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拟南芥叶片光合性能和代谢物含量对植物伯克霍尔德氏菌PsJN的时空响应

Spatio-temporal Responses of Arabidopsis Leaves in Photosynthetic Performance and Metabolite Contents to Burkholderia phytofirmans PsJN.

作者信息

Su Fan, Gilard Françoise, Guérard Florence, Citerne Sylvie, Clément Christophe, Vaillant-Gaveau Nathalie, Dhondt-Cordelier Sandrine

机构信息

Unité de Recherche Vignes et Vins de Champagne - EA 4707, SFR Condorcet FR CNRS 3417, UFR Sciences Exactes et Naturelles, Université de Reims Champagne-Ardenne Reims, France.

UMR CNRS-INRA 9213, Saclay Plant Sciences, Institute of Plant Sciences Paris-Saclay IPS2 (Bâtiment 630), Université Paris-Sud Orsay, France.

出版信息

Front Plant Sci. 2016 Mar 30;7:403. doi: 10.3389/fpls.2016.00403. eCollection 2016.

Abstract

A valuable strategy to improve crop yield consists in the use of plant growth-promoting rhizobacteria (PGPRs). However, the influence of PGPR colonization on plant physiology is largely unknown. PGPR Burkholderia phytofirmans strain PsJN (Bp PsJN) colonized only Arabidopsis thaliana roots after seed or soil inoculation. Foliar bacteria were detected only after leaf infiltration. Since, different bacterial times of presence and/or locations in host plant could lead to different plant physiological responses, photosynthesis, and metabolite profiles in A. thaliana leaves were thus investigated following leaf, root, or seed inoculation with Bp PsJN. Only Bp PsJN leaf colonization transiently decreased cyclic electron transport and effective quantum yield of photosystem I (PSI), and prevented a decrease in net photosynthesis and stomatal opening compared to the corresponding control. Metabolomic analysis revealed that soluble sugars, amino acids or their derivatives accumulated differently in all Bp PsJN-inoculated plants. Octanoic acid accumulated only in case of inoculated plants. Modifications in vitamin, organic acid such as tricarboxylic acid intermediates, and hormone amounts were dependent on bacterial time of presence and location. Additionally, a larger array of amino acids and hormones (auxin, cytokinin, abscisic acid) were modified by seed inoculation with Bp PsJN. Our work thereby provides evidence that relative short-term inoculation with Bp PsJN altered physiological status of A. thaliana leaves, whereas long-term bacterization triggered modifications on a larger set of metabolites. Our data highlighted the changes displayed during this plant-microbe interaction to trigger physiological and metabolic responses that could explain the increase in plant growth or stress tolerance conferred by the presence of Bp PsJN.

摘要

提高作物产量的一个有效策略是使用促植物生长根际细菌(PGPRs)。然而,PGPR定殖对植物生理的影响在很大程度上尚不清楚。PGPR伯克霍尔德氏菌植物固氮菌株PsJN(Bp PsJN)在种子或土壤接种后仅定殖于拟南芥根部。仅在叶片浸润后才检测到叶面细菌。由于宿主植物中细菌存在的时间和/或位置不同可能导致不同的植物生理反应,因此在拟南芥叶片接种Bp PsJN后,对其光合作用和代谢物谱进行了研究,接种方式分别为叶片、根部或种子接种。与相应对照相比,只有Bp PsJN叶片定殖会短暂降低循环电子传递和光系统I(PSI)的有效量子产率,并防止净光合作用和气孔开放的降低。代谢组学分析表明,在所有接种Bp PsJN的植物中,可溶性糖、氨基酸或其衍生物的积累情况不同。辛酸仅在接种植物中积累。维生素、有机酸(如三羧酸中间体)和激素含量的变化取决于细菌存在的时间和位置。此外,种子接种Bp PsJN会使更多种类的氨基酸和激素(生长素、细胞分裂素、脱落酸)发生改变。我们的研究因此提供了证据,表明相对短期接种Bp PsJN会改变拟南芥叶片的生理状态,而长期细菌处理会引发更多代谢物的变化。我们的数据突出了这种植物-微生物相互作用过程中所显示的变化,以触发生理和代谢反应,这可以解释Bp PsJN的存在所赋予的植物生长增加或胁迫耐受性增强的现象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e50a/4811906/240070473839/fpls-07-00403-g002.jpg

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