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未感染的间质细胞中的血红素加氧酶介导的血红素分解代谢使 Lotus japonicus 根瘤中的共生固氮作用更加高效。

Heme catabolism mediated by heme oxygenase in uninfected interstitial cells enables efficient symbiotic nitrogen fixation in Lotus japonicus nodules.

机构信息

National Key Laboratory of Agricultural Microbiology, Hubei Hongshan Laboratory, Shenzhen Institute of Nutrition and Health, Huazhong Agricultural University, Wuhan, 430070, China.

Departamento de Biología Vegetal, Estación Experimental de Aula Dei, Consejo Superior de Investigaciones Científicas, Avenida Montañana 1005, Zaragoza, 50059, Spain.

出版信息

New Phytol. 2023 Sep;239(5):1989-2006. doi: 10.1111/nph.19074. Epub 2023 Jun 17.

Abstract

Legume nodules produce large quantities of heme required for the synthesis of leghemoglobin (Lb) and other hemoproteins. Despite the crucial function of Lb in nitrogen fixation and the toxicity of free heme, the mechanisms of heme homeostasis remain elusive. Biochemical, cellular, and genetic approaches were used to study the role of heme oxygenases (HOs) in heme degradation in the model legume Lotus japonicus. Heme and biliverdin were quantified and localized, HOs were characterized, and knockout LORE1 and CRISPR/Cas9 mutants for LjHO1 were generated and phenotyped. We show that LjHO1, but not the LjHO2 isoform, is responsible for heme catabolism in nodules and identify biliverdin as the in vivo product of the enzyme in senescing green nodules. Spatiotemporal expression analysis revealed that LjHO1 expression and biliverdin production are restricted to the plastids of uninfected interstitial cells. The nodules of ho1 mutants showed decreased nitrogen fixation, and the development of brown, rather than green, nodules during senescence. Increased superoxide production was observed in ho1 nodules, underscoring the importance of LjHO1 in antioxidant defense. We conclude that LjHO1 plays an essential role in degradation of Lb heme, uncovering a novel function of nodule plastids and uninfected interstitial cells in nitrogen fixation.

摘要

豆科植物根瘤产生大量血红素,这些血红素是合成豆血红蛋白 (Lb) 和其他血红素蛋白所必需的。尽管 Lb 在固氮和游离血红素的毒性方面具有至关重要的功能,但血红素稳态的机制仍然难以捉摸。本研究采用生化、细胞和遗传方法研究血红素加氧酶 (HOs) 在模式豆科植物百脉根中血红素降解中的作用。对血红素和胆绿素进行了定量和定位,对 HOs 进行了表征,并生成了 LORE1 敲除和 CRISPR/Cas9 突变体 LjHO1 并进行了表型分析。研究结果表明,LjHO1(而非 LjHO2 同工酶)负责根瘤中的血红素分解代谢,并确定胆绿素是该酶在衰老绿色根瘤中的体内产物。时空表达分析表明,LjHO1 表达和胆绿素产生仅限于未感染的间质细胞的质体中。ho1 突变体的根瘤固氮能力下降,衰老过程中根瘤呈现棕色而不是绿色。在 ho1 根瘤中观察到超氧化物产生增加,这突出了 LjHO1 在抗氧化防御中的重要性。综上所述,该研究结果表明 LjHO1 在 Lb 血红素降解中发挥着重要作用,揭示了根瘤质体和未感染的间质细胞在固氮中的新功能。

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