Friedrich-Schiller-University, Jena, Germany.
Mol Plant Microbe Interact. 2012 Sep;25(9):1186-97. doi: 10.1094/MPMI-03-12-0071-R.
The growth-promoting and root-colonizing endophyte Piriformospora indica induces camalexin and the expression of CYP79B2, CYP79B3, CYP71A13, PAD3, and WRKY33 required for the synthesis of indole-3-acetaldoxime (IAOx)-derived compounds in the roots of Arabidopsis seedlings. Upregulation of the mRNA levels by P. indica requires cytoplasmic calcium elevation and mitogen-activated protein kinase 3 but not root-hair-deficient 2, radical oxygen production, or the 3-phosphoinositide-dependent kinase 1/oxidative signal-inducible 1 pathway. Because P. indica-mediated growth promotion is impaired in cyp79B2 cyp79B3 seedlings, while pad3 seedlings-which do not accumulate camalexin-still respond to the fungus, IAOx-derived compounds other than camalexin (e.g., indole glucosinolates) are required during early phases of the beneficial interaction. The roots of cyp79B2 cyp79B3 seedlings are more colonized than wild-type roots, and upregulation of the defense genes pathogenesis-related (PR)-1, PR-3, PDF1.2, phenylalanine ammonia lyase, and germin indicates that the mutant responds to the lack of IAOx-derived compounds by activating other defense processes. After 6 weeks on soil, defense genes are no longer upregulated in wild-type, cyp79B2 cyp79B3, and pad3 roots. This results in uncontrolled fungal growth in the mutant roots and reduced performance of the mutants. We propose that a long-term harmony between the two symbionts requires restriction of root colonization by IAOx-derived compounds.
促生和定殖根内真菌梨形侧耳(Piriformospora indica)诱导拟南芥幼苗根部合成吲哚-3-乙酰胺(IAOx)衍生化合物所需的水杨酸诱导蛋白(camalexin)和 CYP79B2、CYP79B3、CYP71A13、PAD3 和 WRKY33 的表达。梨形侧耳诱导的 mRNA 水平上调需要细胞质钙离子升高和丝裂原活化蛋白激酶 3,但不需要根毛缺陷 2、活性氧产生或 3-磷酸肌醇依赖性激酶 1/氧化信号诱导 1 途径。由于 cyp79B2 cyp79B3 幼苗中梨形侧耳介导的生长促进作用受损,而 pad3 幼苗(不积累水杨酸诱导蛋白)仍对真菌有反应,因此在有益相互作用的早期阶段,IAOx 衍生化合物(如吲哚葡萄糖苷)除了水杨酸诱导蛋白(如吲哚葡萄糖苷)外,是必需的。cyp79B2 cyp79B3 幼苗的根部比野生型根部更容易被定殖,防御基因病程相关(PR)-1、PR-3、PDF1.2、苯丙氨酸解氨酶和萌发的上调表明,突变体通过激活其他防御过程来响应 IAOx 衍生化合物的缺乏。在土壤中培养 6 周后,野生型、cyp79B2 cyp79B3 和 pad3 根中的防御基因不再上调。这导致突变体根部的真菌生长不受控制,突变体的性能降低。我们提出,这两个共生体之间的长期和谐需要限制 IAOx 衍生化合物对根部的定殖。