Mitra Sirsha, Baldwin Ian T
Department of Molecular Ecology, Max Planck Institute for Chemical Ecology, Hans-Knöll-Straße 8, 07745, Jena, Germany.
New Phytol. 2014 Mar;201(4):1385-1395. doi: 10.1111/nph.12591. Epub 2013 Nov 11.
• RuBPCase activase (RCA), an abundant photosynthetic protein, is strongly down-regulated in response to Manduca sexta's oral secretion (OS) in Nicotiana attenuata. RCA-silenced plants are impaired not only in photosynthetic capacity and growth, but also in jasmonic acid-isoleucine (JA-Ile) signaling, and herbivore resistance mediated by JA-Ile-dependent defense traits. These responses are consistent with a resource-based growth-defense trade-off. • As JA + Ile supplementation of OS restored wild-type (WT) levels of JA-Ile, defenses and resistance to M. sexta, but OS supplemented individually with JA or Ile did not, the JA-Ile deficiency of RCA-silenced plants could not be attributed to lower JA or Ile pools or JAR4/6 conjugating activity. Similar levels of JA-Ile derivatives after OS elicitation indicated unaltered JA-Ile turnover, and lower levels of other JA conjugates ruled out competition from other conjugation reactions. • RCA-silenced plants accumulated more methyl jasmonate (MeJA) after OS elicitation, which corresponded to increased jasmonate methyltransferase (JMT) activity. RCA silencing phenocopies JMT overexpression, wherein elevated JMT activity redirects OS-elicited JA flux towards inactive MeJA, creating a JA sink which depletes JA-Ile and its associated defense responses. • Hence, RCA plays an additional non-photosynthetic role in attenuating JA-mediated defenses and their associated costs, potentially allowing plants to anticipate resource-based constraints on growth before they actually occur.
• 核酮糖-1,5-二磷酸羧化酶/加氧酶激活酶(RCA)是一种丰富的光合蛋白,在烟草中,它会因烟草天蛾的口腔分泌物(OS)而强烈下调。RCA沉默的植株不仅光合能力和生长受到损害,茉莉酸异亮氨酸(JA-Ile)信号传导以及由JA-Ile依赖性防御性状介导的抗虫性也受到损害。这些反应与基于资源的生长-防御权衡一致。
• 由于用JA + Ile补充OS可恢复野生型(WT)的JA-Ile水平、防御能力和对烟草天蛾的抗性,但单独用JA或Ile补充OS则不能,因此RCA沉默植株的JA-Ile缺乏不能归因于JA或Ile库较低或JAR4/6缀合活性。OS诱导后JA-Ile衍生物水平相似表明JA-Ile周转未改变,而其他JA缀合物水平较低排除了来自其他缀合反应的竞争。
• OS诱导后,RCA沉默的植株积累了更多的茉莉酸甲酯(MeJA),这与茉莉酸甲酯转移酶(JMT)活性增加相对应。RCA沉默模拟了JMT过表达,其中升高的JMT活性将OS诱导的JA通量重定向到无活性的MeJA,形成一个JA汇,耗尽JA-Ile及其相关的防御反应。
• 因此,RCA在减弱JA介导的防御及其相关成本方面发挥了额外的非光合作用,这可能使植物在实际发生基于资源的生长限制之前就能预见到这些限制。