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The Octadecanoid Pathway but Not COI1 Is Required for Nectar Secretion in Arabidopsis thaliana

机译:拟南芥花蜜分泌需要十八烷通路而不是COI1。

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摘要

Over 75% of crop species produce nectar and are dependent on pollinators to achieve maximum seed set, yet little is known about the mechanisms regulating nectar secretion. The phytohormone jasmonic acid (JA) is recognized to be involved in several plant processes including development and defense. JA was also recently shown to positively influence nectar secretion in both floral and extrafloral nectaries. For example, endogenous JA levels peak in flowers just prior to nectar secretion, but the details of how JA regulates nectar secretion have yet to be elucidated. We have found that the octadecanoid pathway does indeed play a role in the production and regulation of floral nectar in Arabidopsis. Null alleles for several JA biosynthesis and response genes had significantly reduced amounts of nectar, as well as altered expression of genes known to be involved in nectar production. We additionally identified crosstalk between the JA and auxin response pathways in nectaries. For example, the nectar-less JA synthesis mutant aos-2 showed no auxin response in nectaries, but both nectar production and the auxin response were restored upon exogenous JA and auxin treatment. Conversely, coi1-1, a JA-Ile-insensitive receptor mutant, displayed no auxin response in nectaries under any circumstance, even in older flowers that produced nectar. Surprisingly, opr3-1, a mutant for 12-oxophytodienoate reductase 3 [an enzyme further down the JA biosynthetic pathway that reduces 12-oxo phytodienoic acid (OPDA)], produced no nectar in newly opened flowers, but did secrete nectar in older flowers. Furthermore, a similar phenotype was observed in coi1-1. Cumulatively, these observations strongly suggest an indispensable role for an octadecanoic acid- and auxin-dependent, but JA- and COI1-dispensible, pathway in regulating nectar production in Arabidopsis.
机译:超过75%的农作物种产生花蜜,并依靠传粉媒介达到最大结实率,但对调节花蜜分泌的机制知之甚少。植物激素茉莉酸(JA)被认为参与了几种植物过程,包括发育和防御。最近还显示JA可以对花蜜和花蜜中的花蜜分泌产生积极影响。例如,内源性JA水平在花蜜分泌之前就已经达到峰值,但是关于JA如何调节花蜜分泌的细节尚未阐明。我们已经发现十八烷类途径确实在拟南芥中在花蜜的产生和调节中起作用。几个JA生物合成和响应基因的无效等位基因显着减少了花蜜的量,并改变了已知参与花蜜生产的基因的表达。我们还发现了JA和油桃中的生长素反应途径之间的串扰。例如,无花蜜的JA合成突变体aos-2在蜜腺中没有显示出生长素反应,但是在外源JA和生长素处理后,花蜜的产生和生长素的反应都得以恢复。相反,对JA-Ile不敏感的受体突变体coi1-1在任何情况下,即使在产生花蜜的老花中,在花蜜中都没有显示出生长素反应。令人惊讶的是,opr3-1是12-氧代苯二酸还原酶3的突变体[在JA生物合成途径中进一步降低12-氧代植物二烯酸(OPDA)的一种酶],在新开的花中没有产生花蜜,但在老花中却分泌了花蜜。 。此外,在coi1-1中观察到相似的表型。累积地,这些观察结果强烈表明,在调节拟南芥中,十八碳酸和植物生长素依赖性的,但JA-和COI1依赖性的途径必不可少。

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