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Overexpression of a Potato Sucrose Synthase Gene in Cotton Accelerates Leaf Expansion, Reduces Seed Abortion, and Enhancesn Fiber Production

机译:棉花中马铃薯蔗糖合酶基因的过表达加速叶片扩张,减少种子流产,并提高纤维产量

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摘要

Sucrose synthase (Sus) is a key enzyme in the breakdown of sucrose and is considered a biochemical marker for sink strength, especially in crop species, based on mutational and gene suppression studies. It remains elusive, however, whether, or to what extent, increase in Sus activity may enhance sink development. We aimed to address this question by expressing a potato Sus gene in cotton where Sus expression has been previously shown to be critical for normal seed and fiber development. Segregation analyses at T1 generation followed by studies in homozygous progeny lines revealed that increased Sus activity in cotton (1) enhanced leaf expansion with the effect evident from young leaves emerging from shoot apex; (2) improved early seed development, which reduced seed abortion, hence enhanced seed set, and (3) promoted fiber elongation. In young leaves of Sus overexpressing lines, fructose concentrations were significantly increased whereas, in elongating fibers, both fructose and glucose levels were increased. Since hexoses contribute little to osmolality in leaves, in contrast to developing fibers, it is concluded that high Sus activity promotes leaf development independently of osmotic regulation, probably through sugar signaling. The analyses also showed that doubling the Sus activity in 0-d cotton seeds increased their fresh weight by about 30%. However, further increase in Sus activity did not lead to any further increase in seed weight, indicating an upper limit for the Sus overexpression effect. Finally, based on the observed additive effect on fiber yield from increased fiber length and seed number, a new strategy is proposed to increase cotton fiber yield by improving seed development as a whole, rather than solely focusing on manipulating fiber growth.
机译:蔗糖合酶(Sus)是蔗糖分解的关键酶,根据突变和基因抑制研究,蔗糖合酶被认为是特别是在作物物种中库沉强度的生化标记。但是,是否持续增加Sus活性或在多大程度上可以促进水槽发育尚不清楚。我们旨在通过在棉花中表达马铃薯Sus基因来解决这个问题,以前已证明Sus表达对于正常种子和纤维发育至关重要。在T1代进行的分离分析,然后进行纯合子代研究,结果表明,棉花中Sus活性的增强(1)增强了叶片的扩张,其效果从芽尖出现的幼叶中明显可见; (2)改善了种子的早期发育,从而减少了种子流产,从而增强了种子结实,(3)促进了纤维伸长。在Sus过表达品系的幼叶中,果糖浓度显着增加,而在伸长纤维中,果糖和葡萄糖水平均增加。与正在发育的纤维相反,由于己糖对叶片的重量克分子渗透压浓度几乎没有贡献,因此可以得出结论,高Sus活性可独立于渗透调节,促进叶片发育,可能是通过糖信号传导。分析还表明,将0-d棉籽中的Sus活性提高一倍,可使鲜重增加约30%。但是,Sus活性的进一步增加并未导致种子重量进一步增加,这表明Sus过表达作用的上限。最后,基于观察到的增加的纤维长度和种子数量对纤维产量的累加效应,提出了一种通过整体改善种子发育而不是仅仅专注于控制纤维生长来增加棉纤维产量的新策略。

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  • 来源
    《Molecular Plant》 |2012年第2期|p.430-441|共12页
  • 作者

    Yong-Ling Ruan;

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    To whom correspondence should be addressed. E-mail;

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