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Upland cotton


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Stabilized heterosis studies for seed cotton yield and component 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

High-density linkage map construction and QTL analyses for fiber quality, yield and morphological traits using CottonSNP63K array in upland cotton (Gossypium hirsutum L.)

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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.

Assessment of heterosis based on parental genetic distance estimated with SSR and SNP markers in upland cotton (Gossypium hirsutum L.)

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Assessment of heterosis based on parental genetic distance estimated with SSR and SNP markers in upland cotton ( Gossypium hirsutum L.). Genetic distance (GD) is one of the valuable criteria for selecting parents in hybrid breeding.. The objectives of this study were to estimate the GD between parents using both simple sequence repeat (SSR) markers and single nucleotide polymorphism (SNP) markers and to investigate the efficiency of the prediction of hybrid performance based on GD.

Physical mapping and InDel marker development for the restorer gene Rf2 in cytoplasmic male sterile CMS-D8 cotton

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In recent years, the release of the upland cotton genomic sequence [48–50] and the rapid devel- opment of sequencing technology have enhanced the de- tection and application of SNP and InDel.

Genome-wide identification and expression patterns analysis of the RPD3/HDA1 gene family in cotton

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On the basis of our expression profile analysis of RPD3 genes in upland cotton, GhHDA1, GhHDA2, GhHDA6, GhHDA10, and GhHDA13 showed relatively high expression levels in most of the investigated tissues and in early-maturity cotton during flower bud differen- tiation. Additionally, other GhRPD3 genes also performed specific functions in cotton development, laying the foundation for further functional verification of RPD3 genes in upland cotton..

Comprehensive analysis of the Gossypium hirsutum L. respiratory burst oxidase homolog (Ghrboh) gene family

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In this study, we performed a genome- scale analysis of the rboh gene family in the upland cot- ton genome. members of the Ghrboh gene family were investigated using RNA-Seq data and were analyzed using qPCR.. Identification of Rboh genes in the upland cotton genome. To identify all the rboh genes in the upland cotton gen- ome, HMMER and BLAST searches were performed using ten rboh genes from A.

Genome-wide characterization and expression analysis of geranylgeranyl diphosphate synthase genes in cotton (Gossypium spp.) in plant development and abiotic stresses

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Uneven gene distribution of GhGGPPS genes on the chromosomes of At and Dt sub- genome indicated that GhGGPPS genes experienced gene duplication events during evolution and hybridization.. raimondii , respectively) of upland cotton are close rela- tives sharing the same number of orthologs and doubling numbers of GGPPS genes in upland cotton. In this study, 70 identified GGPPS genes in four representative cotton species were used to further explore the evolution of the GGPPS family..

Genetic regulatory networks for salt-alkali stress in Gossypium hirsutum with differing morphological characteristics

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The performance of the three upland cotton accessions was categorized into four distinct groups, as normal growth stage (CK0), early alkali-salt stress.

Genome-wide association analysis reveals genetic variations and candidate genes associated with salt tolerance related traits in Gossypium hirsutum

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Salt tolerance is a complex quantitative trait, which is controlled by multiple genes and involves a variety of physiological and biochemical metabolic pathways in cotton. The progress of conventional breeding of salt tolerance in upland cotton is impeded due to the lack of high salt tolerant genetic resources [3], low heritability [4], genetic complexity, and the difficulties in pheno- typing [5]..

Comprehensive identification and expression analysis of B-Box genes in cotton

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We speculated that the loss of the other two gene structures in upland cotton might be caused by evolution.. In the process of evolution, it must be under the pres- sure of natural selection. The results showed that the Ka/Ks values of most BBX homologues gene pairs were less than 1.

Transcriptomic analysis of gene expression of Verticillium dahliae upon treatment of the cotton root exudates

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The discovery of enriched GO terms hydrolase activity, hydrolyzing O-glycosyl compounds and transmembrane transport in Vd-X vs CK (339) and Vd-Z vs CK (302) sug- gested that 6 h and 12 h were the critical stage of V.dahliae-cotton interaction for upland cotton. 8 Heatmap and GO analyses of up-regulated genes in Vd-X, Vd-Z and Vd-H, respectively. Heatmap of 57 genes found to be up-regulated in Vd-X, Vd-Z and Vd-H at one or two time points of cultured (6 h and 12 h).

Temporal salt stress-induced transcriptome alterations and regulatory mechanisms revealed by PacBio long-reads RNA sequencing in Gossypium hirsutum

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Expression levels of genes related to many bio- logical processes and pathways are significantly affected by salt stress [22, 23]. regulatory pathways to salt stress tolerance in cotton based on mRNA and miRNA networks in two contrasting cotton genotypes [16]. Here, we investigated an upland cotton genotype under temporal salt stress. The results provided good insights into the regulatory pathways involved in response to salt stress in cotton.. Biochemical response to salt stress in cotton.

The structure, functional evolution, and evolutionary trajectories of the H+ -PPase gene family in plants

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Although the genomic segmental duplication information of some species (wheat and upland cotton) has not been recorded in the PGDD database, eight pairs of segmental duplications were found in corn, banana, and soybean, two of which were type II H + -PPase genes, while the other genes were of the Ia subtype.

Disequilibrium evolution of the Fructose1,6-bisphosphatase gene family leads to their functional biodiversity in Gossypium species

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In the current study, we identified significant differ- ences in the inhibition of both cpFBP and cyFBP gene expression levels between CRI12, an upland cotton culti- var, and MAR85, a semi-wild relative of upland cotton (Fig.

Functional examination of lncRNAs in allotetraploid Gossypium hirsutum

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Functional examination of lncRNAs in allotetraploid cotton. Therefore, in this study, we carried out a functional evaluation of lncRNAs in upland cotton (G. Wang et al. 2 Expression patterns of lncRNAs and PCGs under four abiotic stressors. F: Density distributions of the Pearson correlation coefficients between adjacent PCG-lncRNA pairs. G: Density distributions of the Pearson correlation coefficients between adjacent C-lncRNA-PCG and NC- lncRNA-PCG pairs.

Transcriptomic and proteomic analyses of a new cytoplasmic male sterile line with a wild Gossypium bickii genetic background

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The natural mutant cytoplasmic male sterile material found in the progeny of tri-specific hybrids was used as the source of sterility, and the BC 6 cotton cyto- plasmic male sterile Yamian A was obtained through inter- specific hybridization and continuous backcrossing with upland cotton Yamian B as the recurrent parent. The anther in its main- tainer Yamian B was plump, and milky yellow, and the pollen is scattered and full of the whole anther after cracking (Fig.

Genome-wide analysis and characterization of F-box gene family in Gossypium hirsutum L

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The expansion modes of F-box genes in upland cotton. a: The number of F-box genes of different duplication modes. Organ specific expression of F-box genes in the G. Organ-specific expression patterns of F-box genes. Protein quality control and elimination of protein waste: the role of the ubiquitin-proteasome system. Structure of the Cul1-Rbx1-Skp1-F box (Skp2) SCF ubiquitin ligase complex.

Genome-wide characterization of the GRF family and their roles in response to salt stress in Gossypium

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Upland cotton can experience stress [38] due to salt accumulation in the soil. Phenotypic changes in the leaves of Upland cotton were observed using both 200 and 500 mM NaCl over a period of 6 h. For example, 3 of the 5 genes downregulated here (i.e., GhGRF3 , GhGRF4 , and GhGRF16 ) also exhibited significantly decreased expression levels (≥2-fold change) at four time-points during NaCl stress in the available RNA-seq data (Fig. Phenotypic changes in the leaves of G.

Deficiencies in the formation and regulation of anther cuticle and tryphine contribute to male sterility in cotton PGMS line

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Deficiencies in the formation and. regulation of anther cuticle and tryphine contribute to male sterility in cotton PGMS line.

Ftm - Sợi Cotton

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Sản phẩm sợi của FTM chủ yếu phục vụ cho sản xuất chăn, áo khoác mùađông vì giữ nhiệt, mềm.Fortex sử dụng nguồn bông cotton nguyên liệu nhập khẩu từ các nước sản xuất bông chính như Mỹ, ẤnĐộ, Brazil, Tây Phi, Úc…thông qua các nhà cung cấp lớn trên thế giới như Olam, Cargrill, Ecom, Reinhart,Omni.Điểm nhấn đầu tưLà doanh nghiệp sợi cotton có quy mô lớn thứ 2 ở Việt Nam với sản lượng gần 17.000 tấn/năm.