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Molecular,cytological and morphological studies on Jassid resistance in cotton(Gossypium hirsutum L.)based on hairiness trait
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作者 SUBHASHINI Selvaraj KEERTHIVARMAN Krishnan +4 位作者 RAJESWARI Sivakami PREMALATHA N KALAIMAGAL T MUTHUSWAMI M JEYAKUMAR P 《Journal of Cotton Research》 2025年第2期205-212,共8页
Background Unravelling the relationship between trichome density and resistance to jassids in upland cotton,nine parental lines,viz.MCU 5,CO 14,CO 17,TCH 1828,KC 2,KC 3,GISV 323,GTHV 15–34,and RHC 1409 were obtained ... Background Unravelling the relationship between trichome density and resistance to jassids in upland cotton,nine parental lines,viz.MCU 5,CO 14,CO 17,TCH 1828,KC 2,KC 3,GISV 323,GTHV 15–34,and RHC 1409 were obtained from the Tamilnadu Agricultural University.These genotypes were subjected to molecular analysis using 27 primers,merely the JESPR 154 primer amplifying a 150-bp fragment in genotypes exhibiting the pubescence.Result This finding validated the association between pubescence and jassid resistance.Further analysis revealed that resistant genotypes(KC 3,GTHV 15–34,GISV 323,and RHC 1409)exhibited significantly higher trichome densities and length compared with susceptible genotypes.These results stalwartly support the hypothesis that trichomes play a pivotal role in conferring resistance to jassids in upland cotton.Conclusion By breeding cotton varieties with increased trichome density and length,it is possible to reduce jassid infestations,thereby decreasing the reliance on chemical pesticides and promoting a more sustainable agricultural environment. 展开更多
关键词 cotton gossypium hirsutum L. TRICHOMES Jassids MOLECULAR
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Molecular Marker-assisted Selection for Verticillium Wilt Resistance in Upland Cotton (Gossypium hirsutum) 被引量:1
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作者 Shui-jin ZHU, Wei-ping FANG, Dao-fan JI(College oj Agriculture and Biotechnology, Zhejiang University, Hangzhou 310029, China) 《棉花学报》 CSCD 北大核心 2002年第S1期29-29,共1页
Verticillium wilt is a global important disease ofcotton,which threatens the development ofcotton production seriously.Recent years,because of the change in climate and croppingpattern,Verticillium wilt was broke out ... Verticillium wilt is a global important disease ofcotton,which threatens the development ofcotton production seriously.Recent years,because of the change in climate and croppingpattern,Verticillium wilt was broke out incotton production areas in China,which 展开更多
关键词 VERTICILLIUM gossypium cotton cotton Selection seriously breeding Marker upland BROKE
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Selection and Characterization of a Novel Glyphosate Tolerant Upland Cotton(Gossypium hirsutum L.) Mutant(R1098) 被引量:1
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作者 DAUD M K 《棉花学报》 CSCD 北大核心 2008年第S1期88-,共1页
Stepwise selection approach was adopted to obtain glyphosate-tolerant upland cotton mutant(R1098) from the embryogenic calli of Coker 312(Gossypium hirsutum L.).The calli were transferred to selection medium and multi... Stepwise selection approach was adopted to obtain glyphosate-tolerant upland cotton mutant(R1098) from the embryogenic calli of Coker 312(Gossypium hirsutum L.).The calli were transferred to selection medium and multi-step selection pressure process was carried out until the 展开更多
关键词 line Selection and Characterization of a Novel Glyphosate Tolerant upland cotton gossypium hirsutum L MUTANT
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An Integrated Genetic,Physical and Transcript Map of Homoeologous Chromosomes 12 and 26 in Upland Cotton(Gossypium hirsutum L.) 被引量:2
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作者 KOHEL Russell J CHO Jaemin TOMKINS Jeffrey YU John Z 《棉花学报》 CSCD 北大核心 2008年第S1期22-,共1页
While Upland cotton(Gossypium hirsutum L.) represents 95% of the world production,its genetic improvement is hindered by the shortage of effective genomic tools and resources.The
关键词 An Integrated Genetic Physical and Transcript Map of Homoeologous Chromosomes 12 and 26 in upland cotton gossypium hirsutum L
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Genetic Diversity and Its Correlation with Heterosis of Upland Cotton (Gossypium hirsutum L. ) Cultivars of Huang-Huai Region in China Evaluated by RAPD
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作者 Fu-rong WANG, Zhi-jun ZHANG, Ren-zhong LIU, Qin-hong LIU, Jun ZHANG(1. Shandong Cotton Research Center, Jinan, 250100 2. Institute of Plant Stress, Shandong Normal University, Jinan 250014, China) 《棉花学报》 CSCD 北大核心 2002年第S1期91-91,共1页
Sixteen cultivars of Upland cotton(Gossypiumhirsutum L.)cultivars in Huang-Huai Cotton-growing Region were detected by RAPD whilethe F<sub>1</sub> heterosis of each hybrid involved thesecultivars were ev... Sixteen cultivars of Upland cotton(Gossypiumhirsutum L.)cultivars in Huang-Huai Cotton-growing Region were detected by RAPD whilethe F<sub>1</sub> heterosis of each hybrid involved thesecultivars were evaluated.The genetic similarity(GS)of the 16 cultivars through analysis of 115polymorphic RAPD loci obtained from 70informative primers were 53%~88%. 展开更多
关键词 cotton gossypium cotton polymorphic similarity CORRELATION upland alleles informative germplasm
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Biochemical Genetic Mechanism and QTLs of Early Maturing without Yield Loss in Short-season Upland Cotton(Gossypium hirsutum L.)
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作者 SONG Mei-zhen,YU Shu-xun,FAN Shu-li(Cotton Research Institute,Chinese Academy of Agricultural Sciences Key Laboratory of Cotton Genetic Improvement,Ministry of Agriculture,Anyang,Henan 455000,China) 《棉花学报》 CSCD 北大核心 2008年第S1期68-,共1页
The short season cotton(SSC) was important Upland plant ecotype(Gossypium hirsutum L.).The growth of SSC was very short that is 105 ~ 110 days(after planting). SSC could increase
关键词 QTLS Biochemical Genetic Mechanism and QTLs of Early Maturing without Yield Loss in Short-season upland cotton gossypium hirsutum L
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Agrobacterium-meditated Genetic Transformation of an Upland Cotton(Gossypium hirsutum cv Coker 310) Using a Novel Bt Gene Cry2Ac
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作者 THIRUVENGADAM V RASHMI J A UDYASURIAN V BALASUBRAMANIAN P RAVEENDRAN T S 《棉花学报》 CSCD 北大核心 2008年第S1期66-,共1页
The development of transgenic cotton varieties resistant to bollworms has been a major success of applying plant genetic engineering technology to agriculture,evidenced by phenomenal increase in
关键词 Using a Novel Bt Gene Cry2Ac Agrobacterium-meditated Genetic Transformation of an upland cotton gossypium hirsutum cv Coker 310
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Genome-wide association study of micronaire using a natural population of representative upland cotton(Gossypium hirsutum L.)
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作者 SONG Jikun PEI Wenfeng +10 位作者 MA Jianjiang YANG Shuxian JIA Bing BIAN Yingying XIN Yue WU Luyao ZANG Xinshan QU Yanying ZHANG Jinfa WU Man YU Jiwen 《Journal of Cotton Research》 2021年第2期114-125,共12页
Background: Micronaire is a comprehensive index reflecting the fineness and maturity of cotton fiber.Micronaire is one of the important internal quality indicators of the cotton fiber and is closely related to the val... Background: Micronaire is a comprehensive index reflecting the fineness and maturity of cotton fiber.Micronaire is one of the important internal quality indicators of the cotton fiber and is closely related to the value of the cotton fiber.Understanding the genetic basis of micronaire is required for the genetic improvement of the trait.However,the genetic architecture of micronaire at the genomic level is unclear.The present genome-wide association study(GWAS)aimed to identify the genetic mechanism of the micronaire trait in 83 representa:tive upland cotton lines grown in multiple environments.Results GWAS of micronaire used 83 upland cotton accessions assayed by a Cotton 63 K Illumina Infinium single nucleotide polymorphism(SNP)array.A total of 11 quantitative trait loci(QTLs)for micronaire were detected on 10 chromosomes.These 11 QTLs included 27 identified genes with specific expression patterns.A novel QTL,qFM-A12–1,included 12 significant SNPs,and GhFLA9 was identified as a candidate gene based on haplotype block analysis and on strong and direct linkage disequilibrium between the significantly related SNPs and gene.GhFLA9 was expressed at a high level during secondary wall thickening at 20∼25 days post-anthesis.The expression level of GhFLA9 was significantly higher in the low micronaire line(Msco-12)than that in the high micronaire line(Chuangyou-9).Conclusions: This study provides a genetic reference for genetic improvement of cotton fiber micronaire and a foundation for verification of the functions of GhFLA9. 展开更多
关键词 upland cotton(gossypium hirsutum L.) Fiber micronaire GWAS Candidate genes GhFLA9
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Introduction of Bacillus thuringiensis(Bt)gene does not reduce potassium use efficiency of Bt transgenic cotton(Gossypium hirsutum L.) 被引量:1
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作者 WANG Qianqian YAN Wei +7 位作者 ZHANG Yichi ZHAN Manman LUO Xiaoli ENEJI AEgrinya ZHANG Anhong XIAO Juanli LI Fangjun TIAN Xiaoli 《Journal of Cotton Research》 CAS 2022年第3期274-284,共11页
Background:Potassium(K)deficiency has become a common field production problem following the widespread adoption of Bacillus thuringiensis(Bt)transgenic cotton(Gossypium hirsutum L.)worldwide.The purpose of this study... Background:Potassium(K)deficiency has become a common field production problem following the widespread adoption of Bacillus thuringiensis(Bt)transgenic cotton(Gossypium hirsutum L.)worldwide.The purpose of this study was to clarify whether the introduction of Bt gene directly reduces the K-use efficiency of cotton to induce K deficiency.Results:The cotton variety,Jihe 321(wild type,WT)and its two Bt(Cry1Ac)-transgenic overexpression lines(OE-29317,OE-29312)were studied in field with low soil-test K+(47.8 mg·kg^(−1)).In the field with low soil-test K+,only OE-29317 had less biomass and K+accumulation than the WT at some growth stages.Both Bt lines produced similar or even greater seed cotton yield than WT in the field.When the Bt gene(~70%)in OE-29317 and OE-29312 plants was silenced by virus-induced gene silencing(VIGS),the VIGS-Bt plants did not produce more biomass than VIGSgreen fluorescent protein(control)plants.Conclusions:The introduction of Bt gene did not necessarily hinder the K use efficiency of the cotton lines under this study. 展开更多
关键词 Biomass Bt(Bacillus thuringiensis)gene cotton(gossypium hirsutum L.) K uptake K utilization index Yield
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Introgression of Gossypium klotzschianum Genome into Cultivated Cotton,G.hirsutum 被引量:1
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作者 SHEN Xin-lian,ZHANG Xiang-gui,YANG Yu-wen,CAO Zhi-bin,NI Wan-chao(Jiangsu Academy of Agricltural Science,50 Tongwei Rood,Nanjing,Jiangsu 210014,China) 《棉花学报》 CSCD 北大核心 2008年第S1期31-,共1页
Exotic Gossypium germplasm is a rich source of useful agronomic traits for improvement programs of cultivated cotton.Efficient use of genetic variation available in the wild relatives depends
关键词 Introgression of gossypium klotzschianum Genome into Cultivated cotton G.hirsutum
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Evaluation of genetic diversity in short duration cotton(Gossypium hirsutum L.)
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作者 AKTER T. ISLAM A.K.M.A. +3 位作者 RASUL M.G. KUNDU S. KHALEQUZZAMAN AHMED J.U. 《Journal of Cotton Research》 2018年第4期12-17,共6页
Background: Cotton(Gossypium hirsutum L.) is an important fiber crop in Bangladesh. Genetic diversity among the genotypes of a germplasm has a great importance for cotton breeding. An experiment was carried out at the... Background: Cotton(Gossypium hirsutum L.) is an important fiber crop in Bangladesh. Genetic diversity among the genotypes of a germplasm has a great importance for cotton breeding. An experiment was carried out at the experimental field of Cotton Research, Training and Seed Multiplication Farm, Sreepur, Gazipur during the cropping season of 2015-2016 with 100 genotypes to evaluate genetic diversity of cotton genotypes for short duration using field performance.Results: The genotypes under study were grouped into ten clusters through multivariate analysis using GENSTAT-5.Cluster III contained maximum number of genotypes(16) while cluster X contained the least number of genotypes(7).The inter cluster distances were larger than intra cluster distances in all cases suggesting wider genetic diversity among the genotypes of different clusters. The maximum and minimum inter cluster distances were observed between clusters II and V(10.78) and clusters VIII and IX(3.30), respectively. The results indicated diverse and close relationship among the genotypes of those clusters. Earliness index, single boll weight and days to boll opening showed the higher contribution to the genetic divergence among 19 characters.Conclusion: Based on the results of genetic diversity and earliness index, the genotypes from cluster Ⅱ could be used as parent in hybridization program for the development of short duration cotton variety. 展开更多
关键词 cotton(gossypium hirsutum L.) Genetic diverity Earliness index GOT YIELD
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施氮量对不同开花期棉(Gossypium hirsutum L.)铃纤维细度和成熟度形成的影响 被引量:2
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作者 赵文青 孟亚利 +4 位作者 陈兵林 王友华 朱丽丽 王飞飞 周治国 《植物营养与肥料学报》 CAS CSCD 北大核心 2011年第5期1212-1219,共8页
为兼顾试验的重复性和生态区域性,选用高品质棉(科棉1号)和常规棉(美棉33B)品种为材料,于2005年分别在江苏南京(118°50'E,32°02'N,长江流域下游棉区)和江苏徐州(117°11'E,34°15'N,黄河流域黄淮棉区... 为兼顾试验的重复性和生态区域性,选用高品质棉(科棉1号)和常规棉(美棉33B)品种为材料,于2005年分别在江苏南京(118°50'E,32°02'N,长江流域下游棉区)和江苏徐州(117°11'E,34°15'N,黄河流域黄淮棉区)设置施氮量(低氮N 0 kg/hm2;适氮N 240 kg/hm2;高氮N 480 kg/hm2)试验,研究施氮量对不同开花期棉铃纤维细度、成熟度和马克隆值形成的影响。结果表明,(1)施氮量显著影响棉纤维细度、成熟度和马克隆值的形成过程,但三者在不同开花期对氮素水平的响应不同,施氮量与开花期对棉纤维细度、成熟度和马克隆值的形成存在互作效应。8月10日前开花的棉铃,铃期[花后0~50 d(DPA)]日均温在23.3℃以上,纤维细度、马克隆值以N 0 kg/hm2施氮量下最大,棉纤维马克隆值与纤维细度的相关性较大;8月25日开花的棉铃(铃期日均温在20.8~23.3℃之间),纤维成熟度、马克隆值以N 240 kg/hm2施氮量下最大;9月10日开花棉铃(铃期日均温低于20.8℃),纤维细度、成熟度和马克隆值均以N 480 kg/hm2最大,棉纤维马克隆值与纤维成熟度的相关性增强。(2)影响不同开花期间纤维细度、成熟度和马克隆值的主要因素是铃期日均温;最终纤维细度、成熟度和马克隆值在不同施氮量之间的变异与不同开花期(铃期日均温不同)间的变异比较,前者显著小于后者。综上,因开花期不同而形成的铃期日均温是决定纤维细度、成熟度和马克隆值的最重要因素,施氮量可通过对位叶叶氮浓度NA影响棉纤维细度、成熟度和马克隆值的形成过程,增加施氮量可减小上述指标在不同开花期间的差异。 展开更多
关键词 棉花 施氮量 开花期 纤维细度 纤维成熟度 纤维马克隆值
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Thellungiella halophila ST103 enhances salt tolerance in Gossypium hirsutum 被引量:1
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作者 JAVAID Ayesha NAZISH Tahmina +7 位作者 ALI Mohsin ZHU Yonghong LI Jing ZHANG Huangyang WU Jie XIANG Chengbin WU Shenjie ALFATIH Alamin 《Journal of Cotton Research》 2022年第2期153-163,共11页
Background:Cotton(Gossypium hirsutum),the major textile fiber crop ofthe world,is negatively affected by salinity.It leads to the induction of adverse effects on growth and development of cott on.The overall yield of ... Background:Cotton(Gossypium hirsutum),the major textile fiber crop ofthe world,is negatively affected by salinity.It leads to the induction of adverse effects on growth and development of cott on.The overall yield of cotton faces major drawback once they are grown in saline soil.To improve cotton salt tolerance,tunsgenic approach offers a fast and effective way but it relies on the availability of salt tolerance genes.Results:In this study,we have reported the evaluation of ThST103,a homologue of Arabidopsis ozone-induced protein(AtOZI1)in Thellungiellahalophila,in enhancing salt tolerance in cotton.Overexpression ofThST103 enabled cotton plants to germinate and grow better than the wild types under salt stress.The transgenic lines showed enhanced survival rate in the saline environment and experienced less oxidative damage compared with the wild types.In the field,the transgenic cotton lines produced higher yield than the wild type in saline soil.Transcriptomic comparison analyses of ThST103 overexpression lines versus the wild type revealed upregulated genes enriched in salt stress tolerance and ion homeostasis.Conclusions:Our results dem on strate that ThST103 has the capability to improve salt tolerance in cotton.It can be used in cotton breeding for salt tolerance cultivars. 展开更多
关键词 SALINITY Thellungiella halophila ThSTl03 Ozone-induced protein Salt toleranee cotton(gossypium hirsutum)
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Cloning of Two Genes Related to Plant Defense Response ofSea Island Cotton (Gossypium barbaden.se L. )
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作者 Dao-long DOU, Bing-shan WANG, Yi-xiong TANG, Zhi-xing WANG, Jing-san SUN, Shi-rong JIA(Institute of Botany, Chinese Academy of Sciences, Beijing 100093 Institute of Biotechnology, Chinese Academy of Agricultural Sciences,Beijing 100081, China) 《棉花学报》 CSCD 北大核心 2002年第S1期61-61,共1页
Verticillium wilt,caused by V.dahaliae,is aserious fungus disease of cotton in China.Nearly all cultivated upland cotton(Gossypiumhirsutum)varieties are sensitive to it.Somespecies of island cotton(G.barbadense),howev... Verticillium wilt,caused by V.dahaliae,is aserious fungus disease of cotton in China.Nearly all cultivated upland cotton(Gossypiumhirsutum)varieties are sensitive to it.Somespecies of island cotton(G.barbadense),however,have a natural resistance to thispathogen.To investigate the mechanism of 展开更多
关键词 gossypium cotton cotton VERTICILLIUM upland CLONING cultivated WRKY fungus island
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Genome-wide identification and expression analysis of Gossypium RING-H2 finger E3 ligase genes revealed their roles in fiber development,and phytohormone and abiotic stress responses 被引量:6
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作者 QANMBER Ghulam YU Daoqian +5 位作者 LI Jie WANG Lingling MA Shuya LU Lili YANG Zuoren LI Fuguang 《Journal of Cotton Research》 2018年第1期3-19,共17页
Background: RING H2 finger E3 ligase (RH2FE3) genes encode cysteine rich proteins that mediate E3 ubiquitin ligase activity and degrade target substrates. The roles of these genes in plant responses to phytohormone... Background: RING H2 finger E3 ligase (RH2FE3) genes encode cysteine rich proteins that mediate E3 ubiquitin ligase activity and degrade target substrates. The roles of these genes in plant responses to phytohormones and abiotic stresses are well documented in various species, but their roles in cotton fiber development are poorly understood. To date, genome wide identification and expression analyses of Gossypium hirsutum RH2FE3 genes have not been reported. Methods: We performed computational identification, structural and phylogenetic analyses, chromosomal distribution analysis and estimated KJKs values of G hirsutum RH2FE3 genes. Orthologous and paralogous gene pairs were identified by all versus all BLASTP searches. We predicted cis regulatory elements and analyzed microarray data sets to generate heatmaps at different development stages. Tissue specific expression in cotton fiber, and hormonal and abiotic stress responses were determined by quantitative real time polymerase chain reaction (qRT PCR) analysis. Results: We investigated 140 G hirsutum, 80 G. orboreum, and evolutionary mechanisms and compared them with orthologs 89 G. roimondii putative RH2FB genes and their in Arobidopsis and rice. A domain based analysis of the G hirsutum RH2FE3 genes predicted conserved signature motifs and gene structures. Chromosomal localization showed the genes were distributed across all G hirsutum chromosomes, and 60 duplication events (4 tandem and 56 segmental duplications) and 98 orthologs were detected, cis elements were detected in the promoter regions of G hirsutum RH2FE3 genes. Microarray data and qRT PCR analyses showed that G hirsutum RH2FE3 genes were strongly correlated with cotton fiber development. Additionally, almost all the (brassinolide, gibberellic acid (GA), indole 3-acetic acid drought, and salt). dentified genes were up regulated in response to phytohormones (IAA), and salicylic acid (SA)) and abiotic stresses (cold, heat, Conclusions: The genome wide identification, comprehensive analysis, and characterization of conserved domains and gene structures, as well as phylogenetic analysis, cis element prediction, and expression profile analysis of G hirsutum RH2FE3 genes and their roles in cotton fiber development and responses to plant hormones and abiotic stresses are reported here for the first time. Our findings will contribute to the genome wide analysis of putative RH2FE3 genes in other species and lay a foundation for future physiological and functional research on G hirsutum RH2FE3 genes. 展开更多
关键词 gossypium hirsutum upland cotton RING H2 finger E3 ligase Phylogenetic analysis cis elements Gene duplication Expression profile analysis
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Thellungiella halophila ST5 improves salt tolerance in cotton 被引量:2
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作者 NAZISH Tahmina JAVAID Ayesha +7 位作者 ALI Mohsin ZHU Yonghong LI Jing ZHANG Huangyang WU Jie XIANG Chengbin WU Shenjie ALFATIH Alamin 《Journal of Cotton Research》 2022年第1期22-33,共12页
Background: Salinity is a major abiotic stress to global agriculture which hampers crop growth and development, and eventually reduces yield. Transgenic technology is an e ective and e cient approach to improve crop s... Background: Salinity is a major abiotic stress to global agriculture which hampers crop growth and development, and eventually reduces yield. Transgenic technology is an e ective and e cient approach to improve crop salt tolerance but depending on the availability of e ective genes. We previously isolated Salt Tolerance5(ThST5) from the halophyte Thellungiella halophila, an ortholog of Arabidopsis SPT4-2 which encodes a transcription elongation factor. However, SPT4-2-confered salt tolerance has not been evaluated in crops yet. Here we report the evaluation of Th ST5-conferred salt tolerance in cotton(Gossypium hirsutum L.).Results: The ThST5 overexpression transgenic cotton plants displayed enhanced tolerance to salt stress during seed germination and seedling stage compared with wild type. Particularly, the transgenic plants showed improved salinity tolerance as well as yield under saline field conditions. Comparative transcriptomic analysis showed that ThST5 improved salt tolerance of transgenic cotton mainly by maintaining ion homeostasis. In addition, ThST5 also orchestrated the expression of genes encoding antioxidants and salt-responsive transcription factors.Conclusion: Our results demonstrate that ThST5 is a promising candidate to improve salt tolerance in cotton. 展开更多
关键词 SALINITY Thellungiella halophila Salt Tolerance5(ThST5) Salt tolerance cotton(gossypium hirsutum L.) Ion homeostasis
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Current Status of Cotton Genome Resource in India and Initiative on Utilization of Gene Pool through Molecular Technologies
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作者 C.D.MAYEE 《棉花学报》 CSCD 北大核心 2002年第S1期72-73,共2页
The genus Gossypium is one of the largest havingnearly 50 species of which two are tetraploidcultivars and two are diploid cultivars with 2n =52 and 26 chromosome respectively and the restare wild to semi-wild at both... The genus Gossypium is one of the largest havingnearly 50 species of which two are tetraploidcultivars and two are diploid cultivars with 2n =52 and 26 chromosome respectively and the restare wild to semi-wild at both these ploidy levels.The tetraploids(AD)are supposed to containthe Asiatic cotton(A)and American diploid(D)species genomes. 展开更多
关键词 cotton gossypium cotton DIPLOID chromosome GENOME INDIA TETRAPLOID abiotic upland
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Arabidopsis NLP7 improves nitrogen use efficiency and yield in cotton
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作者 JAN Sami Ullah LIAQAT Ayesha +7 位作者 ZHU Yonghong LI Jing ZHANG Huangyang ABDALLA Mohnad WU Jie XIANG Chengbin WU Shenjie ALFATIH Alamin 《Journal of Cotton Research》 2022年第1期12-21,共10页
Background: Nitrogen(N) is a required macronutrient for cotton growth and productivity. Excessive N fertilizers are applied in agriculture for crop yield maximization, which also generates environmental pollution. Imp... Background: Nitrogen(N) is a required macronutrient for cotton growth and productivity. Excessive N fertilizers are applied in agriculture for crop yield maximization, which also generates environmental pollution. Improving crop N use efficiency(NUE) is the most economical and desirable way of reducing fertilizer application and environmental pollution. NUE has been an important issue in cotton. So far there is no report on cotton NUE improvement via transgenic approach. Nin-like proteins(NLP) are transcription factors regulating NUE. We previously demonstrated that At NLP7 improved NUE and biomass when overexpressed in Arabidopsis. However, it is not known whether At NLP7 can be used to improve NUE in crops.Results: To test the feasibility, we expressed At NLP7 in cotton and evaluated NUE and yield of the transgenic cotton in the field. Transgenic cotton showed improved NUE and yield under both low and high N conditions. In addition, plant biomass, amount of absorbed N, N contents, activities of N-assimilating enzymes, and the expression of N-related marker genes were significantly increased in transgenic cotton compared with the wild type control, suggesting that At NLP7 enhances NUE in cotton.Conclusion: Together, our results demonstrate that At NLP7 is a promising candidate to improve NUE and yield in cotton. 展开更多
关键词 Nitrogen Nitrogen metabolism Nitrogen use efficiency(NUE) Nin-like protein(NLP) AtNLP7 cotton(gossypium hirsutum)
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4.5%24-表芸苔素内酯·烯效唑悬浮剂对棉花的调节作用 被引量:1
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作者 苏正川 卿尚飞 张亚彪 《农药科学与管理》 CAS 2024年第9期52-58,共7页
本试验探索了24-表芸苔素内酯和烯效唑复配使用对棉花生长和品质的影响。以“豫棉19号”,“冀丰4号”,“鲁棉研37号”和“农大601”4个棉花品种为研究对象,依据《农药田间药效试验准则》对棉花的株高等10个指标进行观察和测定。结果显示... 本试验探索了24-表芸苔素内酯和烯效唑复配使用对棉花生长和品质的影响。以“豫棉19号”,“冀丰4号”,“鲁棉研37号”和“农大601”4个棉花品种为研究对象,依据《农药田间药效试验准则》对棉花的株高等10个指标进行观察和测定。结果显示,24-表芸苔素内酯和烯效唑复配使用对4个品种棉花的矮化作用、结铃数、单铃重和籽棉产量具有增效作用。其对4个品种棉花的综合最适施用浓度为初花期6.75~10.13 g a.i/hm2,打顶后为28.91 g a.i/hm2和50.63 g a.i/hm2。对产量性状有轻微的影响,对“鲁棉研37号”和“农大601”2个品种棉花的籽指和衣指有轻微的提高。对棉花品质无明显的影响。研究表明,24-表芸苔素内酯和烯效唑复配使用可以更有效矮化植株,增加棉花的产量。 展开更多
关键词 24-表芸苔素内酯 烯效唑 棉花 调节作用 增加产量
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陆地棉品种抗黄萎病性状的分子标记及其辅助选择效果 被引量:34
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作者 王芙蓉 刘任重 +5 位作者 王留明 张传云 刘国栋 刘勤红 马小波 张军 《棉花学报》 CSCD 北大核心 2007年第6期424-430,共7页
利用综合性状优良、适应性广、抗黄萎病的鲁棉研22号与渐渗了海岛棉优异纤维基因的鲁原343组配杂交组合,对F2:3家系在不同发病时期进行黄萎病鉴定,并以SSR标记对抗黄萎病性状进行定位分析。在棉花发病相对较轻的7月份检测到1个位点(qVWR... 利用综合性状优良、适应性广、抗黄萎病的鲁棉研22号与渐渗了海岛棉优异纤维基因的鲁原343组配杂交组合,对F2:3家系在不同发病时期进行黄萎病鉴定,并以SSR标记对抗黄萎病性状进行定位分析。在棉花发病相对较轻的7月份检测到1个位点(qVWR-16-1a)与抗黄萎病有关;在发病较重的8月份,检测到3个QTLs位点与抗黄萎病有关,其中1个QTL(qVWR-16-1b)与7月份检测到的位点qVWR-16-1a为同一位点,能解释的表型变异为10.27%,与NAU751连锁较紧密,另外2个与BNL1395和BNL3590连锁较紧密的位点qVWR-16-2b、qVWR-2-1b,能解释的表型变异分别为10.8%和13.78%。利用检测到的与3个QTL位点连锁较紧密的SSR标记对杂交后代辅助鉴定,发现标记NAU751和BNL1395的抗性基因型均能显著增加后代的黄萎病抗性,两个标记的抗性基因型聚合后,后代抗性水平提高极显著。分子标记辅助抗病选择应用于优异纤维渐渗系杂交后代的鉴定中,可以培育出既优质又抗病的棉花新品种。 展开更多
关键词 陆地棉 抗黄萎病 SSR QTLS 分子标记辅助选择
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