Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, MI 48824.
Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, MI 48824.
Proc Natl Acad Sci U S A. 2018 Nov 6;115(45):E10768-E10777. doi: 10.1073/pnas.1811828115. Epub 2018 Oct 22.
Plant immune responses mediated by the hormone jasmonoyl-l-isoleucine (JA-Ile) are metabolically costly and often linked to reduced growth. Although it is known that JA-Ile activates defense responses by triggering the degradation of JASMONATE ZIM DOMAIN (JAZ) transcriptional repressor proteins, expansion of the gene family in vascular plants has hampered efforts to understand how this hormone impacts growth and other physiological tasks over the course of ontogeny. Here, we combined mutations within the 13-member gene family to investigate the effects of chronic JAZ deficiency on growth, defense, and reproductive output. A higher-order mutant ( decuple, ) defective in 10 genes (-, , , and ) exhibited robust resistance to insect herbivores and fungal pathogens, which was accompanied by slow vegetative growth and poor reproductive performance. Metabolic phenotypes of discerned from global transcript and protein profiling were indicative of elevated carbon partitioning to amino acid-, protein-, and endoplasmic reticulum body-based defenses controlled by the JA-Ile and ethylene branches of immunity. Resource allocation to a strong defense sink in leaves was associated with increased respiration and hallmarks of carbon starvation but no overt changes in photosynthetic rate. Depletion of the remaining JAZ repressors in further exaggerated growth stunting, nearly abolished seed production and, under extreme conditions, caused spreading necrotic lesions and tissue death. Our results demonstrate that JAZ proteins promote growth and reproductive success at least in part by preventing catastrophic metabolic effects of an unrestrained immune response.
植物激素茉莉酰基异亮氨酸(JA-Ile)介导的免疫反应代谢成本高,通常与生长减少有关。虽然已知 JA-Ile 通过触发 JASMONATE ZIM DOMAIN(JAZ)转录阻遏蛋白的降解来激活防御反应,但血管植物中基因家族的扩张阻碍了人们理解这种激素如何在个体发育过程中影响生长和其他生理任务。在这里,我们结合了 13 个成员的基因家族中的突变,研究了慢性 JAZ 缺乏对生长、防御和生殖产量的影响。一个高阶突变体(decuple,)在 10 个基因(-,-,-,-和)中缺失,表现出对昆虫食草动物和真菌病原体的强大抗性,这伴随着缓慢的营养生长和较差的生殖性能。从全局转录组和蛋白质谱中辨别出的表型表明,碳分配到由 JA-Ile 和乙烯分支免疫控制的氨基酸、蛋白质和内质网体防御中升高。在叶片中强烈防御性汇的资源分配与呼吸增加和碳饥饿的特征有关,但光合作用率没有明显变化。在中进一步耗尽剩余的 JAZ 阻遏物进一步加剧了生长迟缓,几乎完全取消了种子生产,并且在极端条件下,导致扩散性坏死病变和组织死亡。我们的结果表明,JAZ 蛋白至少部分通过防止不受控制的免疫反应的灾难性代谢影响来促进生长和生殖成功。