Footitt Steven, Dietrich Daniela, Fait Aaron, Fernie Alisdair R, Holdsworth Michael J, Baker Alison, Theodoulou Frederica L
Crop Performance and Improvement Division, Rothamsted Research, Harpenden, Hertfordshire, UK.
Plant Physiol. 2007 Jul;144(3):1467-80. doi: 10.1104/pp.107.099903. Epub 2007 Apr 27.
COMATOSE (CTS) encodes a peroxisomal ATP-binding cassette transporter required not only for beta-oxidation of storage lipids during germination and establishment, but also for biosynthesis of jasmonic acid and conversion of indole butyric acid to indole acetic acid. cts mutants exhibited reduced fertilization, which was rescued by genetic complementation, but not by exogenous application of jasmonic acid or indole acetic acid. Reduced fertilization was also observed in thiolase (kat2-1) and peroxisomal acyl-Coenzyme A synthetase mutants (lacs6-1,lacs7-1), indicating a general role for beta-oxidation in fertility. Genetic analysis revealed reduced male transmission of cts alleles and both cts pollen germination and tube growth in vitro were impaired in the absence of an exogenous carbon source. Aniline blue staining of pollinated pistils demonstrated that pollen tube growth was affected only when both parents bore the cts mutation, indicating that expression of CTS in either male or female tissues was sufficient to support pollen tube growth in vivo. Accordingly, abundant peroxisomes were detected in a range of maternal tissues. Although gamma-aminobutyric acid levels were reduced in flowers of cts mutants, they were unchanged in kat2-1, suggesting that alterations in gamma-aminobutyric acid catabolism do not contribute to the reduced fertility phenotype through altered pollen tube targeting. Taken together, our data support an important role for beta-oxidation in fertility in Arabidopsis (Arabidopsis thaliana) and suggest that this pathway could play a role in the mobilization of lipids in both pollen and female tissues.
昏迷(CTS)编码一种过氧化物酶体ATP结合盒转运蛋白,它不仅在种子萌发和植株建立过程中对储存脂质的β-氧化是必需的,而且对茉莉酸的生物合成以及吲哚丁酸向吲哚乙酸的转化也是必需的。cts突变体表现出受精率降低,这种情况可通过基因互补得到挽救,但不能通过外源施加茉莉酸或吲哚乙酸来挽救。在硫解酶(kat2-1)和过氧化物酶体酰基辅酶A合成酶突变体(lacs6-1、lacs7-1)中也观察到受精率降低,这表明β-氧化在育性方面具有普遍作用。遗传分析显示cts等位基因的雄配子传递减少,并且在没有外源碳源的情况下,cts花粉的体外萌发和花粉管生长均受到损害。对授粉雌蕊进行苯胺蓝染色表明,只有当双亲都携带cts突变时,花粉管生长才会受到影响,这表明CTS在雄性或雌性组织中的表达足以支持体内花粉管的生长。因此,在一系列母体组织中检测到大量过氧化物酶体。虽然cts突变体花朵中的γ-氨基丁酸水平降低,但在kat2-1中其水平未发生变化,这表明γ-氨基丁酸分解代谢的改变并不会通过改变花粉管靶向作用导致育性降低表型。综上所述,我们的数据支持β-氧化在拟南芥育性中发挥重要作用,并表明该途径可能在花粉和雌性组织中的脂质动员中发挥作用。