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豌豆根瘤菌蚕豆生物变种类菌体中结瘤基因表达的抑制

Suppression of nodulation gene expression in bacteroids of Rhizobium leguminosarum biovar viciae.

作者信息

Schlaman H R, Horvath B, Vijgenboom E, Okker R J, Lugtenberg B J

机构信息

Department of Plant Molecular Biology, Leiden University, The Netherlands.

出版信息

J Bacteriol. 1991 Jul;173(14):4277-87. doi: 10.1128/jb.173.14.4277-4287.1991.

Abstract

The expression of nod genes of Rhizobium leguminosarum bv. viciae in nodules of Pisum sativum was investigated at both the translational and transcriptional levels. By using immunoblots, it was found that the levels of NodA, NodI, NodE, and NodO proteins were reduced at least 14-fold in bacteriods compared with cultured cells, whereas NodD protein was reduced only 3-fold. Northern (RNA) blot hybridization, RNase protection assays, and in situ RNA hybridization together showed that, except for the nodD transcript, none of the other nod gene transcripts were present in bacteroids. The amount of nodD transcript in bacteroids was reduced only two- to threefold compared with that in cultured cells. Identical results were found with a Rhizobium strain harboring multicopies of nodD and with a strain containing a NodD protein (NodD604) which is activated independently of flavonoids. Furthermore, it was found that mature pea nodules contain inhibitors of induced nod gene transcription but that NodD604 was insensitive to these compounds. In situ RNA hybridization on sections from P. sativum and Vicia hirsuta nodules showed that transcription of inducible nod genes is switched off before the bacteria differentiate into bacteroids. This is unlikely to be due to limiting amounts of NodD, the absence of inducing compounds, or the presence of anti-inducers. The observed switch off of transcription during the development of symbiosis is a general phenomenon and is apparently caused by a yet unknown, negative regulation mechanism.

摘要

在翻译和转录水平上研究了豌豆根瘤菌蚕豆生物型的结瘤基因在豌豆根瘤中的表达。通过免疫印迹法发现,与培养细胞相比,类菌体中NodA、NodI、NodE和NodO蛋白的水平至少降低了14倍,而NodD蛋白仅降低了3倍。Northern(RNA)印迹杂交、RNA酶保护分析和原位RNA杂交共同表明,除了nodD转录本外,类菌体中不存在其他结瘤基因转录本。与培养细胞相比,类菌体中nodD转录本的量仅降低了两到三倍。携带多个nodD拷贝的根瘤菌菌株和含有独立于类黄酮激活的NodD蛋白(NodD604)的菌株也得到了相同的结果。此外,发现成熟的豌豆根瘤中含有诱导型结瘤基因转录的抑制剂,但NodD604对这些化合物不敏感。对豌豆和硬毛野豌豆根瘤切片进行原位RNA杂交表明,可诱导结瘤基因的转录在细菌分化为类菌体之前就被关闭。这不太可能是由于NodD量有限、缺乏诱导化合物或存在抗诱导剂所致。在共生发育过程中观察到的转录关闭是一种普遍现象,显然是由一种未知的负调控机制引起的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0641/208087/c172c27b1b0e/jbacter00104-0044-a.jpg

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