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在陆地棉(Gossypium hirsutum L.)纤维和棉铃发育过程中全基因组鉴定关键驱动蛋白基因。

Genome-wide identification of the key kinesin genes during fiber and boll development in upland cotton (Gossypium hirsutum L.).

机构信息

Key Laboratory of Crop Physiology, Ecology and Genetic Breeding, Ministry of Education, College of Agronomy, Jiangxi Agricultural University, Nanchang, 330045, Jiangxi, China.

Stock seed farm of Gao'an, Yichun, 330800, Jiangxi, China.

出版信息

Mol Genet Genomics. 2024 Mar 22;299(1):38. doi: 10.1007/s00438-024-02093-x.

Abstract

Kinesin is a kind of motor protein, which interacts with microtubule filaments and regulates cellulose synthesis. Cotton fiber is a natural model for studying the cellular development and cellulose synthesis. Therefore, a systematic research of kinesin gene family in cotton (Gossypium spp.) will be beneficial for both understanding the function of kinesin protein and assisting the fiber improvement. Here, we aimed to identify the key kinesin genes present in cotton by combining genome-wide expression profile data, association mapping, and public quantitative trait loci (QTLs) in upland cotton (G. hirsutum L.). Results showed that 159 kinesin genes, including 15 genes of the kinesin-13 gene subfamily, were identified in upland cotton; of which 157 kinesin genes can be traced back to the diploid ancestors, G. raimondii and G. arboreum. Using a combined analysis of public QTLs and genome-wide expression profile information, there were 29 QTLs co-localized together with 28 kinesin genes in upland cotton, including 10 kinesin-13 subfamily genes. Genome-wide expression profile data indicated that, among the 28 co-localized genes, seven kinesin genes were predominantly expressed in fibers or ovules. By association mapping analysis, 30 kinesin genes were significantly associated with three fiber traits, among which a kinesin-13 gene, Ghir_A11G028430, was found to be associated with both cotton boll length and lint weight, and one kinesin-7 gene, Ghir_D04G017880 (Gh_Kinesin7), was significantly associated with fiber strength. In addition, two missense mutations were identified in the motor domain of the Gh_Kinesin7 protein. Overall, the kinesin gene family seemingly plays an important role in cotton fiber and boll development. The exploited kinesin genes will be beneficial for the genetic improvement of fiber quality and yield.

摘要

驱动蛋白是一种马达蛋白,与微管丝相互作用,调节纤维素的合成。棉纤维是研究细胞发育和纤维素合成的天然模型。因此,对棉花(Gossypium spp.)中驱动蛋白基因家族进行系统研究,不仅有助于理解驱动蛋白蛋白的功能,还有助于改良纤维。在这里,我们通过整合全基因组表达谱数据、关联作图和陆地棉公共数量性状位点(QTL),旨在鉴定棉花中关键的驱动蛋白基因。结果表明,在陆地棉中鉴定出 159 个驱动蛋白基因,包括 15 个驱动蛋白-13 基因亚家族基因;其中 157 个驱动蛋白基因可以追溯到二倍体祖先 G. raimondii 和 G. arboreum。利用公共 QTL 和全基因组表达谱信息的综合分析,在陆地棉中有 29 个 QTL 与 28 个驱动蛋白基因共定位,包括 10 个驱动蛋白-13 亚家族基因。全基因组表达谱数据表明,在 28 个共定位基因中,有 7 个驱动蛋白基因在纤维或胚珠中表达丰度较高。通过关联作图分析,有 30 个驱动蛋白基因与三个纤维性状显著相关,其中一个驱动蛋白-13 基因 Ghir_A11G028430 与棉铃长度和皮棉重量均相关,一个驱动蛋白-7 基因 Ghir_D04G017880(Gh_Kinesin7)与纤维强度显著相关。此外,在 Gh_Kinesin7 蛋白的马达结构域中发现了两个错义突变。总体而言,驱动蛋白基因家族在棉花纤维和棉铃发育中似乎起着重要作用。所开发的驱动蛋白基因将有助于纤维品质和产量的遗传改良。

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