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| 1 | The Reference Genome of Tea Plant and Resequencing of 81 Diverse Accessions Provide Insights into Its Genome Evolution and Adaptation显示文摘Tea plant is an important economic crop,which is used to produce the world's oldest and most widely consumed tea beverages.Here,we present a high-quality reference genome assembly of the tea plant(Camellia sinensis var.sinensis)consisting of 15 pseudo-chromosomes.LTR retrotransposons(LTR-RTs)account for 70.38%of the genome,and we present evidence that LTR-RTS play critical roles in genome size expansion and the transcriptional diversification of tea plant genes through preferential insertion in promoter regions and introns.Genes,particularly those coding for terpene biosynthesis pro-teins,associated with tea aroma and stress resistance were significantly amplified through recent tandem duplications and exist as gene clusters in tea plant genome.Phylogenetic analysis of the sequences of 81 tea plant accessions with diverse origins revealed three well-differentiated tea plant populations,support-ing the proposition for the southwest origin of the Chinese cultivated tea plant and its later spread to western Asia through introduction.Domestication and modern breeding left significant signatures on hundreds of genes in the tea plant genome,particularly those associated with tea quality and stress resis-tance.The genomic sequences of the reported reference and resequenced tea plant accessions provide valuable resources for future functional genomics study and molecular breeding of improved cul-tivars of tea plants. | Enhua Xia Wei Tong Yan Hou Yanlin An Linbo Chen Qiong Wu Yunlong Liu Jie Yu Fangdong Li Ruopei Li Penghui Li Huijuan Zhao Ruoheng Ge Jin Huang Ali Inayat Mallano Yanrui Zhang Shengrui Liu Weiwei Deng Chuankui Song Zhaoliang Zhang Jian Zhao Shu Wei Zhengzhu Zhang Tao Xia Chaoling Wei Xiaochun Wan | 2020 | Molecular Plant2020,13,7: | 51 |
| 2 | 中国茶树遗传育种40年显示文摘本文总结了改革开放40年来我国茶树遗传育种领域取得的研究进展,分析了存在的问题,提出了未来该领域的发展方向,为茶树遗传育种研究工作提供参考。 | 王新超 王璐 郝心愿 曾建明 杨亚军 | 2019 | 中国茶叶2019,41,5: | 37 |
| 3 | The Chromosome-Level Reference Genome of Tea Tree Unveils Recent Bursts of Nonautonomous LTR Retrotransposons in Driving Genome Size Evolution显示文摘Dear Editor,The tea tree Camellia sinensis,a member of the genus Camellia in the Theaceae family,includes two major cultivated varieties,C.sinensis var.assamica(CSA\Assam type)and C.sinensis var.sinensis(CSS;Chinese type)(Ming and Bartholomew,2007).Due to the high economic importance of the tea tree,considerable efforts have been made to explore genetic basis of the biosynthesis of natural metabolites that determine health benefits and diverse tea flavors(Shi et al.,2011;Li et al.,2011;Li et al.,2015;Xia et aL,2017;Liu et al.,2019). | Qun-Jie Zhang Wei L i Kui Li Hong Nan Cong Shi Yun Zhang Zhang-Yan Dai Yang-Lei Lin Xiao-Lan Yang Yan Tong Dan Zhang Cui Lu Li-Ying Feng Chen-Feng Wang Xiao-Xin Liu Jian-An Huang Wen-Kai Jiang Xing-Hua Wang Xing-Cai Zhang Evan E.Eichler Zhong-Hua Liu and Li-Zhi Gao | 2020 | Molecular Plant2020,13,7: | 27 |
| 4 | 中国茶叶生物化学研究40年显示文摘茶叶生物化学主要涵盖鲜叶次生代谢产物的生物合成及茶叶加工过程中化学成分在酶、微生物、温度等条件下的结构转化两方面的内容。茶叶生物化学的研究与茶叶的品质密切相关,例如茶叶汤色、滋味、香气等关键品质因素都取决于茶叶的内在化学成分。茶叶生物化学的研究是茶叶学科的基础,主要内容包括咖啡碱、茶氨酸和儿茶素的生物合成及其调控,以及茶叶加工过程中品质成分变化规律的机理。茶叶生物化学的研究可以为茶叶基础研究、种植生产、产品开发等提供坚实的理论基础。本文综述了改革开放40年来我国茶叶生物化学的研究进展,供茶叶教育、研究、加工等相关行业参考。 | 张梁 陈琪 宛晓春 李大祥 | 2019 | 中国茶叶2019,41,9: | 25 |
| 5 | The Chrysanthemum nankingense Genome Provides Insights into the Evolution and Diversification of Chrysanthemum Flowers and Medicinal Traits显示文摘The Asteraceae (Compositae),a large plant family of approximately 24 000-35 000 species,accounts for^10% of all angiosperm species and contributes a lot to plant diversity.The most representative members of the Asteraceae are the economically important chrysanthemums (Chrysanthemum L.)that diversified through reticulate evolution.Biodiversity is typically created by multiple evolutionary mechanisms such as wholegenome duplication 0NGD)or polyploidization and locally repetitive genome expansion.However,the lack of genomic data from chrysanthemum species has prevented an in-depth analysis of the evolutionary mechanisms involved in their diversification.Here,we used Oxford Nanopore long-read technologyto sequence the diploid Chrysanthemum nankingense genome,which represents one of the progenitor genomes of domesticated chrysanthemums.Our analysis revealed that the evolution of the C.nankingense genome was driven by bursts of repetitive element expansion and WGD events including a recentWGD that distinguishes chrysanthemum from sunflower,which diverged from chrysanthemum approximately 38.8 million years ago.Variations of ornamental and medicinal traits in chrysanthemums are linked to the expansion of candidate gene families by duplication events including paralogous gene duplication.Collectively,our study of the assembled reference genome offers new knowledge and resources to dissect the history and pattern of evolution and diversification of chrysanthemum plants,and also to accelerate their breeding and improvement. | Chi Song Yifei Liu Aiping Song Gangqiang Dong Hongbo Zhao Wei Sun Shyam Ramakrishnan Ying Wang Shuaibin Wang Tingzhao Li Yan Niu Jiafu Jiang Bin Dong Ye Xia Sumei Chen Zhigang Hu Fadi Chen Shilin Chen | 2018 | Molecular Plant2018,11,12: | 24 |
| 6 | 茶树GRF基因家族的全基因组鉴定及表达分析显示文摘生长调控因子(growth regulating factor,GRF)是植物特有的转录因子家族,在植物生长发育过程中起重要调控作用。该研究利用生物信息学的方法,从茶树基因组中鉴定获得11个CsGRF转录因子家族成员,且均具有完整的特征结构域QLQ和WRC。CsGRF家族成员含有3~6个外显子,基于系统进化关系将CsGRF家族分为6组,且与葡萄及猕猴桃GRF家族的亲缘关系更为接近。不同组织转录组数据分析结果表明,该家族在生长活跃的茶树嫩梢部位高表达。上游启动子区域分析发现大量与植物发育、激素及胁迫响应密切相关的顺式作用元件。荧光定量检测发现,分别有10个和2个CsGRF成员在低温和干旱胁迫处理后呈现显著上调表达,其中CsGRF8和CsGRF11对2种非生物胁迫均有响应;并发现受ABA、MeJA和GA激素处理诱导分别有9个、3个和6个CsGRF基因的表达水平差异显著。研究表明,CsGRF基因家族在茶树生长发育过程及应激反应中起作用,推测CsGRF基因可能通过各种激素信号转导途径参与胁迫响应过程。 | 王鹏杰 郑玉成 林浥 周珍 杨江帆 叶乃兴 | 2019 | 西北植物学报2019,39,3: | 21 |
| 7 | 中国茶树炭疽菌属病害研究进展及展望显示文摘茶树是一种重要的经济作物,广泛种植于热带和亚热带地区。随着茶产品经济价值的提高,茶叶生产安全备受关注。炭疽菌是引起茶树病害的病原菌之一,严重影响茶叶产量和茶产品品质,威胁我国茶产业的良性发展。利用抗病品种是防治茶树病害最为经济、有效的措施。目前,茶树炭疽菌种名使用混乱,茶树与炭疽菌的互作研究也较为薄弱,而简单依靠药剂防治病害也对茶叶质量安全造成一定的影响。本文梳理并明确了危害茶树的炭疽菌种类;总结了现有的茶树和炭疽菌互作的研究成果,提出识别免疫(effector triggered immunity,ETI)模式是茶树防御炭疽菌的主要机制;对茶树病理学存在的问题进行了归纳并提出解决办法,并展望了深入开展茶树抗病机理研究的思路,以期为制定茶园绿色防控技术及选育茶树抗病良种提供科学参考。 | 王玉春 刘守安 卢秦华 熊飞 杨亚军 王新超 | 2019 | 植物保护学报2019,46,5: | 17 |
| 8 | 茶树白化突变研究进展显示文摘新梢白化茶树是一类珍稀的叶色突变体,其白化新梢中氨基酸、茶多酚、咖啡碱、叶绿素、类胡萝卜素等物质含量与一般绿色叶茶树品种存在显著差异,这些特征性的生化成分对茶树生长发育、制茶品质具有重要作用。为了解析白化茶树资源的形成机制,研究人员已从不同角度开展了大量基础研究,积累了丰富的理化数据。近十几年来,随着组学技术的快速发展,为研究白化茶树突变体的光合作用机制、叶色变异机理提供了新的思路。本文综述了目前白化茶树资源在白化类型、生理生化特征,以及分子机制等方面的研究进展,以期为茶树白化机制的解析提供参考。 | 刘丁丁 梅菊芬 王君雅 汤榕津 陈亮 马春雷 | 2020 | 中国茶叶2020,42,4: | 17 |
| 9 | The chromosome-scale genome reveals the evolution and diversification after the recent tetraploidization event in tea plant显示文摘Tea is one of the most popular nonalcoholic beverages due to its characteristic secondary metabolites with numerous health benefits.Although two draft genomes of tea plant(Camellia sinensis)have been published recently,the lack of chromosome-scale assembly hampers the understanding of the fundamental genomic architecture of tea plant and potential improvement.Here,we performed a genome-wide chromosome conformation capture technique(Hi-C)to obtain a chromosome-scale assembly based on the draft genome of C.sinensis var.sinensis and successfully ordered 2984.7 Mb(94.7%)scaffolds into 15 chromosomes.The scaffold N50 of the improved genome was 218.1 Mb,~157-fold higher than that of the draft genome.Collinearity comparison of genome sequences and two genetic maps validated the high contiguity and accuracy of the chromosome-scale assembly.We clarified that only one Camellia recent tetraploidization event(CRT,58.9–61.7 million years ago(Mya))occurred after the core-eudicot common hexaploidization event(146.6–152.7 Mya).Meanwhile,9243 genes(28.6%)occurred in tandem duplication,and most of these expanded after the CRT event.These gene duplicates increased functionally divergent genes that play important roles in tea-specific biosynthesis or stress response.Sixty-four catechin-and caffeine-related quantitative trait loci(QTLs)were anchored to chromosome assembly.Of these,two catechin-related QTL hotspots were derived from the CRT event,which illustrated that polyploidy has played a dramatic role in the diversification of tea germplasms.The availability of a chromosome-scale genome of tea plant holds great promise for the understanding of genome evolution and the discovery of novel genes contributing to agronomically beneficial traits in future breeding programs. | Jie-Dan Chen Chao Zheng Jian-Qiang Ma Chen-Kai Jiang Sezai Ercisli Ming-Zhe Yao Liang Chen | 2020 | Horticulture Research2020,7,1: | 17 |
| 10 | The genome sequence of celery(Apium graveolens L.),an important leaf vegetable crop rich in apigenin in the Apiaceae family显示文摘Celery(Apium graveolens L.)is a vegetable crop in the Apiaceae family that is widely cultivated and consumed because it contains necessary nutrients and multiple biologically active ingredients,such as apigenin and terpenoids.Here,we report the genome sequence of celery based on the use of HiSeq 2000 sequencing technology to obtain 600.8 Gb of data,achieving~189-fold genome coverage,from 68 sequencing libraries with different insert sizes ranging from 180 bp to 10 kb in length.The assembled genome has a total sequence length of 2.21 Gb and consists of 34,277 predicted genes.Repetitive DNA sequences represent 68.88%of the genome sequences,and LTR retrotransposons are the main components of the repetitive sequences.Evolutionary analysis showed that a recent whole-genome duplication event may have occurred in celery,which could have contributed to its large genome size.The genome sequence of celery allowed us to identify agronomically important genes involved in disease resistance,flavonoid biosynthesis,terpenoid metabolism,and other important cellular processes.The comparative analysis of apigenin biosynthesis genes among species might explain the high apigenin content of celery.The whole-genome sequences of celery have been deposited at CeleryDB(http://apiaceae.njau.edu.cn/celerydb).The availability of the celery genome data advances our knowledge of the genetic evolution of celery and will contribute to further biological research and breeding in celery as well as other Apiaceae plants. | Meng-Yao Li Kai Feng Xi-Lin Hou Qian Jiang Zhi-Sheng Xu Guang-Long Wang Jie-Xia Liu Feng Wang Ai-Sheng Xiong | 2020 | Horticulture Research2020,7,1: | 16 |
| 11 | The Chromosome-Based Rubber Tree Genome Provides New Insights into Spurge Genome Evolution and Rubber Biosynthesis显示文摘The rubber tree,Hevea brasiliensis,produces natural rubber that serves as an essential industrial raw material.Here,we present a high-quality reference genome for a rubber tree cultivar GT1 using single-molecule real-time sequencing(SMRT)and Hi-C technologies to anchor the~1.47-Gb genome assembly into 18 pseudochromosomes.The chromosome-based genome analysis enabled us to establish a model of spurge chromosome evolution,since the common paleopolyploid event occurred before the split of Hevea and Manihot.We show recent and rapid bursts of the three Hevea-specific LTR-retrotransposon families during the last 10 million years,leading to the massive expansion by~65.88%(~970 Mbp)of the whole rubber tree genome since the divergence from Manihot.We identify large-scale expansion of genes associated with whole rubber biosynthesis processes,such as basal metabolic processes,ethylene biosynthesis,and the activation of polysaccharide and glycoprotein lectin,which are important properties for latex production.A map of genomic variation between the cultivated and wild rubber trees was obtained,which contains~15.7 million high-quality single-nucleotide polymorphisms.We identified hundreds of candidate domestication genes with drastically lowered genomic diversity in the cultivated but not wild rubber trees despite a relatively short domestication history of rubber tree,some of which are involved in rubber biosynthesis.This genome assembly represents key resources for future rubber tree research and breeding,providing novel targets for improving plant biotic and abiotic tolerance and rubber production. | Jin Liu Cong Shi Cheng-Cheng Shi Wei Li Qun-Jie Zhang Yun Zhang Kui Li Hui-Fang Lu Chao Shi Si-Tao Zhu Zai-Yun Xiao Hong Nan Yao Yue Xun-Ge Zhu Yu Wu Xiao-Ning Hong Guang-Yi Fan Yan Tong Dan Zhang Chang-Li Mao Yun-Long Liu Shi-Jie Hao Wei-Qing Liu Mei-Qi Lv Hai-Bin Zhang Yuan Liu Ge-Ran Hu-tang Jin-Peng Wang Jia-Hao Wang Ying-Huai Sun Shu-Bang Ni Wen-Bin Chen Xing-Cai Zhang Yuan-Nian Jiao Evan E.Eichler Guo-Hua Li Xin Liu Li-Zhi Gao | 2020 | Molecular Plant2020,13,2: | 15 |
| 12 | 基质配比对茶树扦插育苗的影响显示文摘茶树繁殖中短穗扦插育苗是目前茶树繁殖的主要方法,亦是工厂化育苗的主要手段,但存在扦插成活率低、生根慢等缺点。本研究将赤玉土和鹿沼土基质应用于茶树扦插育苗中,以前人研究的较好的育苗配方为对照,旨在研究一款适应性强、扦插成活率高的茶苗扦插基质。结果表明,赤玉土:鹿沼土:腐叶土=5:2:3(V/V/V)抽芽时间最早(10天),较其他处理提前5~8天;生根率最强100%,显著高于蛭石:泥炭土=1:2(V/V);生根效果最长(10.76 cm),极显著高于其他处理。基质配比为赤玉土:鹿沼土:腐叶土=5:2:3(V/V/V)的处理极大限度地促进了茶苗根系总根长、须根数、地径和生物量的增长,茶苗整体表现最为优异,具有生根快、抽芽早、繁育能力强、成活率高、应用性强等优点,是一种可以用于茶树扦插育苗的基质配比。 | 刘敏 朱双凤 代雨婧 王润贤 | 2022 | 中国农学通报2022,38,16: | 14 |
| 13 | Herbgenomics: A stepping stone for research into herbal medicine显示文摘From the prehistoric era until the publishing of the Compendium of Materia Medica and the first scientific Nobel Prize in the Chinese mainland for Tu's discovery on anti-malarial tablets,each milestone and stepping stone in the developmental history of herbal medicine involved intrepid exploration,bold hypothesis formulation,and cautious verification.After thousands of years of discovery and development,herbal research has entered a new era—the era of herbgenomics.Herbgenomics combines herbal and genomic research,bridging the gap between traditional herbal medicine and cutting-edge omics studies.Therefore,it provides a general picture of the genetic background of traditional herbs,enabling researchers to investigate the mechanisms underlying the prevention and treatment of human diseases from an omics perspective. | Haoyu Hu Xiaofeng Shen Baosheng Liao Lu Luo Jiang Xu Shilin Chen | 2019 | Science China(Life Sciences)2019,62,7: | 13 |
| 14 | 两种茶树全基因组数据的密码子偏好性比较分析显示文摘研究密码子偏好性有利于提高两种茶树外源基因表达水平及探讨遗传进化规律。该研究综合运用CodonW 1.4.2、SPSS 22.0软件以及Perl、Python语言,系统分析两种茶树基因组CDS序列,从而得出密码子偏好模式和高频密码子,明确密码子使用的变异来源。结果表明:两种茶树基因组的密码子偏好性主要受突变压力影响,在一定程度上也受到自然选择等因素的影响;两种茶树基因组倾向于使用以A/T结尾的密码子,且它们在密码子使用模式上具有较高的相似性;'云抗10号'(Camellia sinensis var. assamica, CSA)茶树基因的异源表达受体优先选择拟南芥、毛果杨和烟草,'舒茶早'(Camellia sinensis var. assmica, CSS)茶树基因的异源表达受体首选毛果杨。上述结果为分析两种茶树的进化规律、提高它们基因组中的基因异源表达效率提供了重要依据。 | 王占军 李豹 姜行舟 欧祖兰 徐忠东 代欢欢 | 2018 | 中国细胞生物学学报2018,40,12: | 13 |
| 15 | 茶叶籽油研究进展显示文摘茶叶籽油从山茶科山茶属植物茶树的成熟种子中提取,富含不饱和脂肪酸和多种生理活性成分,可制成高级食用油、美容护肤品用油和医疗专用油,具有广阔的开发利用前景。本文综述了近年来茶叶籽油提取制备工艺、脂肪酸组成和含量分析、生理活性成分检测的研究进展,并针对生产实践中茶树结实率低、茶叶籽含油率中等两大问题,论述了改良茶园栽培管理技术增强茶叶籽丰产性、分子育种法提高茶叶籽含油率的可行性,旨在为制备优质的茶叶籽油提供参考。 | 常亚丽 黄双杰 刘威 陈义 张永瑞 郭桂义 | 2019 | 中国粮油学报2019,34,12: | 13 |
| 16 | 茶叶香气物质响应胁迫机制与功能研究进展显示文摘茶叶香气是茶叶感官评价和品质化描述的重要组成部分。茶叶在采前自然生长与采后加工阶段参与多种胁迫响应,这些胁迫因子能够促进香气化合物的形成、积累与释放,积累的香气物质一方面有利于茶叶香气品质的提升;另一方面则有利于茶树逆境防御机制的产生。本文综述了近年来茶叶香气物质在胁迫响应方面的研究进展,如食叶害虫取食、病原菌侵染等生物胁迫和环境因子、加工工艺等非生物胁迫对茶叶香气物质代谢的调控机制以及茶叶香气响应胁迫在实际生产中的应用价值,为改善茶叶香气品质和茶树病虫害防御提供理论依据。 | 闫振 王登良 | 2021 | 食品科学2021,42,15: | 13 |
| 17 | A high-quality chromosome-level genome assembly reveals genetics for important traits in eggplant显示文摘Eggplant(Solanum melongena L.)is an economically important vegetable crop in the Solanaceae family,with extensive diversity among landraces and close relatives.Here,we report a high-quality reference genome for the eggplant inbred line HQ-1315(S.melongena-HQ)using a combination of Illumina,Nanopore and 10X genomics sequencing technologies and Hi-C technology for genome assembly.The assembled genome has a total size of~1.17 Gb and 12 chromosomes,with a contig N50 of 5.26 Mb,consisting of 36,582 protein-coding genes.Repetitive sequences comprise 70.09%(811.14 Mb)of the eggplant genome,most of which are long terminal repeat(LTR)retrotransposons(65.80%),followed by long interspersed nuclear elements(LINEs,1.54%)and DNA transposons(0.85%).The S.melongena-HQ eggplant genome carries a total of 563 accession-specific gene families containing 1009 genes.In total,73 expanded gene families(892 genes)and 34 contraction gene families(114 genes)were functionally annotated.Comparative analysis of different eggplant genomes identified three types of variations,including singlenucleotide polymorphisms(SNPs),insertions/deletions(indels)and structural variants(SVs).Asymmetric SV accumulation was found in potential regulatory regions of protein-coding genes among the different eggplant genomes.Furthermore,we performed QTL-seq for eggplant fruit length using the S.melongena-HQ reference genome and detected a QTL interval of 71.29–78.26 Mb on chromosome E03.The gene Smechr0301963,which belongs to the SUN gene family,is predicted to be a key candidate gene for eggplant fruit length regulation.Moreover,we anchored a total of 210 linkage markers associated with 71 traits to the eggplant chromosomes and finally obtained 26 QTL hotspots.The eggplant HQ-1315 genome assembly can be accessed at http://eggplant-hq.cn.In conclusion,the eggplant genome presented herein provides a global view of genomic divergence at the whole-genome level and powerful tools for the identification of candidate genes for important traits in eggplant. | Qingzhen Wei Jinglei Wang Wuhong Wang Tianhua Hu Haijiao Hu Chonglai Bao | 2020 | Horticulture Research2020,7,1: | 12 |
| 18 | 基于全基因组的茶树PAL家族基因鉴定及其在生物与非生物胁迫下的表达分析显示文摘苯丙氨酸解氨酶(Phenylalanine ammonia-lyase,PAL)在植物物质代谢和抗逆过程中发挥重要作用。利用生物信息技术在茶树阿萨姆变种‘云抗10号’和茶变种‘龙井43’基因组中分别预测获得5条和6条PAL家族基因。系统发育树显示,拟南芥、杨树和茶树PAL亲缘关系较远,茶树阿萨姆变种和茶变种存在进化差异。对茶树转录组数据分析发现:盐胁迫和茉莉酸甲酯处理可显著诱导PAL家族基因表达,其对冷胁迫和干旱胁迫响应不显著,在茶树老叶中的表达较低,而在幼嫩组织和根中的表达均较高,其中PALa、PALc、PALe在花中表达最高。q RT-PCR结果表明,茶树炭疽菌(Colletotrichum camelliae)、拟盘多毛孢菌(Pseudopestalotiopsis camelliae-sinensis)和茶尺蠖(Ectropis oblique)接种处理茶变种‘龙井43’和新品系‘2807’24 h后,6个PAL家族基因均显著上调表达。以上结果表明,茶树PAL家族基因在应对不同逆境胁迫时发挥重要功能。 | 熊飞 卢秦华 房婉萍 杨亚军 王新超 朱旭君 王玉春 | 2020 | 园艺学报2020,47,3: | 12 |
| 19 | 贵州茶树种质资源遗传多样性、群体结构和遗传分化研究显示文摘以144份贵州茶树种质资源为材料,采用68个EST-SSR标记探究其遗传多样性、群体结构及遗传分化。结果表明,144份茶树种质资源按海拔范围及种都可以分为3类,Gro1代表海拔1500 m以上的大厂茶群体,Gro2代表海拔范围1000~1300 m的茶群体,Gro3代表海拔不明显、种不明显的群体。144份茶树种质资源按种、地区、海拔进行遗传多样性分析发现,群体分化系数(Gst)分别为0.0797、0.0677、0.0470,基因流(Nm)分别为5.7741、6.8852、10.1348,表明遗传变异存在于群体内部个体间,不同群体间存在较强的基因交流。海拔差距越大,遗传距离越远,说明了海拔对于贵州野生茶树种质资源的分类有重要的影响,为更进一步探明贵州茶树种质资源的演化和分布规律奠定基础。 | 安红卫 宋勤飞 牛素贞 | 2021 | 浙江农业学报2021,33,7: | 11 |
| 20 | 茶树遗传育种研究“十三五”进展及“十四五”发展方向显示文摘简要总结了茶树遗传育种领域'十三五'期间取得的主要进展,分析了存在的问题,提出了该领域'十四五'期间的发展方向,为茶树遗传育种学科研究提供参考。 | 王新超 王璐 郝心愿 李娜娜 丁长庆 黄建燕 曾建明 杨亚军 | 2021 | 中国茶叶2021,43,9: | 11 |