首页> 外文期刊>Journal of Plant Growth Regulation >Trichoderma Modulates Stomatal Aperture and Leaf Transpiration Through an Abscisic Acid-Dependent Mechanism in Arabidopsis
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Trichoderma Modulates Stomatal Aperture and Leaf Transpiration Through an Abscisic Acid-Dependent Mechanism in Arabidopsis

机译:木霉通过拟南芥中的脱落酸依赖性机制调节气孔和叶片蒸腾。

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摘要

Trichoderma species are widespread phytostimulant fungi that act through biocontrol of root pathogens, modulation of root architecture, and improving plant adaptation to biotic and abiotic stress. With the major challenge to better understand the contribution of Trichoderma symbionts to plant adaptation to climate changes and confer stress tolerance, we investigated the potential of Trichoderma virens and Trichoderma atroviride in modulating stomatal aperture and plant transpiration. Arabidopsis wild-type (WT) seedlings and ABA-insensitive mutants, abi1-1 and abi2-1, were co-cultivated with either T. virens or T. atroviride, and stomatal aperture and water loss were determined in leaves. Arabidopsis WT seedlings inoculated with these fungal species showed both decreased stomatal aperture and reduced water loss when compared with uninoculated seedlings. This effect was absent in abi1-1 and abi2-1 mutants. T. virens and T. atroviride induced the abscisic acid (ABA) inducible marker abi4:uidA and produced ABA under standard or saline growth conditions. These results show a novel facet of Trichoderma-produced metabolites in stomatic aperture and water-use efficiency of plants.
机译:木霉属菌是广泛的植物刺激性真菌,通过对根病原体的生物控制,根结构的调节以及改善植物对生物和非生物胁迫的适应性发挥作用。为了更好地了解木霉共生菌对植物适应气候变化和赋予胁迫耐受性的主要挑战,我们研究了维氏木霉和阿特木霉在调节气孔孔径和植物蒸腾作用方面的潜力。将拟南芥野生型(WT)幼苗和ABA不敏感突变体abi1-1和abi2-1与维尔纽斯猪笼草或阿特罗韦德猪笼草共培养,并测定叶片的气孔孔径和水分流失。与未接种的幼苗相比,接种了这些真菌物种的拟南芥野生苗显示出降低的气孔孔径和减少的水分流失。 abi1-1和abi2-1突变体中没有这种作用。 T. virens和T. atroviride诱导脱落酸(ABA)诱导型标记abi4:uidA,并在标准或盐水生长条件下产生ABA。这些结果显示了木霉属植物产生的代谢产物在气孔和植物水分利用效率方面的新颖性。

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