Effects of fiber wax and cellulose content on colored cotton fiber quality

文献类型: 外文期刊

第一作者: Zhaoe Pan

作者: Zhaoe Pan;Donglei Sun;Junling Sun;Zhongli Zhou;Yinhua Jia;Baoyin Pang;Zhiying Ma;Xiongming Du

作者机构:

关键词: fiber length;fiber elongation;fiber strength;fiber uniformity;colored cotton fiber quality;brown fiber color;dark brown cotton content

期刊名称:EUPHYTICA ( 影响因子:1.895; 五年影响因子:2.181 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Forty-eight colored cotton lines and hybrids were studied on the wax, cellulose content and fiber quality. The result were as follow: The wax content of green cotton was five to eight times greater than that of white cotton. As for the brown cotton lines, the darker the brown fiber color, the greater the content of the fiber wax. The wax content of dark brown cotton was two times greater than that of white cotton. However, the content of the cellulose of white cotton was the greatest, next was that of the brown cotton, and the content of the cellulose of green fiber was the lowest. There were differences in fiber length, fiber strength, and fiber uniformity, not only among different varieties with the same color fiber, but also among different coloring types. The content of cellulose had a significantly negative correlation with the content of wax and fiber elongation, but significantly positive correlations between the content of cellulose and fiber length, fiber strength, fiber fineness, lint index, boll weight, and fiber uniformity were observed in the color cotton lines used in this experiment. The study on wax and cellulose contents will give constructive advice for the breeding and molecular research of the colored cotton, and help increasing the color stability of the fiber and its textiles.

分类号: S3

  • 相关文献

[1]Molecular tagging of QTLs for fiber quality and yield in the upland cotton cultivar Acala-Prema. Ning Zhiyuan,Mei, Hongxian,Zhang, Tianzhen,Chen, Hong. 2014

[2]PAG1, a cotton brassinosteroid catabolism gene, modulates fiber elongation. Yang, Zuoren,Zhang, Chaojun,Yang, Xiaojie,Liu, Kun,Wu, Zhixia,Zhang, Xueyan,Zheng, Wu,Liu, Chuanliang,Lu, Lili,Yang, Zhaoen,Qian, Yuyuan,Xu, Zhenzhen,Li, Changfeng,Li, Fuguang,Xun, Qingqing,Li, Jia.

[3]GhCaM7-like, a calcium sensor gene, influences cotton fiber elongation and biomass production. Cheng, Yuan,Lu, Lili,Yang, Zhaoen,Wu, Zhixia,Qin, Wenqiang,Yu, Daoqian,Ren, Zhongying,Li, Yi,Wang, Lingling,Li, Fuguang,Yang, Zuoren,Cheng, Yuan.

[4]Response of the enzymes to nitrogen applications in cotton fiber (Gossypium hirsutum L.) and their relationships with fiber strength. Wang YouHua,Feng Ying,Xu NaiYin,Chen BingLin,Ma RongHui,Zhou ZhiGuo,Xu NaiYin. 2009

[5]Transcriptome analysis reveals critical genes and key pathways for early cotton fiber elongation in Ligon lintless-1 mutant. Jing Sun,Liangyu Yao,Kang Liu,Youlu Yuan.

[6]Transcriptome Analysis Suggests That Chromosome Introgression Fragments from Sea Island Cotton (Gossypium barbadense) Increase Fiber Strength in Upland Cotton (Gossypium hirsutum). Quanwei Lu,Yuzhen Shi,Huang, Jinling,Yuan, Youlu,Xianghui Xiao,Pengtao Li,Juwu Gong,Wankui Gong,Aiying Liu,Haihong Shang,Junwen Li,Qun Ge,Weiwu Song,Shaoqi Li,Zhen Zhang,Md Harun or Rashid,Renhai Peng,Youlu Yuan,Jinling Huang. 2017

[7]Identification of candidate genes for fiber length quantitative trait loci through RNA-Seq and linkage and physical mapping in cotton. Xihua Li,Yu, Jiwen,Yu, Shuxun,Zhang, Jinfa,Man Wu,Guoyuan Liu,Wenfeng Pei,Honghong Zhai,Jiwen Yu,Jinfa Zhang,Shuxun Yu. 2017

[8]Using three overlapped RILs to dissect genetically clustered QTL for fiber strength on Chro.D8 in Upland cotton. Chen, Hong,Qian, Neng,Guo, Wangzhen,Zhang, Tianzhen,Song, Qingping,Li, Baocheng,Deng, Fujun,Dong, Cunguang.

[9]The phosphorylation of an actin depolymerizing factor by a calcium-dependent protein kinase regulates cotton fiber elongation. Huang, Quan-Sheng,Chen, Xun-Ji,Li, Jian-Ping,Hao, Xiao-Yan,Chen, Guo,Zumuremu,Shao, Lin,Huang, Quan-Sheng,Chen, Xun-Ji,Li, Jian-Ping,Hao, Xiao-Yan,Chen, Guo,Zumuremu,Shao, Lin.

[10]Spatial distribution of potassium uptake across the cotton plant affects fiber length. Yuan Chen,Yabing Li,Dapeng Hu,Xiang Zhang,Yujin Wen,Dehua Chen.

[11]In vitro inhibition of pigmentation and fiber development in colored cotton. Yuan, Shu-na,Waqas, Malik,Bibi, Noreen,Wang, Xue-de,Waqas, Malik,Hua, Shui-jin. 2012

[12]Study on the processing of stretch-broken ramie yarns in a cotton spinning system. Guan, Saipeng,Zhong, Hai,Yang, Jianping,Yu, Chongwen,Yu, Chongwen.

[13]Efficacy of qFL-chr1, a Quantitative Trait Locus for Fiber Length in Cotton (Gossypium spp.). Shen, Xinlian,Singh, Rippy,Lubbers, Edward L.,Chee, Peng W.,Shen, Xinlian,Cao, Zhibin,Xu, Peng,Smith, C. Wayne,Paterson, Andrew H..

作者其他论文 更多>>