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多环境下稻米粒重的QTL定位 被引量:6
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作者 吴秀菊 万向元 +5 位作者 江玲 肖应辉 刘世家 陈亮明 翟虎渠 万建民 《作物学报》 CAS CSCD 北大核心 2007年第11期1771-1776,共6页
以粳稻Asominori为遗传背景的染色体片段置换系(CSSLs)群体为材料,利用基于性状-标记多元回归分析方法对稻谷粒重和精米粒重进行多环境的QTL定位。结果在5个环境共检测到6个粒重相关QTL,分布于第1、6、7和8染色体上,对表型变异的... 以粳稻Asominori为遗传背景的染色体片段置换系(CSSLs)群体为材料,利用基于性状-标记多元回归分析方法对稻谷粒重和精米粒重进行多环境的QTL定位。结果在5个环境共检测到6个粒重相关QTL,分布于第1、6、7和8染色体上,对表型变异的贡献率介于13%~35%;其中控制精米粒重的qMRW-1α和稻谷粒重的qPRW-1在不同环境中均能稳定表达,且均佗于第1染色体RFLP标记XNpb113附近,该基因座还同时控制着粒宽。qMRW-1α和qPRW-1共同对应的置换系AIS8和AIS11与Asominori的粒重差异在不同环境中均显著(P〈0.05),表明该QTL的等位基因在不同环境中效应显著。比较发现该QTL在不同遗传群体中均能被重复检测到,且与蔗糖磷酸合酶基因(SPS)位置一致,推测该QTL与淀粉合成代谢有关。qMRW-1。和qPRW-1在不同环境条件和遗传背景中表达,因此可用于进一步的精细定位研究。 展开更多
关键词 精米粒重 稻谷粒重 数量性状基因座(QTL) 染色体片段置换系(CSSLs)
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Target chromosome-segment substitution: A way to breeding by design in rice 被引量:6
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作者 Guiquan Zhang 《The Crop Journal》 SCIE CSCD 2021年第3期658-668,共11页
Progress in plant breeding depends on the development of genetic resources,genetic knowledge,and breeding techniques.The core of plant breeding is the use of naturally occurring variation.At the beginning of the post-... Progress in plant breeding depends on the development of genetic resources,genetic knowledge,and breeding techniques.The core of plant breeding is the use of naturally occurring variation.At the beginning of the post-genomic era,a new concept of"breeding by design"was proposed,which aims to control all allelic variation for all genes of agronomic importance.In the past two decades,we have applied a three-step strategy for research on rice breeding by design.In the first step,we constructed a singlesegment substitution line(SSSL)library using Huajingxian 74(HJX74),an elite xian(indica)rice cultivar,as the recipient in which to assemble genes from the rice AA genome.In the second step,we identified a series of desirable genes in the SSSL library.In the third step,we designed new rice lines,and achieved the breeding goals by pyramiding target genes in the HJX74-SSSL library.This review introduces the background,concept,and strategy of breeding by design,as well as our achievements in rice breeding by design using the HJX74-SSSL platform.Our practice shows that target chromosome-segment substitution is a way to breeding by design. 展开更多
关键词 Gene pool chromosome-segment substitution Breeding by design Breeding platform RICE
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冀豆12遗传背景下3个回交组合高低蛋白含量后代品系SSR标记分析 被引量:6
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作者 陈强 闫龙 +6 位作者 杨春燕 张嘉楠 史晓蕾 东方阳 邓莹莹 侯文焕 张孟臣 《中国农业科学》 CAS CSCD 北大核心 2014年第2期230-239,共10页
【目的】以高蛋白、高产、高配合力大豆品种冀豆12为遗传基础,创造高蛋白含量新种质,分析蛋白含量相关QTL及其连锁标记,挖掘QTL中包含的优异基因,为高蛋白育种提供新种质、新标记。【方法】以冀豆12为轮回亲本,来自东北地区的红丰11、... 【目的】以高蛋白、高产、高配合力大豆品种冀豆12为遗传基础,创造高蛋白含量新种质,分析蛋白含量相关QTL及其连锁标记,挖掘QTL中包含的优异基因,为高蛋白育种提供新种质、新标记。【方法】以冀豆12为轮回亲本,来自东北地区的红丰11、茶秣食豆、绥农14等蛋白质含量不同的育成品种和地方品种为供体亲本,通过有限回交,创造高蛋白新种质。从3个组合的回交后代品系中,选择农艺性状一致、产量与冀豆12无显著差异的4个高蛋白(50%—53%)品系和3个中低蛋白(38%—41%)品系为试验材料,参照大豆公共遗传连锁图谱,分别在20个连锁群上,均匀选取并筛选在双亲间表现多态性的SSR标记,分析冀豆12及其后代品系的遗传相似性与遗传差异,确定与蛋白质含量相关的QTL及其连锁标记。通过对QTL候选区间内的基因功能注释,挖掘与蛋白质含量相关的优异基因。【结果】创制出一批蛋白质含量超过50%的高蛋白新种质。3个组合中分别筛选到209、201和199个双亲间多态性标记;亲本与后代间遗传相似性分析结果表明,同一组合的后代中高蛋白品系的轮回亲本遗传背景回复率高于低蛋白品系遗传背景回复率。3个组合中4个高蛋白品系与轮回亲本冀豆12之间的相似系数平均值为79.58%,显著高于3个低蛋白品系材料与轮回亲本冀豆12之间的相似系数平均值67.81%;轮回亲本冀豆12传递给高蛋白种质的SSR位点数平均为161个,传递给低蛋白材料的SSR位点平均数为135个,二者相差27%。遗传效应分析结果表明,共发掘出位于14个连锁群上的22个与蛋白质含量相关的QTL及其连锁SSR标记,其中,18个QTL的蛋白质含量增效基因来自轮回亲本冀豆12。进一步分析显示,4个共性高蛋白染色体区段对高蛋白含量形成具有关键作用,分别位于C1连锁群(第4染色体)的75.52—80.62cM、D2连锁群(第17染色体)的67.71—84.18 cM、G� 展开更多
关键词 冀豆12 蛋白含量 SSR标记 染色体片段
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Identification of long-grain chromosome segment substitution line Z744 and QTL analysis for agronomic traits in rice 被引量:6
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作者 MA Fu-ying DU Jie +7 位作者 WANG Da-chuan WANG Hui ZHAO Bing-bing HE Guang-hua YANG Zheng-lin ZHANG Ting WU Ren-hong ZHAO Fang-ming 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2020年第5期1163-1169,共7页
Length of grain affects the appearance, quality, and yield of rice. A rice long-grain chromosome segment substitution line Z744, with Nipponbare as the recipient parent and Xihui 18 as the donor parent, was identified... Length of grain affects the appearance, quality, and yield of rice. A rice long-grain chromosome segment substitution line Z744, with Nipponbare as the recipient parent and Xihui 18 as the donor parent, was identified. Z744 contains a total of six substitution segments distributed on chromosomes(Chrs.) 1, 2, 6, 7, and 12, with an average substitution length of 2.72 Mb. The grain length, ratio of length to width, and 1 000-grain weight of Z744 were significantly higher than those in Nipponbare. The plant height, panicle number, and seed-set ratio in Z744 were significantly lower than those in Nipponbare, but they were still 78.7 cm, 13.5 per plant, and 86.49%, respectively. Furthermore, eight QTLs of different traits were identified in the secondary F2 population, constructed by Nipponbare and Z744 hybridization. The grain weight of Z744 was controlled by two synergistic QTLs(qGWT1 and q GWT7) and two subtractive QTLs(qGWT2 and qGWT6), respectively. The increase in the grain weight of Z744 was caused mainly by the increase in grain length. Two QTLs were detected, qGL1 and qGL7-3, which accounted for 25.54 and 15.58% of phenotypic variation, respectively. A Chi-square test showed that the long-grain number and the short-grain number were in accordance with the 3:1 separation ratio, which indicates that the long grain is dominant over the short-grain and Z744 was controlled mainly by the principal effect qGL1. These results offered a good basis for further fine mapping of qGL1 and further dissection of other QTLs into single-segment substitution lines. 展开更多
关键词 RICE chromosome segment SUBSTITUTION line GRAIN length QTL
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Identification of Rice QTLs for Important Agronomic Traits with Long-Kernel CSSL-Z741 and Three SSSLs 被引量:5
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作者 Wang Hui Zhang Jiayu +6 位作者 Naz Farkhanda Li Juan Sun Shuangfei He Guanghua Zhang Ting Ling Yinghua Zhao Fangming 《Rice science》 SCIE CSCD 2020年第5期414-422,I0025,共10页
Rice kernel shape affects kernel quality(appearance) and yield(1000-kernel weight) and therefore is an important agronomic trait, but its inheritance is complicated. We identified a long-kernel rice chromosome segment... Rice kernel shape affects kernel quality(appearance) and yield(1000-kernel weight) and therefore is an important agronomic trait, but its inheritance is complicated. We identified a long-kernel rice chromosome segment substitution line(CSSL), Z741, derived from Nipponbare as a recipient and Xihui 18 as a donor parent. Z741 has six substitution segments distributed on rice chromosomes 3, 6, 7, 8 and 12 with an average replacement length of 5.82 Mb. Analysis of a secondary F2 population from a cross between Nipponbare and Z741 identified 20 QTLs for important agronomic traits. The kernel length of Z741 is controlled by a major QTL(qKL3) and a minor QTL(qKL7). Candidate gene prediction and sequencing indicated that qKL3 may be an allele of OsPPKL1, which encodes a protein phosphatase implicated in brassinosteroid signaling, and qKL7 is an unreported QTL. Finally, we validated eight QTLs(qKL3, qKL7, qRLW3-1, qRLW7, qPH3-1, qKWT3, qKWT7 and qNPB6) using three selected singlesegment substitution lines(SSSLs), S1, S2 and S3. Also, we detected five QTLs(qKL6, qKW3, qKW7, qKW6 and qRLW6) in S1, S2 and S3, which were not found in the Nipponbare/Z741 F2 population. However, qNPB3, qNPB7 and qPL3 QTLs were not validated by the three SSSLs in 2019, suggesting that minor QTLs are susceptible to environmental factors. These results lay the foundation for studying the biodiversity of kernal length and molecular breeding of different kernel types. 展开更多
关键词 chromosome segment substitution line single-segment substitution line kernel shape quantitative trait locus RICE
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Two Novel QTLs for Heading Date Are Identified Using a Set of Chromosome Segment Substitution Lines in Rice(Oryza sativa L.) 被引量:5
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作者 Guojing Shen Yongzhong Xing 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2014年第12期659-662,共4页
Heading date in rice is a typical quantitative trait controlled by multiple quantitative trait loci (QTLs). It is mainly regulated by environmental factors such as photoperiod and temperature (Izawa, 2007). Many Q... Heading date in rice is a typical quantitative trait controlled by multiple quantitative trait loci (QTLs). It is mainly regulated by environmental factors such as photoperiod and temperature (Izawa, 2007). Many QTLs for heading date have been identified using different mapping populations and methods (http:// www.gramene.org/qtl). Up to date, several major heading date QTLs have been cloned by map-based cloning strategy (Yano et al., 2000; Takahashi et al., 2001; Kojima et al., 2002; Doi et al., 2004; Xue et al., 2008; Wei et al., 2010; Yan et al., 展开更多
关键词 QTLS Two Novel QTLs for Heading Date Are Identified Using a Set of chromosome segment Substitution Lines in Rice CSSLs Oryza sativa L
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人类染色体识别系统 被引量:3
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作者 陈晓华 俞昌 袁志强 《计算机工程与应用》 CSCD 北大核心 2002年第10期231-233,共3页
文章的研究应用于清华大学电子系开发的CIARS犤9犦系统。文章介绍了基于自动分割的染色体识别系统的流程。对于人类染色体的自动分割一直是染色体识别的一个难题。由于染色体的柔软性和样本的离散性,染色体的样本中往往存在着各种交叠... 文章的研究应用于清华大学电子系开发的CIARS犤9犦系统。文章介绍了基于自动分割的染色体识别系统的流程。对于人类染色体的自动分割一直是染色体识别的一个难题。由于染色体的柔软性和样本的离散性,染色体的样本中往往存在着各种交叠和粘连现象。目前市场上的各种染色体处理系统均未提供染色体的完全自动分割,而采用了人机交互的方式。由于染色体不是刚体,普通的对于刚体的分割方法无法应用于染色体交叠和粘连的分割。文章介绍一种基于边界分析的分割方法,成功地将分割问题转化为模式识别问题。 展开更多
关键词 人类染色体识别系统 染色体分割 核型图 细胞遗传学
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利用海岛棉染色体片段导入系定位纤维品质性状QTL
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作者 李兴河 王海涛 +5 位作者 刘存敬 唐丽媛 张素君 蔡肖 张香云 张建宏 《作物杂志》 北大核心 2023年第5期1-9,共9页
优质棉育种是当前棉花育种的工作重点,海岛棉染色体片段导入系是定位纤维品质性状QTL、定向改良棉花纤维品质的重要材料。以构建的一套以陆地棉冀棉262为背景的海岛棉海7124染色体片段导入系为材料,对上半部平均长度、断裂比强度、马克... 优质棉育种是当前棉花育种的工作重点,海岛棉染色体片段导入系是定位纤维品质性状QTL、定向改良棉花纤维品质的重要材料。以构建的一套以陆地棉冀棉262为背景的海岛棉海7124染色体片段导入系为材料,对上半部平均长度、断裂比强度、马克隆值、整齐度指数和伸长率5个纤维品质性状进行相关性分析及QTL定位。结果表明,上半部平均长度与断裂比强度、整齐度指数,断裂比强度与整齐度指数均呈极显著正相关,断裂比强度与伸长率呈极显著负相关,可能存在QTL的重叠或连锁。利用459对全部锚定在26条染色体上的SSR标记进行QTL定位分析,鉴定得到155个与纤维品质性状相关的QTL,解释表型变异率在6.57%~38.72%,分别位于At亚组的13条染色体和Dt亚组的7条染色体上,每条染色体上平均检测得到7.75个QTL,其中D5染色体上QTL最多,达30个,与上半部平均长度、马克隆值、伸长率相关的各7个,与整齐度指数相关的6个,与断裂比强度相关的3个;在A9染色体上仅检测到1个与伸长率相关的QTL。本研究鉴定得到的QTL位点与已报道的纤维品质位点部分重合或一致,与之相连锁的分子标记将在优质棉品种选育工作中发挥积极作用。 展开更多
关键词 染色体片段 导入系 QTL定位 纤维品质 优质棉
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Genome sequence of Gossypium anomalum facilitates interspecific introgression breeding 被引量:1
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作者 Zhenzhen Xu Jiedan Chen +24 位作者 Shan Meng Peng Xu Caijiao Zhai Fang Huang Qi Guo Liang Zhao Yonggang Quan Yixin Shangguan Zhuang Meng Tian Wen Ya Zhang Xianggui Zhang Jun Zhao Jianwen Xu Jianguang Liu Jin Gao Wanchao Ni Xianglong Chen Wei Ji Nanyi Wang Xiaoxi Lu Shihong Wang Kai Wang Tianzhen Zhang Xinlian Shen 《Plant Communications》 SCIE 2022年第5期199-213,共15页
Crop wild relatives are an important reservoir of natural biodiversity. However, incorporating wild geneticdiversity into breeding programs is often hampered by reproductive barriers and a lack of accurate genomicinfo... Crop wild relatives are an important reservoir of natural biodiversity. However, incorporating wild geneticdiversity into breeding programs is often hampered by reproductive barriers and a lack of accurate genomicinformation. We assembled a high-quality, accurately centromere-anchored genome of Gossypium anomalum, a stress-tolerant wild cotton species. We provided a strategy to discover and transfer agronomicallyvaluable genes from wild diploid species to tetraploid cotton cultivars. With a (Gossypium hirsutum 3 G.anomalum)2 hexaploid as a bridge parent, we developed a set of 74 diploid chromosome segment substitution lines (CSSLs) of the wild cotton species G. anomalum in the G. hirsutum background. This set of CSSLsincluded 70 homozygous substitutions and four heterozygous substitutions, and it collectively containedabout 72.22% of the G. anomalum genome. Twenty-four quantitative trait loci associated with plant height,yield, and fiber qualities were detected on 15 substitution segments. Integrating the reference genome withagronomic trait evaluation of the CSSLs enabled location and cloning of two G. anomalum genes thatencode peroxiredoxin and putative callose synthase 8, respectively, conferring drought tolerance andimproving fiber strength. We have demonstrated the power of a high-quality wild-species reference genomefor identifying agronomically valuable alleles to facilitate interspecific introgression breeding in crops. 展开更多
关键词 wild diploid species Gossypium anomalum genome chromosome segment substitution lines drought tolerance fiber strength
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Characterization of chromosome segment substitution lines reveals candidate genes associated with the nodule number in soybean 被引量:1
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作者 ZOU Jia-nan ZHANG Zhan-guo +17 位作者 KANG Qing-lin YU Si-yang WANG Jie-qi CHEN Lin LIU Yan-ru MA Chao ZHU Rong-sheng ZHU Yong-xu DONG Xiao-hui JIANG Hong-wei WU Xiao-xia WANG Nan-nan HU Zhen-bang QI Zhao-ming LIU Chun-yan CHEN Qing-shan XIN Da-wei WANG Jin-hui 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2022年第8期2197-2210,共14页
Soybean is one of the most important food crops worldwide.Like other legumes,soybean can form symbiotic relationships with Rhizobium species.Nitrogen fixation of soybean via its symbiosis with Rhizobium is pivotal for... Soybean is one of the most important food crops worldwide.Like other legumes,soybean can form symbiotic relationships with Rhizobium species.Nitrogen fixation of soybean via its symbiosis with Rhizobium is pivotal for sustainable agriculture.Type Ⅲ effectors(T3Es)are essential regulators of the establishment of the symbiosis,and nodule number is a feature of nitrogen-affected nodulation.However,genes encoding T3Es at quantitative trait loci(QTLs)related to nodulation have rarely been identified.Chromosome segment substitution lines(CSSLs)have a common genetic background but only a few loci with heterogeneous genetic information;thus,they are suitable materials for identifying candidate genes at a target locus.In this study,a CSSL population was used to identify the QTLs related to nodule number in soybean.Single nucleotide polymorphism(SNP)markers and candidate genes within the QTLs interval were detected,and it was determined which genes showed differential expression between isolines.Four candidate genes(GmCDPK28,GmNAC1,GmbHLH,and GmERF5)linked to the SNPs were identified as being related to nodule traits and pivotal processes and pathways involved in symbiosis establishment.A candidate gene(GmERF5)encoding a transcription factor that may interact directly with the T3E NopAA was identified.The confirmed CSSLs with important segments and candidate genes identified in this study are valuable resources for further studies on the genetic network and T3Es involved in the signaling pathway that is essential for symbiosis establishment. 展开更多
关键词 SOYBEAN TypeⅢeffectors nodule number chromosome segment substitution lines
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Multi-Environmental Genetic Analysis of Grain Size Traits Based on Chromosome Segment Substitution Line in Rice(Oryza sativa L.)
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作者 Yujia Leng Shuilian Wang +7 位作者 Ruoan Wang Tao Tao Shuwen Jia Tao Song Lina Xu Xiuling Cai Sukui Jin Jiping Gao 《Phyton-International Journal of Experimental Botany》 SCIE 2022年第5期943-958,共16页
Grain size traits are critical agronomic traits which directly determine grain yield,but the genetic bases of these traits are still not well understood.In this study,a total of 154 chromosome segment substitution lin... Grain size traits are critical agronomic traits which directly determine grain yield,but the genetic bases of these traits are still not well understood.In this study,a total of 154 chromosome segment substitution lines(CSSLs)population derived from a cross between a japonica variety Koshihikari and an indica variety Nona Bokra was used to investigate grain length(GL),grain width(GW),length-width ratio(LWR),grain perimeter(GP),grain area(GA),and thousand grain weight(TGW)under four environments.QTL mapping analysis of six grain size traits was performed by QTL IciMapping 4.2 with an inclusive composite interval mapping(ICIM)model.A total of 64 QTLs were identified for these traits,which mapped to chromosomes 1,2,3,4,6,7,8,10,11,and 12 and accounted for 1.6%–27.1%of the total phenotypic variations.Among these QTLs,thirty-six loci were novel and seven QTLs were identified under four environments.One locus containing the known grain size gene,qGL3/GL3.1/OsPPKL1,also have been found.Moreover,five pairs of digenic epistatic interactions were identified except for GL and GP.These findings will facilitate fine mapping of the candidate gene and QTL pyramiding to genetically improve grain yield in rice. 展开更多
关键词 RICE grain size quantitative trait loci epistatic chromosome segment substitution lines
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Mapping of QTLs Related to Grain Weight Using Chromosome Single Segment Substitution Lines in Rice 被引量:1
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作者 王军 周勇 +5 位作者 杨杰 朱金燕 范方军 李文奇 梁国华 仲维功 《Agricultural Science & Technology》 CAS 2014年第8期1288-1294,共7页
Grain weight, one of the major factors determining rice yield, is a typical quantitative trait control ed by multiple genes. With Guangluai 4 as recipient and Nipponbare as donor, a population of 119 chromosome single... Grain weight, one of the major factors determining rice yield, is a typical quantitative trait control ed by multiple genes. With Guangluai 4 as recipient and Nipponbare as donor, a population of 119 chromosome single segment substitution lines had been developed. Correlation analysis between grain weight and grain shape by SPSS revealed that 1 000-grain weight shared extremely significant posi-tive correlation with grain length and length-width ratio, but no significant correlation with grain width and thickness. The QTL analysis of grain weight was carried out using one-way analysis of variance and Dunnett's test. Nineteen stable QTLs re-sponsible for grain weight were identified over two years. Al 19 QTLs were identi-fied on al chromosomes except for chromosome 10 and 12 at a significance level of P≤0.001. Among them, 10 QTLs had a positive effect and were derived from the Nipponbare al ele, the additive effect of these QTLs ranged from 0.49 to 2.74 g, and the contributions of the additive effects ranged from 2.00% to 11.05%. Another 9 QTLs had a negative effect and were al derived from Guangluai 4 al ele, the ad-ditive effect of these QTLs ranged from 0.60 to 2.35 g, and the contributions of the additive effects ranged from 2.40% to 9.84%. The results provide a basis for the fine mapping and gene cloning of novel locus associated with rice grain weight. 展开更多
关键词 RICE chromosome single segment substitution lines Quantitative trait loci 1 000-grain weight Substitution mapping
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用遗传算法解决条件约束问题的一种新思路及其在TTP问题中的应用
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作者 张威 陈莘萌 《计算机工程与应用》 CSCD 北大核心 2002年第21期110-111,201,共3页
文章提出了在遗传算法中使用染色体分段方法解决条件约束问题的一种新思路,并将其运用于TTP问题,取得了较好的效果。
关键词 遗传算法 条件约束问题 TTP问题 并行算法 NP问题
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海岛棉染色体片段导入系改良新陆早40号黄萎病抗性研究 被引量:1
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作者 陈红 宋庆平 +2 位作者 宿俊吉 李吉莲 刘萍 《新疆农业科学》 CAS CSCD 北大核心 2014年第5期902-909,共8页
【目的】利用海岛棉7214染色体片段导入系,将海岛棉抗黄萎病性状片段导入陆地棉新陆早40号,进行陆地棉抗黄萎病性状改良的研究。以期为染色体片段导入系在陆地棉抗病性状改良中的应用奠定基础。【方法】选择早熟、优质陆地棉品种新陆早4... 【目的】利用海岛棉7214染色体片段导入系,将海岛棉抗黄萎病性状片段导入陆地棉新陆早40号,进行陆地棉抗黄萎病性状改良的研究。以期为染色体片段导入系在陆地棉抗病性状改良中的应用奠定基础。【方法】选择早熟、优质陆地棉品种新陆早40号为受体亲本,海岛棉7214抗黄萎病染色体片段导入系CSIL035和CSIL155为供体亲本,通过杂交、回交构建研究群体,采用与抗黄萎病性状染色体片段连锁的分子标记,进行目标性状片段的跟踪与检测,并进行受体亲本基因组扫描,结合田间性状鉴定和品质性状检测,选择既携带目标性状片段,又具备受体亲本优良性状的优良品系。【结果】获得新陆早40号抗病性改良株系BCIL1-72。株系BCIL1-72纤维品质优异,其纤维长度31.9 mm、比强度32.8 cN/tex、马克隆值4.1;皮棉产量与对照品种新陆早36号及受体亲本新陆早40号,差异性不明显;属抗枯萎、耐黄萎类型。【结论】利用抗黄萎病染色体片段导入系,能够改良陆地棉抗黄萎病性状,获得高产、优质、抗病品系。 展开更多
关键词 海岛棉 染色体片段 导入系 黄萎病
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Mapping QTLs Associated with Sheath Blight Resistance Using Chromosome Segment Substitution Lines of Rice(Oryza sativa L.)
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作者 林静 张所兵 +2 位作者 张云辉 汪迎节 方先文 《Agricultural Science & Technology》 CAS 2014年第5期756-759,共4页
In this study, a population of 119 chromosome segment substitution lines (CSSLs) derived from backcross between indica 9311 and japonica Nipponbare was employed to map quantitative trait loci (QTL) associated with... In this study, a population of 119 chromosome segment substitution lines (CSSLs) derived from backcross between indica 9311 and japonica Nipponbare was employed to map quantitative trait loci (QTL) associated with sheath blight resis-tance in rice with toothpick inoculation method. A total of three sheath blight resis-tance-associated QTLs (qsb8-1, qsb8-2 and qsb8-3) were identified, which were lo-cated on adjacent molecular markers RM3262, RM5485 and RM3496 of chromo-some 8; the genetic interval was 81.7cM-91.7cM, 91.7cM-108.1cM and 108.1cM-119.6cM, respectively. The additive effect of qsb8-2 was negative, indicating that sheath blight resistance of susceptible parent harboring qsb8-2 fragment was en-hanced; additive effects of qsb8-1 and qsb8-3 were positive, indicating that sheath blight resistance of susceptible parent harboring qsb8-1 and qsb8-3 fragments was reduced. 展开更多
关键词 RICE Sheath blight resistance chromosome segment substitution lines(CSSLs) Quantitative trait locus (QTL) mapping
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Dynamic Expression Analysis and Introgressive Gene Identification of Fiber Length Using Chromosome Segment Substitution Lines from G.hirsutum×G.barbadense
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作者 Pengtao Li Quanwei Lu +2 位作者 Xianghui Xiao Rui Yang Xixi Duan 《Phyton-International Journal of Experimental Botany》 SCIE 2021年第1期129-144,共16页
Fiber length is a critical trait that principally determines cotton spinning quality,while Upland cotton as the most widely cultivated Gossypium species around the world subjects to the relatively ordinary fiber perfo... Fiber length is a critical trait that principally determines cotton spinning quality,while Upland cotton as the most widely cultivated Gossypium species around the world subjects to the relatively ordinary fiber performance.Chromosome segment substitution lines(CSSLs)have been introduced in cotton breeding to take full advantages of superior fiber quality and high yield from Sea Island and Upland cotton,respectively,which serve as ideal materials for elucidating the genetic mechanism of complex quantitative traits.Here,three CSSLs derived from CCRI45(G.hirsutum)×Hai1(G.barbadense),two superior(MBI7561 and MBI7747)and one(MBI7285)with ordinary fiber-quality,were subjected to transcriptome sequencing during fiber elongation together with their recurrent parent CCRI45,and 471.425 million clean reads were obtained with 91.47%average Q30 and 45.23%mean GC content.In total,5,673 differentially expressed genes(DEGs)were identified from multi-sample comparisons,which were mainly involved in the oxidation-reduction process,protein phosphorylation,regulation of transcription,DNA template,and carbohydrate metabolic process.Eight temporal expression patterns were monitored on the DEGs of different lines,of which the significantly enriched profile revealed higher similarities between two superior CSSLs or the ordinary CSSL and CCRI45 with respect to fiber performance.Based on the intersection between the predicted introgressive genes from RNAseq data and the published gene information from the G.barbadense genome,1,535 introgressive genes were identified in three CSSLs.Further analysis of the three common introgressive sections in superior CSSLs revealed eight candidate genes that were identified to be involved in fiber development,namely,O-fucosyltransferase family protein(GB_A02G0240),glutamine synthetase 2(GB_A02G0272),Ankyrin repeat family protein(GB_A02G0264),beta-6 tubulin(GB_D03G1742),WRKY DNA-binding protein 2(GB_D03G1655),quinolinate synthase(GB_D07G0623),nuclear factor Y,subunit B13(GB_D07G0631),and leucine-rich re 展开更多
关键词 Gossypium hirsutum Gossypium barbadense chromosome segment substitution lines RNA-SEQ fiber length
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QTLs Mapping for Salinity Tolerance at Seedling Stage or Rice(Oryza sativa L.) Using Chromosome Segment Substitution Lines
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作者 林静 张所兵 +2 位作者 张云辉 汪迎节 方先文 《Agricultural Science & Technology》 CAS 2017年第12期2209-2211,共3页
In this study, a population of chromosome segment substitution lines (CSSLs) derived from the cross between 9311 (indica) and Nipponbare (japonica) was employed to map the quantitative trait loci (QTLs) for sa... In this study, a population of chromosome segment substitution lines (CSSLs) derived from the cross between 9311 (indica) and Nipponbare (japonica) was employed to map the quantitative trait loci (QTLs) for salt tolerance under the salt stress simulated with 0.5% NaCI, using survival rate as the index. The data were analyzed by QTL IciMapping v3.1, and the results showed that one QTL (QSsr3) related to salt tolerance was located in the vicinity of the marker RM1350 on chromosome 3, into a genetic interval of 113.2-132.8 cM, with a contribution rate of 17.75%. The additive effect was 10.9, indicating that the QTL derived from the parent Nipponbare improved the salt tolerance of rice at seedling stage. This study will provide a theoretical basis for the selection of salt tolerant rice germplasm. 展开更多
关键词 RICE Salt tolerance chromosome segment substitution lines (CSSLs) Quantitative trait loci (QTLs) mapping
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覆盖野生稻基因组的染色体片段替换系的构建及其米质相关数量性状基因座位的鉴定 被引量:26
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作者 郝伟 金健 +2 位作者 孙世勇 朱美珍 林鸿宣 《植物生理与分子生物学学报》 CAS CSCD 北大核心 2006年第3期354-362,共9页
染色体片段替换系(CSSL)是基因组水平快速初步定位数量性状基因座位(QTL)的良好材料,而水稻的品质性状是多基因控制的数量性状,因此可用替换系鉴定控制水稻品质性状的QTL。本文用分子标记辅助选择技术(MAS)构建了由133个株系组成的以‘... 染色体片段替换系(CSSL)是基因组水平快速初步定位数量性状基因座位(QTL)的良好材料,而水稻的品质性状是多基因控制的数量性状,因此可用替换系鉴定控制水稻品质性状的QTL。本文用分子标记辅助选择技术(MAS)构建了由133个株系组成的以‘特青’(籼稻品种)为轮回亲本,以海南的一种普通野生稻为供体亲本,覆盖绝大部分野生稻基因组的染色体片段替换系。利用这套替换系,初步定位了控制稻米外观和理化品质性状的15个QTL,为今后水稻品质性状QTL的克隆以及稻米品质相关性状的改良提供了依据。 展开更多
关键词 水稻 染色体片段替换系(CSSL) 外观品质 理化品质 数量性状基因座位(QTL)
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利用CSSL群体研究稻米AC和PC相关QTL表达稳定性 被引量:26
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作者 翁建峰 万向元 +3 位作者 吴秀菊 王海莲 翟虎渠 万建民 《作物学报》 CAS CSCD 北大核心 2006年第1期14-19,共6页
利用以Asominori为遗传背景具IR24染色体片段的置换系(CSSL)群体,在“2年4点”8个环境对稻米直链淀粉含量(AC)和蛋白质含量(PC)进行QTL定位和表达稳定性分析。结果共检测到8个AC和PC相关QTL,其中2个QTL在8个环境中都能重复出现... 利用以Asominori为遗传背景具IR24染色体片段的置换系(CSSL)群体,在“2年4点”8个环境对稻米直链淀粉含量(AC)和蛋白质含量(PC)进行QTL定位和表达稳定性分析。结果共检测到8个AC和PC相关QTL,其中2个QTL在8个环境中都能重复出现,即影响AC的qAC-8和控制PC的qPC-8,平均贡献率分别为21.0%和26.9%。qAC-8和qPC-8对应置换系与背景亲本Asominori在8个环境中相应性状的表现型都达到极显著差异(P〈0.01);都仅与8个环境中的2个环境之间存在显著的互作效应;说明qAC-8和qPC-8的效应显著且稳定性较高。此外,qAC-8和qPC-8都被定位在第8染色体R727~G1149区间,IR24的等位基因可同时提高AC和PC,这为研究水稻籽粒直链淀粉和蛋白质形成途径之间的相互关系以及碳氮代谢协同调控的遗传机制提供了新的信息。 展开更多
关键词 水稻 直链淀粉含量 蛋白质含量 染色体片段置换系(CSSL) QTL稳定性
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基于染色体单片段代换系的水稻粒形QTL定位 被引量:29
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作者 王军 朱金燕 +5 位作者 周勇 杨杰 范方军 李文奇 梁国华 仲维功 《作物学报》 CAS CSCD 北大核心 2013年第4期617-625,共9页
水稻的粒形是影响水稻产量和品质的重要因子之一,是由多基因控制的数量性状。染色体单片段代换系由于减少了个体间遗传背景的干扰,已经成为鉴定复杂性状QTL的新型遗传材料。本研究以广陆矮4号为受体,日本晴为供体的119个染色体单片段代... 水稻的粒形是影响水稻产量和品质的重要因子之一,是由多基因控制的数量性状。染色体单片段代换系由于减少了个体间遗传背景的干扰,已经成为鉴定复杂性状QTL的新型遗传材料。本研究以广陆矮4号为受体,日本晴为供体的119个染色体单片段代换系群体为试验材料,通过单因素方差分析和Dunnett’s多重比较,测验单片段代换系与受体亲本之间粒形的差异,鉴定了代换片段上粒形相关的QTL。以P≤0.001为阈值,共检测到39个粒形相关的QTL。其中,粒长相关的19个,其加性效应值为0.18~1.06mm,加性效应百分率为2.40%~14.13%;粒宽相关的14个,其加性效应值为0.09~0.31mm,加性效应百分率为2.71%~9.15%;粒厚相关的6个,其加性效应值为0.05~0.10mm,加性效应百分率为2.14%~4.46%。这些QTL的鉴定为进一步精细定位并克隆相应QTL和高产、优质水稻新品种的分子标记辅助选择奠定了基础。 展开更多
关键词 水稻 单片段代换系 数量性状 粒形 代换作图
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