均表明,我国花生种质资源的遗传多样性比ICRISAT资源丰富。姜慧芳 任小平 张晓杰 黄家权 雷永 晏立英 廖伯寿 Hari D UPADHYAYA Corley C HOLBROOK 2010作物学报2010,36,7:19
2利用核心种质发掘及评价花生抗黄曲霉资源显示文摘黄曲霉菌极大地限制全世界的花生生产和产业发展,且生产上抗性品种较少,我国花生育种和生产中的抗性资源缺乏,迫切需要发掘抗黄曲霉种质。本研究以中国花生核心种质561份和ICRISAT微核心种质155份为材料,鉴定了黄曲霉侵染和产毒抗性,发掘出抗黄曲霉侵染和产毒种质各8份,包括具优良农艺性状的抗黄曲霉产毒种质51002-6。鉴定结果表明,ICRISAT花生微核心种质中抗黄曲霉侵染和产毒种质的频率高于中国花生核心种质;普通型花生资源中抗黄曲霉侵染种质的频率较高,龙生型资源中抗黄曲霉产毒种质的频率较高。根据SSR分析,鉴定出与生产上推广应用的优良品种中花5号、中花6号、中花12和远杂9102遗传距离较远的抗黄曲霉产毒种质ICG12625和抗侵染种质ICG4750,拓宽了我国花生品种改良的遗传基础。根据抗病基因产物的NBS类型保守域设计简并引物对抗黄曲霉种质的DNA进行PCR扩增、克隆、测序和分析,获得了1条RGA片段。姜慧芳 任小平 王圣玉 张晓杰 黄家权 廖伯寿 Corley C HOLBROOKA Hari D UPADHYAYA 2010作物学报2010,36,3:6
3Performance analysis of Root_MUSIC显示文摘RAO B D HARI K V S 1989IEEE Trans on ASSP1989,37,12:1
4STRait Razor: a length-based forensic STR allele-calling tool for use with second generation sequencing data显示文摘Warshauer DH Lin D Hari K 2013Foren- sic Sci Int Genet2013,7,4:1
5Solid state modification for the enhancement of solu- bility of poorly soluble drug: Carrageenan as carrier 显示文摘VEDHA HARI B N YASMIN B A RAMYA D D 2012International Journal of Applied Pharmaceutics2012,4,2:1
6Influence of water stress on leaf photosynthetic characteristics in wheat cultivars differing in their susceptibility to drought显示文摘Subrahmanyam D Subash N Haris A 2006Photosynthetiea2006,44,1:1
7Performance Analysis of RootMUSIC显示文摘RAO B D HARI K S 0,,12:1
8The photoredo~catalyzed meerwein addition reaction: intermolecular amino-arylation of alkenes显示文摘Hari D P Hering T K0nig B 2014Angezvandte Chemic International Edition2014,53,3:1
9Biology and management of Phalaris minor in wheat under a rice/wheat system显示文摘Hari O M Dhiman S D Hemant K 2003Weed Research2003,43,1:1
10Influence of wa ter stress on leaf photosynthetic characteristics in wheat culti vars differing in their susceptibility to drought显示文摘Subrahmanyam D Subash N Haris A 2006Photosyn thetica2006,44,1:1
11Influence of waterstress on leaf photosynthetic characteristics in wheat cultivars dif-fering in their susceptibility to drought显示文摘Subrahmanyam D Subash N Haris A 2006Photo-synthetica2006,44,1:1
12l, Performance analysis of Root-Music 显示文摘B D Rao K V S Hari 1989IEEE Trans on ASSP1989,37,12:1
13Antioxidant properties of germinated fenugreek seeds 显示文摘Priyanjali D Saroj G Hari M 2005Phytotherapy Research2005,19,:1
14Optimizing the performance of piezoelectric drivers that use stepped homs显示文摘ATHIKOM B HARI K P ROBERT D F 1991J Acoust Soc Am1991,90,3:1
15Microstructural and textural developments during zircaloy-4 fuel tube fabrication 显示文摘MANI KRISHNA K V SAHOO S K SAMAJDAR I NEOGY S TEWARI R SRIVASTAVA D DEY G K HARI D G SAIBABA N BANARJEE S 2008Journal of Nuclear Materials2008,383,:1
16Guidance and relative navigation for autonomous rendezvous in a circular orbit journal of guidance显示文摘Hari B Hablani M L Tapper and David J D 2002Control and Dynamics2002,25,3:1
17The nanomanufacturing programme at the national science foundation 显示文摘HARIS D 2002Nanotechnology2002,13,2:1
18Fourier transform infrared spectroscopic studies of Ca^2+ -binding proteins显示文摘M Jackson P I Haris D Chapman 1991Biochemistry1991,30,:1
19Performance analysis of root-music显示文摘RAO B D HARI K V S 1989IEEE Trans on Signal Processing1989,37,12:1
20Development of a chickpea core subset using geographic distribution and quantitative traits显示文摘Hari D U Paula J B Sube S 2001Crop Science2001,41,1:1
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