首页> 美国卫生研究院文献>Microbes and Environments >Possible Role of 1-Aminocyclopropane-1-Carboxylate (ACC) Deaminase Activity of Sinorhizobium sp. BL3 on Symbiosis with Mung Bean and Determinate Nodule Senescence
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Possible Role of 1-Aminocyclopropane-1-Carboxylate (ACC) Deaminase Activity of Sinorhizobium sp. BL3 on Symbiosis with Mung Bean and Determinate Nodule Senescence

机译:中华根瘤菌的1-氨基环丙烷-1-羧酸(ACC)脱氨酶活性的可能作用。 BL3与绿豆共生和确定结节衰老

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摘要

Sinorhizobium sp. BL3 forms symbiotic interactions with mung bean (Vigna radiata) and contains lrpL-acdS genes, which encode the 1-aminocyclopropane-1-carboxylate (ACC) deaminase enzyme that cleaves ACC, a precursor of plant ethylene synthesis. Since ethylene interferes with nodule formation in some legumes and plays a role in senescence in plant cells, BL3-enhancing ACC deaminase activity (BL3+) and defective mutant (BL3) strains were constructed in order to investigate the effects of this enzyme on symbiosis and nodule senescence. Nodulation competitiveness was weaker in BL3 than in the wild-type, but was stronger in BL3+. The inoculation of BL3 into mung bean resulted in less plant growth, a lower nodule dry weight, and smaller nodule number than those in the wild-type, whereas the inoculation of BL3+ had no marked effects. However, similar nitrogenase activity was observed with all treatments; it was strongly detected 3 weeks after the inoculation and gradually declined with time, indicating senescence. The rate of plant nodulation by BL3+ increased in a time-dependent manner. Nodules occupied by BL3 formed smaller symbiosomes, and bacteroid degradation was more prominent than that in the wild-type 7 weeks after the inoculation. Changes in biochemical molecules during nodulation were tracked by Fourier Transform Infrared (FT-IR) microspectroscopy, and the results obtained confirmed that aging processes differed in nodules occupied by BL3 and BL3. This is the first study to show the possible role of ACC deaminase activity in senescence in determinate nodules. Our results suggest that an increase in ACC deaminase activity in this strain does not extend the lifespan of nodules, whereas the lack of this activity may accelerate nodule senescence.
机译:中华根瘤菌BL3与绿豆(Vigna radiata)形成共生相互作用,并包含lrpL-acdS基因,该基因编码1-氨基环丙烷-1-羧酸(ACC)脱氨酶,该酶切割植物乙烯合成的前体ACC。由于乙烯在某些豆科植物中干扰根瘤的形成并在植物细胞的衰老中起作用,因此增强BL3的ACC脱氨酶活性(BL3 + )和有缺陷的突变体(BL3 -)为了研究该酶对共生和结节衰老的作用,构建了菌株。 BL3 -的结瘤竞争力弱于野生型,而BL3 + 的结瘤竞争力强。与野生型相比,将BL3 -接种到绿豆中可导致植物的生长减少,根瘤干重降低,根瘤数减少,而BL3 + + 没有明显效果。然而,在所有处理中均观察到类似的固氮酶活性。接种后3周强烈检测到它,并随时间逐渐下降,表明衰老。 BL3 + 对植物的结瘤率呈时间依赖性。接种7周后,BL3 -所占据的结节形成了较小的共生体,与野生型相比,类细菌降解更为明显。利用傅立叶变换红外光谱(FT-IR)跟踪了结节过程中生化分子的变化,结果证实了衰老过程在被BL3和BL3 -占据的结节中有所不同。这是第一项显示ACC脱氨酶活性在决定性结节衰老中可能发挥作用的研究。我们的结果表明,该菌株中ACC脱氨酶活性的增加不会延长结节的寿命,而缺乏这种活性可能会加速结节的衰老。

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