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Characterization of B-BOX gene family and their expression profiles under hormonal, abiotic and metal stresses in Poaceae plants

机译:淘性植物荷尔蒙,非生物和金属胁迫下B型基因家族及其表达谱的特征

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摘要

Abstract Background B-box (BBX) proteins play important roles in plant growth regulation and development including photomorphogenesis, photoperiodic regulation of flowering, and responses to biotic and abiotic stresses. Results In the present study we retrieved total 131 BBX members from five Poaceae species including 36 from maize, 30 from rice, 24 from sorghum, 22 from stiff brome, and 19 from Millet. All the BBX genes were grouped into five subfamilies on the basis of their phylogenetic relationships and structural features. The expression profiles of 12 OsBBX genes in different tissues were evaluated through qRT-PCR, and we found that most rice BBX members showed high expression level in the heading stage compared to seedling and booting stages. The expression of OsBBX1, OsBBX2, OsBBX8, OsBBX19, and OsBBX24 was strongly induced by abiotic stresses such as drought, cold and salt stresses. Furthermore, the expression of OsBBX2, OsBBX7, OsBBX17, OsBBX19, and OsBBX24 genes was up-regulated under GA, SA and MeJA hormones at different time points. Similarly, the transcripts level of OsBBX1, OsBBX7, OsBBX8, OsBBX17, and OsBBX19 genes were significantly affected by heavy metals such as Fe, Ni, Cr and Cd. Conclusion Change in the expression pattern of BBX members in response to abiotic, hormone and heavy metal stresses signifies their potential roles in plant growth and development and in response to multivariate stresses. The findings suggest that BBX genes could be used as potential genetic markers for the plants, particularly in functional analysis and determining their roles under multivariate stresses.
机译:摘要背景B-盒(BBX)的蛋白质在植物生长调节和发展,包括光形态建成,开花的光周期调控的重要作用,和应对生物和非生物胁迫。结果在本研究中,我们检索总131名BBX成员从五个禾本科物种,包括36从玉米,30是来自稻,24从高粱,22从硬雀麦,和19从小米。所有BBX基因的亲缘关系和结构特点的基础上,分成五个亚家族。在不同组织12个OsBBX基因表达谱是通过qRT-PCR的评价,我们发现大多数大米BBX成员在穗期相比幼苗和孕穗期显示高表达水平。 OsBBX1,OsBBX2,OsBBX8,OsBBX19,和OsBBX24的表达强烈受非生物胁迫例如干旱,冷和盐胁迫诱导的。下,在不同的时间点GA,SA和茉莉酸甲酯激素此外,OsBBX2,OsBBX7,OsBBX17,OsBBX19,和OsBBX24基因的表达上调。类似地,转录物水平OsBBX1,OsBBX7,OsBBX8,OsBBX17的,和OsBBX19基因由重金属如铁,镍,铬,镉被显著影响。结论BBX成员的表达模式变化响应于非生物,激素和植物生长和发育,并响应于多元应力重金属应力表示他们的潜在作用。调查结果显示,BBX基因可作为潜在的遗传标记的植物,特别是在功能分析和多因素下的应力确定自己的角色。

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