Tìm thấy 20+ kết quả cho từ khóa "Gossypium hirsutum L."
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The duplication types of GRAS members in Gossypium hirsutum L. Motifs describution of GRAS members in G. Gene expression profile of GRAS members among different. Premiers of GRAS members selected for qRT-PCR. The public available expression profile of GRAS members. G_GRAS: Gossypium GRAS members. moellendorffii GRAS members . Genome-wide identification, evolutionary analysis, and stress responses of the GRAS gene family in Castor beans.
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upland cotton ( Gossypium hirsutum L.). Background: In upland cotton ( Gossypium hirsutum L. Results: A total of and 88 SNPs showed significant correlations with fiber length at and 25 DPA and maturity, respectively. Conclusions: This study provides important new insights into the genetic basis of the time-dependent fiber-length trait and reveals candidate SNPs and genes for improving fiber length in upland cotton.. Upland cotton ( G.
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Comprehensive analysis of the Gossypium hirsutum L. It catalyzes the formation of the superoxide anion (O 2. In recent years, various studies had shown that members of the plant rboh gene family were involved in plant growth and developmental processes as well as in biotic and abiotic stress responses, but little is known about its functional role in upland cotton.. Results: In the present study, 26 putative Ghrboh genes were identified and characterized.
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Cotton is the most important natural fiber crop in the world and one of the cultivated allotetraploid Up- land cotton (Gossypium hirsutum L.) fulfills about 95% of the output of global cotton production [1].. With the aim of saving resources, the genetic distance (GD) inferred from molecular markers has been sug- gested as a promising tool for hybrid performance pre- diction and recognition of heterotic groups [8–10]..
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Chọn lọc các dòng bông (Gossypium hirsutum L.) chuyển gen bar chống chịu thuốc. Bông chuyển gen Chống chịu glufosinate Gen bar. Thử khả năng chống chịu thuốc diệt cỏ Basta ở nồng độ 0,6 kg ai./ha cho 116 dòng T 1 chuyển gen bar thu được các dòng chống chịu. Đánh giá bằng kỹ thuật PCR, Southern blot và northern blot đã xác định được sự hiện diện, sự gắn kết và biểu hiện của gen chuyển trong genome cây chuyển gen.
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A genetic bottleneck in the evolution under domestication of upland cotton Gossypium hirsutum L.. Genome-wide SNP linkage mapping and QTL analysis for fiber quality and yield traits in the upland cotton recombinant inbred lines population. Genome-wide SNP linkage mapping and QTL analysis for fiber quality and yield traits in the Upland cotton recombinant inbred lines population.
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Construction of a comprehensive PCR-based marker linkage map and QTL mapping for fiber quality traits in upland cotton (Gossypium hirsutum L.).. Molecular tagging and source analysis of QTL for elite fiber quality in upland cotton. Identifying QTL for fiber quality traits with three upland cotton (Gossypium hirsutum L.) populations. Genetic map and QTL controlling fiber quality traits in upland cotton (Gossypium hirsutum L.)..
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Stabilized Heterosis Studies for Seed Cotton Yield and Component Traits in Upland Cotton (Gossypium hirsutum L
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Comparative evolutionary and developmental dynamics of the cotton (Gossypium hirsutum) fiber transcriptome. Changes in the level of tubulin subunits during development of cotton (Gossypium hirsutum) fiber. Proteomic identification of differentially expressed proteins in the Ligon lintless mutant of upland cotton (Gossypium hirsutum L
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Molecular diversity and association analysis of drought and salt tolerance in Gossypium hirsutum L.. SSR-based association mapping of salt tolerance in cotton (Gossypium hirsutum L.).. Sun Z, Li H, Zhang Y, Li Z, Ke H, Wu L, et al. Identification of SNPs and candidate genes associated with salt tolerance at the seedling stage in cotton (Gossypium hirsutum L. Yasir M, He S, Sun G, Geng X, Pan Z, Gong W, et al. Sun Z, Wang X, Liu Z, Gu Q, Zhang Y, Li Z, et al.
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Gossypium hirsutum L.) MAGIC population. Background: Improving cotton fiber length without reducing yield is one of the major goals of cotton breeding.. However, genetic improvement of cotton fiber length by breeding has been a challenge due to the narrow genetic diversity of modern cotton cultivars and negative correlations between fiber quality and yield traits.
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Genome sequence of the cultivated cotton Gossypium arboreum. Genome-wide identification and expression analyses of the pectate lyase (PEL) gene family in cotton (Gossypium hirsutum L. Rodriguez-Hoces de la Guardia a, serrano J, Tornielli GB et al : inspection of the grapevine BURP superfamily highlights an expansion of RD22 genes with distinctive expression features in berry development and ABA- mediated stress responses.
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RNA-seq analysis reveals alternative splicing under salt stress in cotton, Gossypium davidsonii, vol. Transcriptome analysis reveals salt-stress-regulated biological processes and key pathways in roots of cotton (Gossypium hirsutum L. De novo transcriptome sequencing and comparative analysis of differentially expressed genes in Gossypium aridum under salt stress. Comparative transcriptome analyses of barley and rice under salt stress.
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Quantitative trait loci analysis of fiber quality traits using a random-mated recombinant inbred population in upland cotton ( Gossypium hirsutum L. Jamshed M, Jia F, Gong JW, Palanga KK, Shi YZ, Li JW, et al. Identification of stable quantitative trait loci (QTLs) for fiber quality traits across multiple environments in Gossypium hirsutum recombinant inbred line population.
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In the present study, a gene duplication analysis was per- formed to investigate the expansion mechanism of the PEL gene family in the three Gossypium species. hirsutum , respectively, accounting for and 86.7% of the PEL gene family (Additional file 4: Table S4). These re- sults indicated that gene duplication, especially segmental duplication, played an irreplaceable role in the expansion of the PEL gene family in the three Gossypium species..
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Genome sequence of the cultivated cotton Gossypium arboreum . Analyzing serial cDNA libraries revealed reactive oxygen species and gibberellins signaling pathways in the salt response of upland cotton ( Gossypium hirsutum L. Genome-wide identification and analysis of the growth-regulating factor family in Chinese cabbage ( Brassica rapa L. Whole genome analysis of the OsGRF gene family encoding plant-specific putative transcription activators in rice ( Oryza sativa L.
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Liu XY, Teng ZH, Wang JX, Wu TT, Zhang ZQ, Deng XP, Fang XM, Tan ZY, Ali I, Liu DX, et al. environments in upland cotton ( Gossypium hirsutum L. Paterson AH, Wendel JF, Gundlach H, Guo H, Jenkins J, Jin DC, Llewellyn D, Showmaker KC, Shu SQ, Udall J, et al. Zhang TZ, Hu Y, Jiang WK, Fang L, Guan XY, Chen JD, Zhang JB, Saski CA, Scheffler BE, Stelly DM, et al. Du XM, Huang G, He SP, Yang ZE, Sun GF, Ma XF, Li N, Zhang XY, Sun JL, Liu M, et al.
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Variation in the diploid Gossypium species of Baja California. Molecular divergence in the Galapagos Islands — Baja California species pair, Gossypium klotzschianum and G.. Identification of the family of aquaporin genes and their expression in upland cotton (Gossypium hirsutum L. Identification and characterization of the AQP gene family in sesame. Gene structures, evolution, classification and expression profiles of the aquaporin gene family in castor bean (Ricinus communis L
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Genome sequence of the cultivated cotton Gossypium arboreum. Evolutionary expansion, gene structure, and expression of the rice wall- associated kinase gene family. cell wall associated kinases. A genome-scale analysis of the PIN gene family reveals its functions in cotton fiber development. Genome-wide analysis of the LEA (late. Genome-wide identification and expression analyses of the pectate lyase (PEL) gene family in cotton (Gossypium hirsutum L.
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Chronology of the differentiation of cotton ( Gossypium hirsutum L. Unraveling cotton Fiber. Core cis-element variation confers subgenome-biased expression of a transcription factor that functions in cotton fiber elongation. Plasmodesmal permeability and activates sucrose transporter genes during cotton Fiber elongation. Small interfering RNAs from bidirectional transcripts of GhMML3_A12 regulate cotton fiber development.