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首页> 外文期刊>Industrial Crops and Products >Effects of plant growth regulator treatments on stem vascular tissue development in linseed (Linum usitatissimum L.).
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Effects of plant growth regulator treatments on stem vascular tissue development in linseed (Linum usitatissimum L.).

机译:植物生长调节剂处理对亚麻籽( Linum usitatissimum L.)干血管组织发育的影响。

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Linseed (Linum usitatissimum L.) is a widely grown source of industrial and edible oil. Other varieties of the same species (flax) are cultivated for the long, strong bast fibres of their stems. The bast fibres of linseed generally go unused, although there is growing interest in developing linseed into a dual-purpose flax from which both seed and fibre could be utilized. Towards this objective, an improved understanding is required of the role of plant growth regulators in stem and fibre development in linseed. We have tested the effects of applying varying combinations of gibberellic acid (GA3), the auxin indole-3-acetic acid, and a GA biosynthesis inhibitor (paclobutrazol) to an elite linseed variety (CDC Bethune). Results showed that GA stimulated stem elongation, stem expansion and the proliferation, expansion, elongation and cell wall thickening of xylem fibres. The impact of GA on phloem tissues was less apparent, although GA had a positive effect on the number of bast fibres observed in stem transverse section, and GA3 application in combination with IAA increased the thickness of bast fibre secondary walls nearly two-fold. Other than the bast fibre cell walls, IAA treatments (alone or in combination with GA3) did not affect most aspects of linseed stem development, suggesting that the observed effects of GA were not mediated by cross-talk with IAA. The relationships defined here between GA, stem architecture, and bast fibre properties in linseed provide a useful framework for manipulation of fibre properties through breeding, biotechnology, and field treatments.
机译:亚麻籽( Linum usitatissimum L.)是广泛种植的工业和食用油来源。种植了相同品种(亚麻)的其他品种,以使茎的韧皮纤维长而结实。亚麻籽的韧皮纤维通常不使用,尽管人们越来越有兴趣将亚麻籽开发为一种既可以利用种子又可以利用纤维的两用亚麻。为了实现这一目标,需要进一步了解植物生长调节剂在亚麻籽茎和纤维发育中的作用。我们测试了将赤霉素(GA 3 ),生长素吲哚-3-乙酸和GA生物合成抑制剂(paclobutrazol)的不同组合应用于优良亚麻籽品种(CDC Bethune)的效果。结果表明,GA刺激木质部纤维的茎伸长,茎伸长以及木质部纤维的增殖,伸长,伸长和细胞壁增厚。尽管GA对茎横断面上观察到的韧皮纤维数量有积极影响,并且GA 3 与IAA的组合使用增加了韧皮纤维的厚度,但GA对韧皮组织的影响并不明显。次要壁几乎两倍。除韧皮纤维细胞壁外,IAA处理(单独或与GA 3 联合使用)不影响亚麻籽茎发育的大多数方面,这表明观察到的GA的作用不受串扰的介导。与IAA。亚麻籽中GA,茎结构和韧皮纤维特性之间定义的关系为通过育种,生物技术和田间处理操纵纤维特性提供了有用的框架。

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