首页> 美国卫生研究院文献>Antioxidants >d-Cysteine-Induced Rapid Root Abscission in the Water Fern Azolla Pinnata: Implications for the Linkage between d-Amino Acid and Reactive Sulfur Species (RSS) in Plant Environmental Responses
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d-Cysteine-Induced Rapid Root Abscission in the Water Fern Azolla Pinnata: Implications for the Linkage between d-Amino Acid and Reactive Sulfur Species (RSS) in Plant Environmental Responses

机译:d-半胱氨酸诱导的水蕨Azolla Pinnata的快速根脱落:d-氨基酸和反应性硫物种(RSS)之间的联系在植物环境响应中的含义。

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摘要

Reactive Oxygen Species (ROS) and Reactive Nitrogen Species (RNS) have been proposed as universal signaling molecules in plant stress responses. There are a growing number of studies suggesting that hydrogen sulfide (H2S) or Reactive Sulfur Species (RSS) are also involved in plant abiotic as well as biotic stress responses. However, it is still a matter of debate as to how plants utilize those RSS in their signaling cascades. Here, we demonstrate that d-cysteine is a novel candidate for bridging our gap in understanding. In the genus of the tiny water-floating fern Azolla, a rapid root abscission occurs in response to a wide variety of environmental stimuli as well as chemical inducers. We tested five H2S chemical donors, Na2S, GYY4137, 5a, 8l, and 8o, and found that 5a showed a significant abscission activity. Root abscission also occurred with the polysulfides Na2S2, Na2S3, and Na2S4. Rapid root abscission comparable to other known chemical inducers was observed in the presence of d-cysteine, whereas l-cysteine showed no effect. We suggest that d-cysteine is a physiologically relevant substrate to induce root abscission in the water fern Azolla.
机译:已经提出了活性氧(ROS)和活性氮(RNS)作为植物胁迫反应中的通用信号分子。越来越多的研究表明,硫化氢(H2S)或反应性硫物种(RSS)也参与植物非生物和生物胁迫响应。但是,关于植物如何在其信号级联中利用这些RSS仍是一个争论的问题。在这里,我们证明d-半胱氨酸是弥合我们的理解差距的新型候选人。在微小的水漂浮蕨类植物Azolla的属中,对各种各样的环境刺激物和化学诱导物产生了快速的根脱落。我们测试了五个H2S化学供体Na2S,GYY4137、5a,8l和8o,发现5a具有明显的脱落活性。多硫化物Na 2 S 2,Na 2 S 3和Na 2 S 4也发生了根脱落。在d-半胱氨酸存在的情况下,观察到与其他已知化学诱导剂可比的快速根脱落,而l-半胱氨酸则无作用。我们建议d-半胱氨酸是生理相关的底物,在水蕨Azolla中引起根脱落。

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