首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Chitosan-induced ethylene-independent resistance does not reduce crop yield in bean.
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Chitosan-induced ethylene-independent resistance does not reduce crop yield in bean.

机译:壳聚糖诱导的乙烯非依赖性抗性不会降低豆类作物的产量。

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Some unexplored mechanisms of chitosan (CHT)-induced resistance have been investigated by using the pathosystem Tobacco necrosis virus (TNV) - Phaseolus vulgaris L. In particular, it was shown that CHT does not exert a direct antiviral activity and that stomatal uptake of the compound is determinant for the induction of plant defence mechanisms against TNV. By a chemical approach, using ethylene inhibitors or donors, it was also demonstrated that these defence mechanisms do not involve ethylene pathway. Conversely, the infection with TNV stimulated the production of this hormone in leaf tissues, associated with the development of necrotic lesions. Finally, in open field trials, CHT treatments did not incur fitness costs in bean plants, probably due to the activation of priming mechanisms as opposed to the direct resistance induction.
机译:利用病理系统烟草坏死病毒(TNV)-菜豆(Phaseolus vulgaris L)研究了壳聚糖(CHT)诱导的抗药性的一些尚未探索的机制。特别是,表明CHT不会直接发挥抗病毒活性,并且该化合物的气孔吸收是诱导针对TNV的植物防御机制的决定性因素。通过化学方法,使用乙烯抑制剂或供体,也证明这些防御机制不涉及乙烯途径。相反,TNV的感染刺激了叶片组织中这种激素的产生,与坏死病变的发展有关。最后,在露天试验中,CHT处理不会在豆类植物中产生适应性费用,这可能是由于引发机制的激活而不是直接的抗药性诱导。

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