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Developmental and hormonal regulation of fiber quality in two natural-colored cotton cultivars

机译:两种天然色棉花品种纤维品质的发育和激素调控

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摘要

Cotton cultivars with brown (Xiangcaimian 2),green (Wanmian 39) and white (Sumian 9) fiber were investigated to study fiber developmental characteristics of natural-colored cotton and the effect of hormones on fiber quality at different stages after anthesis.Fiber lengths of both natural-colored cottons were lower than the white-fibered control,with brown-flbered cotton longer than green.Fiber strength,micronaire and maturation of natural-colored cotton were also lower than the control.The shorter fiber of the green cultivar was due to slower growth during 10 to 30 days post-anthesis (DPA).Likewise,the lower fiber strength,micronaire and maturation of natured-colored cotton were also due to slower growth during this pivotal stage.Indole-3-acetic acid (IAA) content at 10 DPA,and abscisic acid (ABA) content at 30 to 40 DPA were lower in the fibers of the natural-colored than that of the white-flbered cotton.After applying 20 mg L-1 gibberellic acid (GA3),the IAA content at 20 DPA in the brown and green-fibered cottons increased by 51.07 and 64.33%,fiber ABA content increased by 38.96 and 24.40%,and fiber length increased by 8.13 and 13.96%,respectively.Fiber strength,micronaire and maturation were also enhanced at boll opening stage.Those results suggest that the level of endogenous hormones affect fiber quality.Application of external hormones can increase hormone content in natural-colored cotton fiber,improving its quality.
机译:研究了棕色(香菜棉2),绿色(皖棉39)和白色(苏棉9)纤维的棉花品种,以研究天然色棉在花后不同阶段的纤维发育特性以及激素对纤维品质的影响。两种天然色棉均低于白纤维对照,棕色纤维棉比绿色棉长。天然纤维的纤维强度,马克隆值和成熟度也均低于对照。绿色品种的纤维较短同样,花粉棉的纤维强度,马克隆值和成熟度较低也归因于该关键时期的生长缓慢。吲哚-3-乙酸(IAA)天然色纤维中的10 DPA含量和30至40 DPA的脱落酸(ABA)含量低于白色纤维棉。施用20 mg L-1赤霉素(GA3)后, IAA含量为20 DPA棕色和绿色纤维棉分别增加了51.07%和64.33%,纤维ABA含量分别增加了38.96和24.40%,纤维长度分别增加了8.13和13.96%。结果表明内源激素水平影响纤维质量。外源激素的应用可以增加天然色棉纤维中的激素含量,从而提高其质量。

著录项

  • 来源
    《农业科学学报(英文版)》 |2017年第8期|1720-1729|共10页
  • 作者单位

    Jiangsu Key Laboratory of Crop Genetics and Physiology,Yangzhou University,Yangzhou 225009,P.R.China;

    Plant Genome Mapping Laboratory,University of Georgia,Athens,GA 30605,USA;

    Jiangsu Key Laboratory of Crop Genetics and Physiology,Yangzhou University,Yangzhou 225009,P.R.China;

    Jiangsu Key Laboratory of Crop Genetics and Physiology,Yangzhou University,Yangzhou 225009,P.R.China;

    Jiangsu Key Laboratory of Crop Genetics and Physiology,Yangzhou University,Yangzhou 225009,P.R.China;

    Jiangsu Key Laboratory of Crop Genetics and Physiology,Yangzhou University,Yangzhou 225009,P.R.China;

    Jiangsu Key Laboratory of Crop Genetics and Physiology,Yangzhou University,Yangzhou 225009,P.R.China;

    Jiangsu Key Laboratory of Crop Genetics and Physiology,Yangzhou University,Yangzhou 225009,P.R.China;

    State Key Laboratory of Cotton Biology,Institute of Cotton Research,Chinese Academy of Agricultural Sicences,Anyang 455000,P.R.China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:24:01
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