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I类KNOX同源异型框基因HBK3的过表达促进了挪威云杉(欧洲云杉)体细胞胚胎的发育。

Overexpression of HBK3, a class I KNOX homeobox gene, improves the development of Norway spruce (Picea abies) somatic embryos.

作者信息

Belmonte Mark F, Tahir Muhammad, Schroeder Dana, Stasolla Claudio

机构信息

Department of Plant Science, University of Manitoba, Winnipeg, R3T 2N2, Manitoba, Canada.

出版信息

J Exp Bot. 2007;58(11):2851-61. doi: 10.1093/jxb/erm099. Epub 2007 Jul 7.

Abstract

In order to investigate the effects of HBK3, a spruce gene member of the class I KNOX family, during somatic embryogenesis, sense (HBK3-S) and antisense (HBK3-A) Norway spruce (Picea abies) lines were generated. Somatic embryos produced from these lines were then analysed at morphological and structural levels. Compared with control, differentiation of immature somatic embryos from pro-embryogenic masses (PEMs) was accelerated in lines overexpressing HBK3 (HBK3-S). Such immature embryos showed enlarged embryogenic heads and were able to produce fully developed cotyledonary embryos at higher frequency. Furthermore, HBK3-S embryos had enlarged shoot apical meristems (SAMs) and enlarged expression pattern of PgAGO, a molecular marker gene specific to meristematic cells. Lines in which HBK3 (HBK3-A) was down-regulated had reduced ability to produce immature somatic embryos from PEMs and were not able to complete the maturation processes. To assess the function of HBK3 in comparison with that of angiosperm KNOX genes, this gene was ectopically expressed in Arabidopsis plants. As observed for spruce, Arabidopsis embryos overexpressing HBK3 had enlarged meristems and enlarged expression pattern of SHOOTMERISTEMLESS, a SAM molecular marker gene. In addition, transformed embryos were able to germinate at a higher rate and the resulting plants showed a variety of phenotypic aberrations, including abnormal leaves and reduced apical dominance. Overall, these data confirm the importance of KNOTTED genes during development and reveal the participation of HBK3 in conifer embryogeny. Furthermore, the results show redundant functions of this gene during embryonic growth of spruce and Arabidopsis, but not during post-embryonic growth.

摘要

为了研究I类KNOX家族的云杉基因成员HBK3在体细胞胚胎发生过程中的作用,构建了挪威云杉(Picea abies)的正义(HBK3-S)和反义(HBK3-A)株系。然后对这些株系产生的体细胞胚进行形态和结构水平的分析。与对照相比,过表达HBK3(HBK3-S)的株系中,胚性细胞团(PEMs)产生的未成熟体细胞胚的分化加速。这种未成熟胚的胚性头部增大,能够以更高的频率产生完全发育的子叶胚。此外,HBK3-S胚的茎尖分生组织(SAMs)增大,且分生组织细胞特异性分子标记基因PgAGO的表达模式扩大。HBK3(HBK3-A)下调的株系从PEMs产生未成熟体细胞胚的能力降低,且无法完成成熟过程。为了评估HBK3与被子植物KNOX基因相比的功能,该基因在拟南芥植株中异位表达。与云杉的情况一样,过表达HBK3的拟南芥胚的分生组织增大,且茎尖分生组织分子标记基因SHOOTMERISTEMLESS的表达模式扩大。此外,转化胚能够以更高的速率萌发,所产生的植株表现出多种表型异常,包括叶片异常和顶端优势减弱。总体而言,这些数据证实了KNOTTED基因在发育过程中的重要性,并揭示了HBK3参与针叶树胚胎发生。此外,结果表明该基因在云杉和拟南芥胚胎生长过程中具有冗余功能,但在胚后生长过程中并非如此。

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