|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | ζ-Carotene Isomerase Suppresses Tillering in Rice through the Coordinated Biosynthesis of Strigolactone and Abscisic Acid显示文摘Rice tillering is an important agronomic trait affecting grain yield.Here,we identified a high-tillering mutant tillering20(t20),which could be restored to the wild type by treatment with the strigolactone(SL)analog rac-GR24.T20 encodes a chloroplast ζ-carotene isomerase(Z-ISO),which is involved in the biosynthesis of ca-rotenoids and their metabolites,SL and abscisic acid(ABA).The t20 mutant has reduced SL and ABA,raising the question of how SL and ABA biosynthesis is coordinated,and whether they have overlapping functions in tillering.We discovered that rac-GR24 stimulated T20 expression and enhanced all-trans-p-carotene biosynthesis.Importantly,rac-GR24 also stimulated expression of Oryza sativa 9-CIS-EPOXY-CAROTENOID DIOXYGENASE 1(OsNCED1)through induction of Oryza sativa HOMEOBOX12(0sHOX12),promoting ABA biosynthesis in shoot base.On the other hand,ABA treatment significantly repressed SL biosynthesis and the ABA biosynthetic mutants displayed elevated SL biosynthesis.ABA treatment reduced the number of basal tillers in both t20 and wild-type plants.Furthermore,while ABA-deficient mu-tants aba1 and aba2 had the same number of basal tillers as wild type,they had more unproductive upper tillers at maturity.This work demonstrates complex interactions in the biosynthesis of carotenoid,SLs and ABA,and reveals a role for ABA in the regulation of rice tillering. | Xue Liu Qingliang Hu Jijun Yan Kai Sun Yan Liang Meiru Jia Xiangbing Meng Shuang Fang Yiqin Wang Yanhui Jing Guifu Liu Dianxing Wu Chengcai Chu Steven M.Smith Jinfang Chu Yonghong Wang Jiayang Li Bing Wang | 2020 | Molecular Plant2020,13,12: | 11 |
| 2 | 江苏省优良食味粳稻品种培育的发展与启示显示文摘江苏是我国水稻主产省之一,水稻常年种植面积220万hm^(2)左右,总产1950万t左右,单产近9.0 t/hm^(2),在保障江苏乃至全国粮食安全中的地位举足轻重。长期以来,江苏省的水稻育种一直以高产为主要目标,进入21世纪以后,优质成为江苏水稻育种的首要目标。本文综述了江苏省水稻优质育种的背景、食味品质改良的途径和优良食味粳稻品种培育的进展,剖析了江苏省优良食味粳稻育种的启示及今后江苏省水稻食味品质改良与优质育种发展的方向,以期为广大水稻育种工作者提供借鉴。 | 王才林 | 2022 | 中国稻米2022,28,5: | 8 |
| 3 | 作物株型与产量研究进展与展望显示文摘作物株型主要包括株高、分蘖数、分蘖角度和穗部形态等,是决定作物产量的重要农艺性状.作物株型的驯化或改良已在作物产量的突破中起到至关重要的作用.随着作物株型分子调控网络的不断解析,为通过分子设计改良作物株型、进一步提高作物产量奠定了坚实的基础.重点关注水稻等模式作物株型调控机理的最新研究进展及其对株型改良和产量的贡献,并对作物株型未来的研究趋势进行了展望.同时,针对我国未来粮食增产面临的瓶颈,提出了应对策略,为面向2035年进行了战略布局. | 王文广 王永红 | 2021 | 中国科学:生命科学2021,51,10: | 6 |
| 4 | 水稻株型的研究进展显示文摘水稻是中国种植面积最大的粮食作物,其产量是人们一直关注的课题。由于人口不断增长、水稻种植面积有限、农民种植积极性不高及自然灾害等原因,粮食安全问题仍日益突出,如何保持水稻持续性产出和提高水稻产量依旧是大家关注的重点。水稻株型与产量密切相关,主要综述水稻株型研究进展,并展望理想株型今后发展方向。 | 李红 何炜 连玲 魏毅东 蔡秋华 王颖姮 谢华安 张建福 | 2020 | 福建稻麦科技2020,38,4: | 5 |
| 5 | 水稻重要农艺性状调控基因及其育种利用研究进展显示文摘水稻是我国三大主要粮食作物之一,也是保证我国口粮绝对安全的必保品种之一,具有极高的生产价值。随着分子标记、转基因等技术的快速发展,越来越多的科研工作者将研究方向聚焦到水稻高产、高抗、营养高效等优异农艺性状基因的克隆和功能鉴定上来,并在此基础上利用分子育种技术对目标性状进行定向改良,以获得综合性状优良的水稻品种。相对于传统杂交育种技术,分子育种技术在水稻中的应用可以打破物种间的生殖隔离,缩短育种时间,使水稻性状的改良更加精准、多样化。综述了水稻营养高效利用、激素、生物胁迫、非生物胁迫、产量与品质等调控基因的最新研究进展,并对未来水稻研究发展方向进行了展望,旨在为我国水稻研究提供有益参考。 | 张海淼 李洋 刘海峰 孔令广 丁新华 | 2020 | 生物技术通报2020,36,12: | 5 |
| 6 | A super pan-genomic landscape of rice显示文摘Pan-genomes from large natural populations can capture genetic diversity and reveal genomic complexity.Using de novo longread assembly,we generated a graph-based super pan-genome of rice consisting of a 251-accession panel comprising both cultivated and wild species of Asian and African rice.Our pan-genome reveals extensive structural variations(SVs)and gene presence/absence variations.Additionally,our pan-genome enables the accurate identification of nucleotide-binding leucine-rich repeat genes and characterization of their inter-and intraspecific diversity.Moreover,we uncovered grain weight-associated SVs which specify traits by affecting the expression of their nearby genes.We characterized genetic variants associated with submergence tolerance,seed shattering and plant architecture and found independent selection for a common set of genes that drove adaptation and domestication in Asian and African rice.This super pan-genome facilitates pinpointing of lineage-specific haplotypes for trait-associated genes and provides insights into the evolutionary events that have shaped the genomic architecture of various rice species. | Lianguang Shang Xiaoxia Li Huiying He Qiaoling Yuan Yanni Song Zhaoran Wei Hai Lin Min Hu Fengli Zhao Chao Zhang Yuhua Li Hongsheng Gao Tianyi Wang Xiangpei Liu Hong Zhang Ya Zhang Shuaimin Cao Xiaoman Yu Bintao Zhang Yong Zhang Yiqing Tan Mao Qin Cheng Ai Yingxue Yang Bin Zhang Zhiqiang Hu Hongru Wang Yang Lv Yuexing Wang Jie Ma Quan Wang Hongwei Lu Zhe Wu Shanlin Liu Zongyi Sun Hongliang Zhang Longbiao Guo Zichao Li Yongfeng Zhou Jiayang Li Zuofeng Zhu Guosheng Xiong Jue Ruan Qian Qian | 2022 | Cell Research2022,32,10: | 3 |
| 7 | 西南稻区重穗型杂交稻发展现状及分子设计育种策略显示文摘水稻是我国重要的粮食作物,全国有60%以上人口以大米为主食。西南稻区是我国六大稻区之一,对保障我国粮食安全具有重要的战略意义。针对西南稻区“寡日照、高湿度、小温差”的生态条件,周开达院士等经历了艰苦的探索和反复实践,提出发展“重穗型”杂交稻是西南稻区实现水稻超高产的重要途径。本文总结了西南稻区重穗型杂交稻发展现状,列举了可用于重穗型杂交稻分子设计育种的基因资源,提出了重穗型杂交稻的分子设计育种策略,以期为培育新的高产优质“重穗协调型”品种提供参考,致力于打造更高水平的“天府粮仓”。 | 袁华 陈薇兰 王淏 王玉平 马炳田 涂斌 钦鹏 李仕贵 | 2022 | 中国稻米2022,28,5: | 2 |
| 8 | 多因素调控作物促分蘖机理研究进展显示文摘禾本科(Gramineae)植物中水稻(Oryzasativa L.)、小麦(Triticum aestivum L.)等都是重要的粮食作物,其产量对于人类来说有重要意义.提高粮食产量以满足人类对粮食质量和数量不断增长的需求至关重要,水稻、小麦等禾本科植物主要通过分蘖来提高产量.分蘖的生长发育受多方面因素影响,为了提高作物产量,前人对分蘖的发生和调控做了不少研究.本文主要综述了氮元素对分蘖的影响,多种植物激素对分蘖的作用,与分蘖有关的基因对分蘖的调控机制,禾草内生真菌与宿主植物共生对分蘖的促进作用,最后还评述了温度、水分、播期和密度对分蘖的影响.对禾本科内生真菌促分蘖的内源激素研究方向提出了展望. | 韩丹 米璟钰 李晓霞 陈水红 | 2021 | 渤海大学学报(自然科学版)2021,42,4: | 2 |
| 9 | 水稻育种主要目标性状基因挖掘研究进展显示文摘水稻是人类最重要的粮食作物之一,它养育着现今世界近半数人口。现代水稻育种起步于20世纪20年代,在水稻的百年育种进程中,高产、优质、多抗一直是水稻育种领域关注的重点。随着社会经济发展和劳动力成本上涨,水稻经济比较效益出现下降趋势,这促使水稻育种目标逐渐向全过程高效和绿色可持续发展转变。水稻育种的每一次跨越式突破都和目标性状基因资源挖掘紧密相关,因此,充分了解育种主要目标性状的基因挖掘研究进展,对利用现代生物技术进一步挖掘利用优良基因资源指导水稻育种具有重要意义。围绕高产、优质、多抗、高效和绿色等水稻育种的主要目标,综述了各大育种目标性状基因挖掘和利用的研究进展。展望未来,中国水稻育种将逐步培育出稳增提质、环境友好、节水减碳的优良品种,夯实中国在水稻产业的国际领先地位,为全球的粮食安全持续做出贡献。 | 丁文家 胡峻铭 王嘉力 | 2023 | 杂交水稻2023,38,3: | 2 |
| 10 | 水稻蒸煮品质相关QTL定位及候选基因分析显示文摘挖掘与稻米蒸煮品质相关的数量性状基因座(quantitative trait locus,QTL),分析候选基因,并通过遗传育种手段改良稻米蒸煮品质相关性状,可有效提升稻米的口感。以籼稻华占(Huazhan,HZ)、粳稻热研2号(Nekken2)及由其构建的120个重组自交系(recombinant inbred lines,RILs)群体为实验材料,测定成熟期稻米的糊化温度(gelatinization temperature,GT)、胶稠度(gel consistency,GC)和直链淀粉含量(amylose content,AC)。结合高密度分子遗传图谱进行QTL定位,共检测到26个与稻米蒸煮品质相关的QTLs(糊化温度相关位点1个、胶稠度相关位点13个、直链淀粉含量相关位点12个),其中最高奇数的可能性(likelihood of odd,LOD)值达30.24。通过实时荧光定量PCR(quantitative real-time polymerase chain reaction,qRT-PCR)分析定位区间内候选基因的表达量,发现6个基因在双亲间的表达量差异显著,推测LOC_Os04g20270和LOC_Os11g40100的高表达可能会极大地提高稻米的胶稠度,而LOC_Os01g04920和LOC_Os02g17500的高表达以及LOC_Os03g02650和LOC_Os05g25840的低表达有助于降低直链淀粉含量。这些结果为培育优质水稻新品种奠定了分子基础,并为揭示稻米蒸煮品质的分子调控机制提供了重要的遗传资源。 | 乐巧娜 黄梓雯 戴若惠 李三峰 李梦佳 方媛 王跃星 饶玉春 | 2024 | 生物工程学报2024,40,1: | 1 |
| 11 | 大豆类胡萝卜素裂解双加氧酶GmCCD8固氮功能解析显示文摘大豆可与根瘤菌共生进行生物固氮,固氮机制受许多基因诱导调控,类胡萝卜素裂解双加氧酶(carotenoid cleavage dioxygenases,CCDs)可调控多种植物激素、色素、芳香类化合物的合成与代谢。为探讨其在大豆生物固氮中的功能,从大豆育成品种中黄15中克隆类胡萝卜素裂解双加氧酶GmCCD8基因,分析了该基因的表达模式及生物学功能。亚细胞定位表明GmCCD8在细胞质中表达。qRT-PCR技术及启动子融合GUS表达载体转化大豆毛状根,发现GmCCD8随大豆根瘤生长发育表达量逐渐上升,且在第28天根瘤中表达量最高。通过构建过表达及RNAi转基因复合植株,验证了GmCCD8影响根瘤发育及固氮能力。利用透射电镜观察根瘤内部结构,发现GmCCD8被干扰后根瘤内泡囊、类菌体和聚β-羟基丁酸盐的含量明显减少。上述结果表明,GmCCD8参与大豆根瘤生长发育及生物固氮过程,为大豆高效固氮分子育种提供了功能基因。 | 邢馨竹 杨占武 孔佑宾 李文龙 杜汇 李喜焕 张彩英 | 2022 | 中国农业科技导报2022,24,1: | 1 |
| 12 | Identifying candidate genes and patterns of heat-stress response in rice using a genome-wide association study and transcriptome analyses显示文摘Because high temperatures impair rice production,it is desirable to elucidate the regulatory mechanisms involved in rice response to heat stress.The objectives of this study were to identify candidate genes and characterize their response patterns during rice adaptation to high temperatures at the seedling stage.Ten heat-associated quantitative-trait loci were identified in a genome-wide association study.Comparison of transcript abundances in heat-sensitive and heat-tolerant rice pools under heat stress revealed approximately 400 differentially expressed genes.The expression of genes from heatsensitive accessions changed more than those from heat-tolerant accessions under heat stress.Alternative splicing(AS)events responded to heat stress in rice.The types of AS variants significant different between the heat-sensitive and heat-tolerant accessions.Expression patterns differing between the heat-sensitive and heat-tolerant accessions were identified for genes known to be involved in heat stress.We identified eleven genes associated with rice heat stress response.These genes could be pyramided to breed heat-tolerant rice accessions. | Yingxue Yang Chao Zhang De Zhu Huiying He Zhaoran Wei Qiaoling Yuan Xiaoxia Li Xu Gao Bin Zhang Hongsheng Gao Bo Wang Shuaimin Cao Tianyi Wang Yuhua Li Xiaoman Yu Longbiao Guo Guanjing Hu Qian Qian Lianguang Shang | 2022 | The Crop Journal2022,10,6: | 1 |
| 13 | An engineered platform for reconstituting functional multisubunit SCF E3 ligase in vitro显示文摘Multisubunit SKP1/Cullin1/F-box(SCF)E3 ligases play essential roles in regulating the stability of crucial regulatory factors and controlling growth and development in eukaryotes.Detecting E3 ligase activity in vitro is important forexploring the molecular mechanism of protein ubiquitination.However,in vitro ubiquitination assay systems for multisubunit E3 ligases remain difficult to achieve,especially in plants,mainly owing to difficulties in achieving active components of multisubunit E3 ligases with high purity and characterizing specific E2 and E3 pairs.In this study,we characterized components of the rice ScFDiwARF3(SCFDs)E3 ligase,screened the coordinated E2,and reconstituted active ScFD3 E3 ligase in vitro.We further engineered SCFD3 E3 ligase using a fused SKP1-Cullin1-RBX1(eSCR)protein and found that both the wild-type SCFD3 E3 ligase and the engineered SCFD3 E3 ligase catalyzed ubiquitination of the substrate D53,which is the key transcriptional repressor in strigolactone signaling.Finally,we replaced D3 with other F-box proteins from rice and humans and reconstituted active escF E3 ligases,including escFaID2,escFBxL1s,and escFcDC4 E3 ligases.Our work reconstitutes functional SCF E3 ligases in vitro and generates an engineered system with interchangeable F-box proteins,providing a powerful platform for studying the mechanisms of multisubunit SCF E3 ligases in eukaryotes. | Huihui Liu Simiao Liu Hong Yu Xiahe Huang Yingchun Wang Liang Jiang Xiangbing Meng Guifu Liu Mingjiang Chen Yanhui Jing Feifei Yui Bing Wang Jiayang Li | 2022 | Molecular Plant2022,15,8: | 1 |
| 14 | 水稻分蘖的分子机理研究进展显示文摘分蘖是水稻等禾谷类作物生产的关键农艺性状,也是单子叶植物一种特殊的分枝现象。水稻分蘖的形成是一个复杂的过程,其间受遗传、植物激素、栽培环境等因素的综合影响。近年来,对水稻分蘖数改变的突变体研究取得令人瞩目的研究成果,本综述总结水稻分蘖的调控机理的最新研究进展。 | 张米欢 胡东坡 张德春 | 2022 | 生物资源2022,44,1: | 1 |
| 15 | 籼型温敏核不育系华占S的选育显示文摘华占S是以抗倒优质温敏核不育系武香S为母本与强优恢复系华占杂交,经6年定向选择培育的籼型温敏核不育系。该不育系具有株叶形态好,株高适中,开花习性优,异交结实率高和配合力强等特点。于2017年通过安徽省农作物品种审定委员会审定。 | 郑兴飞 何立斌 张志清 彭小玲 徐得泽 胡中立 余金洪 | 2021 | 浙江农业科学2021,62,4: | 1 |
| 16 | 水稻矮化多蘖突变体mtd2/htd1-1的鉴定与图位克隆显示文摘株高是株型构成的重要因子,分蘖则是有效穗形成的基础,二者均是水稻重要的农艺性状.为研究株高和分蘖发育的分子机理,用甲基磺酸乙酯(EMS)诱变保持系西大1B,从中鉴定到1个矮化多蘖突变体,命名为mtd2(more tiller and dwarfism 2).与野生型西大1B相比,mtd2的分蘖数(70.00个)是野生型的6.25倍,株高(49.12 cm)则为野生型的59.4%,同时还表现出小穗、短叶等特征.遗传分析表明:mtd2分蘖增多和植株矮化的突变表型呈共分离现象且受单隐性核基因调控.利用mtd2和缙恢10号杂交组合的F2隐性群体,最终将MTD2基因精细定位于第4染色体分子标记C04-2和C04-3之间157 kb的物理范围内,该区间内含1个已克隆的多蘖矮秆基因LOC_Os04g46470-HTD1.对定位区间内的HTD1进行DNA测序,发现其编码区有11个碱基缺失,导致移码突变.构建互补载体,转化突变体mtd2,其矮化多蘖表型恢复正常,表明mtd2是htd1的一个新等位突变体.细胞学分析发现:mtd2分蘖数增多是由于分蘖芽发育较快所致;qRT-PCR分析表明:MTD2可能参与独脚金内酯(SLs)相关的分蘖芽发育调控网络,这为进一步鉴定MTD2/HTD1基因的功能奠定了基础. | 王晓雯 王媛媛 冯蓓祺 雷松翰 范骏扬 杨晶晶 仝瑞建 田维江 桑贤春 | 2024 | 西南大学学报(自然科学版)2024,46,2: | 0 |
| 17 | 激素调控植物分枝/分蘖的研究进展显示文摘分枝/分蘖是植物株型的一个重要特征,也是腋芽起始和芽生长的结果,对经济作物的种子产量以及牧草产量均具有决定性作用。多种激素及其互作效应在植物分枝/分蘖的发生和生长发育过程中起着关键的调控作用,且环境因素也是通过改变植物体内激素含量及其平衡调控分枝的。本研究综述了多种激素对植物分枝/分蘖调控机制的多个方面,包括生长素、细胞分裂素、独脚金内酯、油菜素内酯、脱落酸和赤霉素、乙烯、茉莉酸及不同激素信号相互作用形成的复杂调控网络,旨在为利用激素调控机制培育具有理想株型的高产新作物品种奠定基础。同时分析了激素机制调控植物分枝/分蘖的现存问题,并展望了激素调控植物分枝/分蘖的研究方向,以期为通过激素调控改良作物株型提供理论依据。 | 陈奋奇 张金青 马晖玲 | 2024 | 草业学报2024,33,2: | 0 |
| 18 | Idealizing inflorescence architecture to enhance rice yield potential for feeding nine billion people in 2050显示文摘Rice serves as the staple food in meeting the energy needs of more than half of the global population.Several high-yielding,semi-dwarf rice varieties,including the milestone variety IR8 that was developed by the International Rice Research Institute(IRRI)through the introduction of the semi-dwarf1(sd1)allele of GA20-ox-2 gene and the beneficial allele of HIGH TILLERING AND DWARF 1/DWARF17(Wang et al.,2020),doubled the yield over traditional germplasm and contributed to the Green Revolution in Asia.In the subsequent decades,breeding efforts targeted ideal plant architecture to increase grains per panicle,reduce unproductive tillers,and improve grain quality by lowering chalkiness and enhancing palatability(Khush,2001). | Nese Sreenivasulu Erstelle Pasion Ajay Kohli | 2021 | Molecular Plant2021,14,6: | 0 |
| 19 | Profile of Dr.Qian Qian显示文摘Dr.Qian Qian graduated with a Bachelor of Science in Genetics from Nankai University in 1983,a Master of Science in Crop Genetics and Breeding from Hokkaido University in 1989,and a doctorate in Genetics and Breeding from the Chinese Academy of Agricultural Sciences in 1995.Dr.Qian served as a research intern(1983-1989),research assistant(1990-1996),research associate(1997-2001). | | 2022 | Science China(Life Sciences)2022,65,11: | 0 |
| 20 | 水稻小穗簇生基因OsCL6的定位及候选基因分析显示文摘【目的】通过对水稻小穗簇生基因的定位与候选基因分析,为进一步克隆幼穗发育过程中缩短枝梗长度造成小穗簇生的功能基因奠定基础。【方法】以航天诱变育种技术处理常规优质稻品种粤农丝苗获得一个稳定遗传的小穗簇生突变体cl6为试验材料,与粤金银占构建F1、F2作图群体,对簇生基因进行定位,结合转录组测序对候选基因进行预测与评价。【结果】遗传分析结果表明,突变体cl6的簇生性状由非完全显性单基因控制,混合分组分析法将该基因定位于第6染色体上约416 kb的区间。进一步通过表达谱分析、转录组测序技术、基因序列差异性分析和qRT-PCR验证等筛选出OsFBK16为最佳候选基因,其5′-UTR区域发生9个碱基的插入突变,暗示该基因可能通过二级结构改变调控转录或翻译水平,参与水稻幼穗发育过程中枝梗的分化。【结论】本研究结果为解析水稻二次枝梗和小穗梗缩短机制奠定一定理论基础。 | 刘维 陆展华 卢东柏 王晓飞 王石光 薛皦 何秀英 | 2021 | 中国水稻科学2021,35,3: | 0 |