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棉花纤维品质性状的遗传稳定性研究 被引量:32
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作者 袁有禄 张天真 +4 位作者 郭旺珍 潘家驹 R.J.Kohel 熊宗伟 唐淑荣 《棉花学报》 CSCD 北大核心 2002年第2期67-70,共4页
通过 4个环境条件下纤维品质的表现及 5个陆地棉品系的完全双列杂交分析 ,对陆地棉纤维品质性状的遗传稳定性进行了研究。结果表明纤维比强度、绒长、麦克隆值及伸长率广义遗传率高 ,受环境影响相对较小 ,不同环境、品种间差异较一致 ;... 通过 4个环境条件下纤维品质的表现及 5个陆地棉品系的完全双列杂交分析 ,对陆地棉纤维品质性状的遗传稳定性进行了研究。结果表明纤维比强度、绒长、麦克隆值及伸长率广义遗传率高 ,受环境影响相对较小 ,不同环境、品种间差异较一致 ;比强度、绒长与环境的互作小 ;而麦克隆值和伸长率与环境的互作较大 ;纤维整齐度广义遗传率小 ,受环境影响大。由于不同年份各纤维性状数值变化 ,结果难以比较 ,建议用陆地棉遗传标准系 TM- 1作为共同对照 ,用与共同对照的比值进行分析 。 展开更多
关键词 陆地棉 棉花 纤维品质性状 遗传稳定性 环境
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棉花优异纤维品质性状的双列杂交分析(英文) 被引量:24
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作者 袁有禄 张天真 +2 位作者 郭旺珍 潘家驹 R.J.Kohel 《Acta Genetica Sinica》 SCIE CAS CSCD 北大核心 2005年第1期79-85,共7页
利用 5个具有不同纤维品质性状的品种 (系 )配制完全双列杂交组合 2 0个 ,通过亲本和F1的 2年随机区组试验 ,结果为除纤维整齐度受环境等因素影响较大 ,其余性状主要受遗传因素控制 ;在与环境的互作中 ,纤维强度和长度的互作效应小 ,麦... 利用 5个具有不同纤维品质性状的品种 (系 )配制完全双列杂交组合 2 0个 ,通过亲本和F1的 2年随机区组试验 ,结果为除纤维整齐度受环境等因素影响较大 ,其余性状主要受遗传因素控制 ;在与环境的互作中 ,纤维强度和长度的互作效应小 ,麦克隆值的加性和母体效应及伸长率的显性效应与环境的互作较大 ,均达到了显著水平遗传主效中 ,所有的研究性状不存在母体效应 ,以加性为主 ;强度与长度加性遗传率高 ,分别占 77 6 %和 73 2 % ;麦克隆值的加性效应占 4 5 2 % ,显性效应所占的比例在纤维性状中最高 ,为 11 5 %。纤维品质性状的群体平均优势仅麦克隆值的较高 (3 2 % ) ,达到了显著水平 ,其余性状的优势仅为 - 0 4 %~ 0 7%。纤维品质性状的遗传结果与杂种优势一致。在杂种优势利用时 ,可以通过双亲平均值的高低来预测F1的纤维品质表现。纤维强度、长度和细度的加性遗传率高 。 展开更多
关键词 陆地棉 优质纤维 遗传 杂种优势 育种
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利用分子标记和接种鉴定分析美国水稻育种亲本的稻瘟病抗性 被引量:4
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作者 赵国珍 严宗卜 +2 位作者 Yulin Jia Christopher W.Deren 戴陆园 《分子植物育种》 CAS CSCD 北大核心 2012年第2期207-213,共7页
稻瘟病是由真菌Magnaporthe oryzae引起的,水稻与稻瘟病菌的互作符合经典的"基因对基因"学说,抗稻瘟病基因Pi-ta可有效防治携带AVR-Pita1稻瘟菌的侵染。本研究利用位于Pi-ta基因前端的显性分子标记YL153/YL153和位于中间区域... 稻瘟病是由真菌Magnaporthe oryzae引起的,水稻与稻瘟病菌的互作符合经典的"基因对基因"学说,抗稻瘟病基因Pi-ta可有效防治携带AVR-Pita1稻瘟菌的侵染。本研究利用位于Pi-ta基因前端的显性分子标记YL153/YL153和位于中间区域的显性分子标记YL155/YL87对39份来自美国的水稻种质进行Pi-ta基因检测,同时利用携带AVR-Pita1的稻瘟病生理小种IC-17、IB-49、IB-1、IE-1、IG-1和IH-1接种鉴定39份水稻种质的抗病性。结果表明,39份育种亲本中,分子标记YL153/YL154和YL155/YL87鉴定均持有Pi-ta基因的有26份,其中接种鉴定表现抗病的亲本有21份,感病的亲本有5份;两对分子标记鉴定不持有Pi-ta基因的有11份,其中接种鉴定表现抗病的亲本有7份,感病的亲本有4份;两对分子标记鉴定结果不一致的亲本有2份,即一对分子标记鉴定持有Pi-ta基因,另一对分子标记鉴定无Pi-ta基因,接种鉴定均表现感病,这一发现对进一步研究Pi-ta基因的功能具有重要意义。由此说明,在水稻育种中,选择抗稻瘟病亲本时,分子标记检测和接种鉴定都是重要的。 展开更多
关键词 水稻 抗稻瘟病基因Pi-ta 接种鉴定 分子标记
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Thermal-responsive genetic and epigenetic regulation of DAM cluster controlling dormancy and chilling requirement in peach floral buds 被引量:10
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作者 Hong Zhu Pao-Yang Chen +8 位作者 Silin Zhong Chris Dardick Ann Callahan Yong-Qiang An Steve van Knocker Yingzhen Yang Gan-Yuan Zhong Albert Abbott Zongrang Liu 《Horticulture Research》 SCIE 2020年第1期1276-1289,共14页
The Dormancy-associated MADS-box(DAM)gene cluster in peach serves as a key regulatory hub on which the seasonal temperatures act and orchestrate dormancy onset and exit,chilling response and floral bud developmental p... The Dormancy-associated MADS-box(DAM)gene cluster in peach serves as a key regulatory hub on which the seasonal temperatures act and orchestrate dormancy onset and exit,chilling response and floral bud developmental pace.Yet,how different temperature regimes interact with and regulate the six linked DAM genes remains unclear.Here,we demonstrate that chilling downregulates DAM1 and DAM3–6 in dormant floral buds with distinct patterns and identify DAM4 as the most abundantly expressed one.We reveal multiple epigenetic events,with tri-methyl histone H3 lysine 27(H3K27me3)induced by chilling specifically in DAM1 and DAM5,a 21-nt sRNA in DAM3 and a ncRNA induced in DAM4.Such induction is inversely correlated with downregulation of their cognate DAMs.We also show that the six DAMs were hypermethylated,associating with the production of 24-nt sRNAs.Hence,the chilling-responsive dynamic of the different epigenetic elements and their interactions likely define distinct expression abundance and downregulation pattern of each DAM.We further show that the expression of the five DAMs remains steadily unchanged or continuously downregulated at the ensuing warm temperature after chilling,and this state of regulation correlates with robust increase of sRNA expression,H3K27me3 and CHH methylation,which is particularly pronounced in DAM4.Such robust increase of repressive epigenetic marks may irreversibly reinforce the chillingimposed repression of DAMs to ensure flower-developmental programming free from any residual DAM inhibition.Taken together,we reveal novel information about genetic and epigenetic regulation of the DAM cluster in peach,which will be of fundamental significance in understanding of the regulatory mechanisms underlying chilling requirement and dormancy release,and of practical application for improvement of plasticity of flower time and bud break in fruit trees to adapt changing climates. 展开更多
关键词 epigenetic CLUSTER CHILLING
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Molecularly tagged genes and quantitative trait loci in cucumber with recommendations for QTL nomenclature 被引量:4
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作者 Yuhui Wang Kailiang Bo +9 位作者 Xingfang Gu Junsong Pan Yuhong Li Jinfeng Chen Changlong Wen Zhonghai Ren Huazhong Ren Xuehao Chen Rebecca Grumet Yiqun Weng 《Horticulture Research》 SCIE 2020年第1期2678-2697,共20页
Cucumber,Cucumis sativus L.(2n=2x=14),is an important vegetable crop worldwide.It was the first specialty crop with a publicly available draft genome.Its relatively small,diploid genome,short life cycle,and selfcompat... Cucumber,Cucumis sativus L.(2n=2x=14),is an important vegetable crop worldwide.It was the first specialty crop with a publicly available draft genome.Its relatively small,diploid genome,short life cycle,and selfcompatible mating system offers advantages for genetic studies.In recent years,significant progress has been made in molecular mapping,and identification of genes and QTL responsible for key phenotypic traits,but a systematic review of the work is lacking.Here,we conducted an extensive literature review on mutants,genes and QTL that have been molecularly mapped or characterized in cucumber.We documented 81 simply inherited trait genes or major-effect QTL that have been cloned or fine mapped.For each gene,detailed information was compiled including chromosome locations,allelic variants and associated polymorphisms,predicted functions,and diagnostic markers that could be used for marker-assisted selection in cucumber breeding.We also documented 322 QTL for 42 quantitative traits,including 109 for disease resistances against seven pathogens.By alignment of these QTL on the latest version of cucumber draft genomes,consensus QTL across multiple studies were inferred,which provided insights into heritable correlations among different traits.Through collaborative efforts among public and private cucumber researchers,we identified 130 quantitative traits and developed a set of recommendations for QTL nomenclature in cucumber.This is the first attempt to systematically summarize,analyze and inventory cucumber mutants,cloned or mapped genes and QTL,which should be a useful resource for the cucurbit research community. 展开更多
关键词 TRAIT TRAITS CUCUMBER
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A roadmap for research in octoploid strawberry 被引量:1
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作者 Vance M.Whitaker Steven J.Knapp +10 位作者 Michael A.Hardigan Patrick P.Edger Janet P.Slovin Nahla V.Bassil Timo Hytönen Kathryn K.Mackenzie Seonghee Lee Sook Jung Dorrie Main Christopher R.Barbey Sujeet Verma 《Horticulture Research》 SCIE 2020年第1期2300-2316,共17页
The cultivated strawberry(Fragaria×ananassa)is an allo-octoploid species,originating nearly 300 years ago from wild progenitors from the Americas.Since that time the strawberry has become the most widely cultivat... The cultivated strawberry(Fragaria×ananassa)is an allo-octoploid species,originating nearly 300 years ago from wild progenitors from the Americas.Since that time the strawberry has become the most widely cultivated fruit crop in the world,universally appealing due to its sensory qualities and health benefits.The recent publication of the first highquality chromosome-scale octoploid strawberry genome(cv.Camarosa)is enabling rapid advances in genetics,stimulating scientific debate and provoking new research questions.In this forward-looking review we propose avenues of research toward new biological insights and applications to agriculture.Among these are the origins of the genome,characterization of genetic variants,and big data approaches to breeding.Key areas of research in molecular biology will include the control of flowering,fruit development,fruit quality,and plant–pathogen interactions.In order to realize this potential as a global community,investments in genome resources must be continually augmented. 展开更多
关键词 STRAW CULTIVATED LOOKING
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