Li Chuanyou, Schilmiller Anthony L, Liu Guanghui, Lee Gyu In, Jayanty Sastry, Sageman Carolyn, Vrebalov Julia, Giovannoni James J, Yagi Kaori, Kobayashi Yuichi, Howe Gregg A
Department of Energy-Plant Research Laboratory, Michigan State University, East Lansing, Michigan 48824, USA.
Plant Cell. 2005 Mar;17(3):971-86. doi: 10.1105/tpc.104.029108. Epub 2005 Feb 18.
Jasmonic acid (JA) is a lipid-derived signal that regulates plant defense responses to biotic stress. Here, we report the characterization of a JA-deficient mutant of tomato (Lycopersicon esculentum) that lacks local and systemic expression of defensive proteinase inhibitors (PIs) in response to wounding. Map-based cloning studies demonstrated that this phenotype results from loss of function of an acyl-CoA oxidase (ACX1A) that catalyzes the first step in the peroxisomal beta-oxidation stage of JA biosynthesis. Recombinant ACX1A exhibited a preference for C12 and C14 straight-chain acyl-CoAs and also was active in the metabolism of C18 cyclopentanoid-CoA precursors of JA. The overall growth, development, and reproduction of acx1 plants were similar to wild-type plants. However, the mutant was compromised in its defense against tobacco hornworm (Manduca sexta) attack. Grafting experiments showed that loss of ACX1A function disrupts the production of the transmissible signal for wound-induced PI expression but does not affect the recognition of this signal in undamaged responding leaves. We conclude that ACX1A is essential for the beta-oxidation stage of JA biosynthesis and that JA or its derivatives is required both for antiherbivore resistance and the production of the systemic wound signal. These findings support a role for peroxisomes in the production of lipid-based signaling molecules that promote systemic defense responses.
茉莉酸(JA)是一种源自脂质的信号,可调节植物对生物胁迫的防御反应。在此,我们报道了番茄(Lycopersicon esculentum)的一个茉莉酸缺陷型突变体的特征,该突变体在受到创伤时缺乏防御性蛋白酶抑制剂(PIs)的局部和系统表达。基于图谱的克隆研究表明,这种表型是由于酰基辅酶A氧化酶(ACX1A)功能丧失所致,该酶催化茉莉酸生物合成过氧化物酶体β-氧化阶段的第一步。重组ACX1A对C12和C14直链酰基辅酶A表现出偏好,并且对茉莉酸的C18环戊烷类辅酶A前体的代谢也有活性。acx1植株的整体生长、发育和繁殖与野生型植株相似。然而,该突变体在抵御烟草天蛾(Manduca sexta)攻击方面存在缺陷。嫁接实验表明,ACX1A功能的丧失会破坏伤口诱导的PI表达的可传递信号的产生,但不影响未受损反应叶片中该信号的识别。我们得出结论,ACX1A对于茉莉酸生物合成的β-氧化阶段至关重要,并且茉莉酸或其衍生物对于抗食草动物抗性和系统伤口信号的产生都是必需的。这些发现支持了过氧化物酶体在促进系统防御反应的基于脂质的信号分子产生中的作用。