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细胞层特异性赤霉素在结瘤和根系发育中的作用。

Cell-layer specific roles for gibberellins in nodulation and root development.

机构信息

Discipline of Biological Sciences, School of Natural Sciences, University of Tasmania, Private Bag 55, Hobart, TAS, 7001, Australia.

出版信息

New Phytol. 2024 Apr;242(2):626-640. doi: 10.1111/nph.19623. Epub 2024 Feb 23.

Abstract

Gibberellins (GA) have a profound influence on the formation of lateral root organs. However, the precise role this hormone plays in the cell-specific events during lateral root formation, rhizobial infection and nodule organogenesis, including interactions with auxin and cytokinin (CK), is not clear. We performed epidermal- and endodermal-specific complementation of the severely GA-deficient na pea (Pisum sativum) mutant with Agrobacterium rhizogenes. Gibberellin mutants were used to examine the spatial expression pattern of CK (TCSn)- and auxin (DR5)-responsive promoters and hormone levels. We found that GA produced in the endodermis promote lateral root and nodule organogenesis and can induce a mobile signal(s) that suppresses rhizobial infection. By contrast, epidermal-derived GA suppress infection but have little influence on root or nodule development. GA suppress the CK-responsive TCSn promoter in the cortex and are required for normal auxin activation during nodule primordia formation. Our findings indicate that GA regulate the checkpoints between infection thread (IT) penetration of the cortex and invasion of nodule primordial cells and promote the subsequent progression of nodule development. It appears that GA limit the progression and branching of IT in the cortex by restricting CK response and activate auxin response to promote nodule primordia development.

摘要

赤霉素(GA)对侧根器官的形成有深远影响。然而,这种激素在侧根形成、根瘤菌感染和根瘤器官发生的细胞特异性事件中的确切作用,包括与生长素和细胞分裂素(CK)的相互作用,尚不清楚。我们利用发根农杆菌对严重缺乏 GA 的豌豆突变体 na 进行了表皮和内皮层的特异性互补。利用赤霉素突变体来检测 CK(TCSn)和生长素(DR5)响应启动子的空间表达模式和激素水平。我们发现,内皮层产生的 GA 促进侧根和根瘤器官的发生,并能诱导抑制根瘤菌感染的移动信号。相比之下,表皮衍生的 GA 抑制感染,但对根或根瘤发育的影响很小。GA 抑制皮层中 CK 响应的 TCSn 启动子,并且在根瘤原基形成过程中对正常生长素激活是必需的。我们的研究结果表明,GA 调节皮层中侵染线(IT)穿透和根瘤原细胞侵染的检查点,并促进随后的根瘤发育进程。GA 通过限制 CK 反应来限制 IT 在皮层中的进展和分支,并激活生长素反应来促进根瘤原基的发育。

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