Department of Molecular Genetics and Cell Biology, The University of Chicago, Chicago, IL, USA.
Oak Ridge National Laboratory, Oak Ridge, TN, USA.
J Exp Bot. 2021 Mar 29;72(7):2710-2726. doi: 10.1093/jxb/eraa609.
The Arabidopsis plastid-localized ALD1 protein acts in the lysine catabolic pathway that produces infection-induced pipecolic acid (Pip), Pip derivatives, and basal non-Pip metabolite(s). ALD1 is indispensable for disease resistance associated with Pseudomonas syringae infections of naïve plants as well as those previously immunized by a local infection, a phenomenon called systemic acquired resistance (SAR). Pseudomonas syringae is known to associate with mesophyll as well as epidermal cells. To probe the importance of epidermal cells in conferring bacterial disease resistance, we studied plants in which ALD1 was only detectable in the epidermal cells of specific leaves. Local disease resistance and many features of SAR were restored when ALD1 preferentially accumulated in the epidermal plastids at immunization sites. Interestingly, SAR restoration occurred without appreciable accumulation of Pip or known Pip derivatives in secondary distal leaves. Our findings establish that ALD1 has a non-autonomous effect on pathogen growth and defense activation. We propose that ALD1 is sufficient in the epidermis of the immunized leaves to activate SAR, but basal ALD1 and possibly a non-Pip metabolite(s) are also needed at all infection sites to fully suppress bacterial growth. Thus, epidermal plastids that contain ALD1 play a key role in local and whole-plant immune signaling.
拟南芥质体定位的 ALD1 蛋白在赖氨酸分解代谢途径中起作用,该途径产生感染诱导的哌啶酸(Pip)、Pip 衍生物和基础非-Pip 代谢物(s)。ALD1 对于与 Pseudomonas syringae 感染相关的抗病性是必不可少的,无论是对未感染植物的感染,还是对先前通过局部感染免疫的植物的感染,这种现象称为系统获得抗性(SAR)。众所周知,Pseudomonas syringae 与叶肉细胞以及表皮细胞有关。为了探究表皮细胞在赋予细菌抗病性方面的重要性,我们研究了仅在特定叶片的表皮细胞中可检测到 ALD1 的植物。当 ALD1 在免疫部位优先积累在表皮质体中时,局部抗病性和 SAR 的许多特征都得到了恢复。有趣的是,SAR 的恢复并没有导致次级远端叶片中 Pip 或已知的 Pip 衍生物的明显积累。我们的发现确立了 ALD1 对病原体生长和防御激活具有非自主效应。我们提出,ALD1 在免疫叶片的表皮中足以激活 SAR,但在所有感染部位还需要基础 ALD1 和可能的非-Pip 代谢物(s)来完全抑制细菌生长。因此,含有 ALD1 的表皮质体在局部和全株免疫信号转导中发挥关键作用。