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柑橘螺原体BR3菌株中的广泛染色体畸变

Extensive chromosome aberrations in Spiroplasma citri Strain BR3.

作者信息

Ye F, Melcher U, Rascoe J E, Fletcher J

机构信息

Department of Plant Pathology, Oklahoma State University, Stillwater 74078, USA.

出版信息

Biochem Genet. 1996 Aug;34(7-8):269-86. doi: 10.1007/BF02399947.

Abstract

Genetic variations in the plant pathogen, Spiroplasma citri strain BR3, were characterized through physical genome mapping of the original isolate, BR3-3X, and two derivatives, BR3-T and BR3-G, obtained after several years of different maintenance conditions. BR3-T was transmitted from plant to plant via its natural insect vector, the leafhopper Circulifer tenellus, while BR3-G was maintained only in plants by periodic grafting and has lost its ability to be insect transmitted. By pulsed field gel electrophoresis (PFGE) analysis and DNA hybridization, extensive changes in chromosomal DNA restriction patterns relative to the parent, BR3-3X, were observed in both BR3-T and BR3-G, each of which also had a larger genome size than the parent line. Genetic organization was relatively conserved between BR3-T and BR3-3X. In contrast, a large chromosomal inversion and deletions of approximately 10 kb near each of the inversion borders were observed in BR3-G. One of the deletions, which included several possibly functional genes, was closely linked to a SpV1-related transposase gene. The locations of the deletion borders were also determined. The results of this study demonstrated remarkable genome instability of spiroplasmas.

摘要

通过对原始分离株BR3 - 3X以及在不同保存条件下经过数年获得的两个衍生物BR3 - T和BR3 - G进行物理基因组图谱分析,对植物病原体柑橘螺原体菌株BR3的遗传变异进行了表征。BR3 - T通过其天然昆虫载体叶蝉Circulifer tenellus在植物间传播,而BR3 - G仅通过定期嫁接在植物中保存,并且已经失去了通过昆虫传播的能力。通过脉冲场凝胶电泳(PFGE)分析和DNA杂交,在BR3 - T和BR3 - G中均观察到相对于亲本BR3 - 3X的染色体DNA限制性图谱发生了广泛变化,并且它们的基因组大小均大于亲本系。BR3 - T和BR3 - 3X之间的遗传组织相对保守。相比之下,在BR3 - G中观察到一个大的染色体倒位以及在每个倒位边界附近约10 kb的缺失。其中一个缺失包括几个可能具有功能的基因,与一个SpV1相关转座酶基因紧密相连。还确定了缺失边界的位置。这项研究的结果证明了螺原体具有显著的基因组不稳定性。

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