[HTML][HTML] Identification of candidate genes for fiber length quantitative trait loci through RNA-Seq and linkage and physical mapping in cotton

X Li, M Wu, G Liu, W Pei, H Zhai, J Yu, J Zhang, S Yu - BMC genomics, 2017 - Springer
Abstract Background Cotton (Gossypium spp.) fibers are single-celled elongated trichomes,
the molecular aspects of genetic variation in fiber length (FL) among genotypes are currently …

Identification of candidate genes for fiber length quantitative trait loci through RNA-Seq and linkage and physical mapping in cotton.

X Li, M Wu, G Liu, W Pei, H Zhai, J Yu… - BMC …, 2017 - search.ebscohost.com
Abstract Background: Cotton (Gossypium spp.) fibers are single-celled elongated trichomes,
the molecular aspects of genetic variation in fiber length (FL) among genotypes are currently …

[HTML][HTML] Identification of candidate genes for fiber length quantitative trait loci through RNA-Seq and linkage and physical mapping in cotton

X Li, M Wu, G Liu, W Pei, H Zhai, J Yu, J Zhang… - BMC Genomics, 2017 - ncbi.nlm.nih.gov
Background Cotton (Gossypium spp.) fibers are single-celled elongated trichomes, the
molecular aspects of genetic variation in fiber length (FL) among genotypes are currently …

Identification of candidate genes for fiber length quantitative trait loci through RNA-Seq and linkage and physical mapping in cotton.

X Li, M Wu, G Liu, W Pei, H Zhai, J Yu, J Zhang… - BMC Genomics, 2017 - europepmc.org
Background Cotton (Gossypium spp.) fibers are single-celled elongated trichomes, the
molecular aspects of genetic variation in fiber length (FL) among genotypes are currently …

Identification of candidate genes for fiber length quantitative trait loci through RNA-Seq and linkage and physical mapping in cotton

X Li, M Wu, G Liu, W Pei, H Zhai, J Yu, J Zhang, S Yu - BMC Genomics, 2017 - go.gale.com
Background Cotton (Gossypium spp.) fibers are single-celled elongated trichomes, the
molecular aspects of genetic variation in fiber length (FL) among genotypes are currently …

Identification of candidate genes for fiber length quantitative trait loci through RNA-Seq and linkage and physical mapping in cotton

X Li, M Wu, G Liu, W Pei, H Zhai, J Yu… - BMC …, 2017 - pubmed.ncbi.nlm.nih.gov
Background Cotton (Gossypium spp.) fibers are single-celled elongated trichomes, the
molecular aspects of genetic variation in fiber length (FL) among genotypes are currently …

[PDF][PDF] Identification of candidate genes for fiber length quantitative trait loci through RNA-Seq and linkage and physical mapping in cotton

X Li, M Wu, G Liu, W Pei, H Zhai, J Yu, J Zhang, S Yu - 2017 - researchgate.net
Abstract Background: Cotton (Gossypium spp.) fibers are single-celled elongated trichomes,
the molecular aspects of genetic variation in fiber length (FL) among genotypes are currently …

[HTML][HTML] Identification of candidate genes for fiber length quantitative trait loci through RNA-Seq and linkage and physical mapping in cotton

X Li, M Wu, G Liu, W Pei, H Zhai… - BMC …, 2017 - bmcgenomics.biomedcentral.com
Cotton (Gossypium spp.) fibers are single-celled elongated trichomes, the molecular aspects
of genetic variation in fiber length (FL) among genotypes are currently unknown. In this …

Identification of candidate genes for fiber length quantitative trait loci through RNA-Seq and linkage and physical mapping in cotton

X Li, M Wu, G Liu, W Pei, H Zhai, J Yu… - BMC …, 2017 - search.proquest.com
Background Cotton (Gossypium spp.) fibers are single-celled elongated trichomes, the
molecular aspects of genetic variation in fiber length (FL) among genotypes are currently …

Identification of candidate genes for fiber length quantitative trait loci through RNA-Seq and linkage and physical mapping in cotton

X Li, M Wu, G Liu, W Pei, H Zhai, J Yu, J Zhang, S Yu - BMC Genomics, 2017 - infona.pl
Background Cotton (Gossypium spp.) fibers are single-celled elongated trichomes, the
molecular aspects of genetic variation in fiber length (FL) among genotypes are currently …