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qtl analysis of transgressive nematode resistance in tetraploid cotton reveals complex interactions in chromosome 11 regions.transgressive segregation in cotton (gossypium spp.) provides an important approach to enhance resistance to the major pest root-knot nematode (rkn) meloidogyne incognita. our previous studies reported transgressive rkn resistance in an intraspecific gossypium hirsutum resistant nemx × susceptible sj-2 recombinant inbred line (ril) population and early generations of interspecific cross gossypium barbadense (susceptible pima s-7) × g. hirsutum (nemx). however, the underlying functional mechanism ...201729209344
artificial intelligence and regression analysis for cd(ii) ion biosorption from aqueous solution by gossypium barbadense waste.in this study, batch biosorption experiments were conducted to determine the removal efficiency of cd(ii) ion from aqueous solutions by gossypium barbadense waste. the biosorbent was characterized by fourier transform infrared spectroscopy (ftir) and scanning electron microscopy (sem) connected with energy dispersive x-ray (edx). the sorption mechanism was described by complexation/chelation of cd2+ with the functional groups of o-h, c=o, -coo-, and c-o, as well as, cation-exchange with mg2+ and ...201729235028
association between ssr markers and fibre traits in sea island cotton (gossypium barbadense) germplasm resources.identification of molecular markers associated with fibre traits can accelerate cotton marker-assisted selection (mas) programmes. in this study, gossypium barbadense germplasm accessions with diverse origins (n = 123) were used to perform association analysis of fibre traits with 120 polymorphic simple sequence repeat (ssr) markers. in total, 120 polymorphic primer pairs amplified 258 loci with a mean of 2.15 loci per primer. population structure analysis identified three main clusters for the ...201729321342
genetic dissection of the fuzzless seed trait in gossypium barbadense.cotton fibres are single-celled trichomes arising from the epidermal cells of the seed coat and may be either long (lint) or very short (fuzz). the dominant fuzzless n1 of gossypium hirsutum is a defective allele of the at-subgenome homoeolog of myb25-like, but the genetic components underlying the recessive fuzzless trait from g. barbadense (gb) are unknown. we have identified five genetic loci, including a major contributing locus containing myb25-like_dt, associated with gb fuzzless seeds bas ...201829351643
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