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多育隔担耳通过抑制乙烯信号传导促进渐狭叶烟草的生长和健康。

Sebacina vermifera promotes the growth and fitness of Nicotiana attenuata by inhibiting ethylene signaling.

作者信息

Barazani Oz, von Dahl Caroline C, Baldwin Ian T

机构信息

Department of Molecular Ecology, Max Planck Institute for Chemical Ecology, Beutenberg Campus, 07745 Jena, Germany.

出版信息

Plant Physiol. 2007 Jun;144(2):1223-32. doi: 10.1104/pp.107.097543. Epub 2007 Apr 6.

Abstract

Sebacina vermifera, a growth-promoting endophytic fungus, significantly increases Nicotiana attenuata's growth but impairs both its herbivore resistance and its accumulation of the costly, jasmonic acid (JA)-regulated defense protein, trypsin proteinase inhibitor (TPI). To determine if the fungi's growth-promoting effects can be attributed to lower TPI-related defense costs, we inoculated transformed N. attenuata plants silenced in their ability to synthesize JA, JA-isoleucine, and TPI by antisense (lipoxygenase 3 [as-lox3] and Thr deaminase [as-td]) and inverted repeat (ir-tpi) expression, and found that inoculation promoted plant growth as in untransformed wild-type plants. Moreover, herbivore-elicited increases in JA and JA-isoleucine concentrations did not differ between inoculated and uninoculated wild-type plants. However, inoculation significantly reduced the morphological effect of 1-aminocyclopropane-1-carboxylic acid on wild-type seedlings in a triple response assay, suggesting that ethylene signaling was impaired. Furthermore, S. vermifera failed to promote the growth of N. attenuata plants transformed to silence ethylene production (1-aminocyclopropane-1-carboxylic acid oxidase [ir-aco]). Inoculating wild-type plants with S. vermifera decreased the ethylene burst elicited by applying Manduca sexta oral secretions to mechanical wounds. Accordingly, oral secretion-elicited transcript levels of the ethylene synthesis genes NaACS3, NaACO1, and NaACO3 in inoculated plants were significantly lower compared to these levels in uninoculated wild-type plants. Inoculation accelerated germination in wild-type seeds; however, uninoculated wild-type seeds germinated as rapidly as inoculated seeds in the presence of the ethylene scrubber KMnO(4). In contrast, neither inoculation nor KMnO(4) exposure influenced the germination of ir-aco seeds. We conclude that S. vermifera increases plant growth by impairing ethylene production independently of JA signaling and TPI production.

摘要

蠕虫被毛孢是一种促进生长的内生真菌,它能显著促进弱光烟草的生长,但会削弱其对草食动物的抗性以及昂贵的、茉莉酸(JA)调节的防御蛋白——胰蛋白酶蛋白酶抑制剂(TPI)的积累。为了确定真菌促进生长的作用是否可归因于与TPI相关的防御成本降低,我们对接种了通过反义(脂氧合酶3 [as-lox3]和苏氨酸脱氨酶[as-td])和反向重复(ir-tpi)表达而沉默了合成JA、茉莉酸异亮氨酸和TPI能力的转化弱光烟草植株进行了接种,发现接种促进了植株生长,就如同在未转化的野生型植株中一样。此外,接种和未接种的野生型植株在草食动物诱导下JA和茉莉酸异亮氨酸浓度的增加并无差异。然而,在三重反应试验中,接种显著降低了1-氨基环丙烷-1-羧酸对野生型幼苗的形态学影响,这表明乙烯信号传导受到了损害。此外,蠕虫被毛孢未能促进转化为沉默乙烯产生(1-氨基环丙烷-1-羧酸氧化酶[ir-aco])的弱光烟草植株的生长。用蠕虫被毛孢接种野生型植株会降低通过向机械伤口施加烟草天蛾口腔分泌物所引发的乙烯爆发。相应地,与未接种的野生型植株相比,接种植株中由口腔分泌物诱导的乙烯合成基因NaACS3、NaACO1和NaACO3的转录水平显著更低。接种加速了野生型种子的萌发;然而,在存在乙烯清除剂高锰酸钾的情况下,未接种的野生型种子与接种种子一样迅速萌发。相比之下,接种和暴露于高锰酸钾均未影响ir-aco种子的萌发。我们得出结论,蠕虫被毛孢通过独立于JA信号传导和TPI产生来损害乙烯产生,从而增加植株生长。

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