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BnGRF2 基因(甘蓝型油菜中的 GRF2 样基因)通过调节细胞数量和植物光合作用来提高种子含油量。

The BnGRF2 gene (GRF2-like gene from Brassica napus) enhances seed oil production through regulating cell number and plant photosynthesis.

机构信息

Oil Crops Research Institute of the Chinese Academy of Agricultural Sciences, Key Laboratory of Biology and Genetic Improvement of Oil Crops, Ministry of Agriculture, Wuhan, PR China.

出版信息

J Exp Bot. 2012 Jun;63(10):3727-40. doi: 10.1093/jxb/ers066. Epub 2012 Mar 21.

Abstract

Seed yield and oil content are two important agricultural characteristics in oil crop breeding, and a lot of functional gene research is being concentrated on increasing these factors. In this study, by differential gene expression analyses between rapeseed lines (zy036 and 51070) which exhibit different levels of seed oil production, BnGRF2 (Brassica napus growth-regulating factor 2-like gene) was identified in the high oil-producing line zy036. To elucidate the possible roles of BnGRF2 in seed oil production, the cDNA sequences of the rapeseed GRF2 gene were isolated. The Blastn result showed that rapeseed contained BnGRF2a/2b which were located in the A genome (A1 and A3) and C genome (C1 and C6), respectively, and the dominantly expressed gene BnGRF2a was chosen for transgenic research. Analysis of 35S-BnGRF2a transgenic Arabidopsis showed that overexpressed BnGRF2a resulted in an increase in seed oil production of >50%. Moreover, BnGRF2a also induced a >20% enlargement in extended leaves and >40% improvement in photosynthetic efficiency because of an increase in the chlorophyll content. Furthermore, transcriptome analyses indicated that some genes associated with cell proliferation, photosynthesis, and oil synthesis were up-regulated, which revealed that cell number and plant photosynthesis contributed to the increased seed weight and oil content. Because of less efficient self-fertilization induced by the longer pistil in the 35S-BnGRF2a transgenic line, Napin-BnGRF2a transgenic lines were further used to identify the function of BnGRF2, and the results showed that seed oil production also could increase >40% compared with the wild-type control. The results suggest that improvement to economically important characteristics in oil crops may be achieved by manipulation of the GRF2 expression level.

摘要

种子产量和含油量是油料作物育种中的两个重要农艺性状,大量的功能基因研究集中在提高这些因素上。在这项研究中,通过对不同产油量油菜品系(zy036 和 51070)的差异基因表达分析,在高油产线 zy036 中鉴定了 BnGRF2(甘蓝型油菜生长调节因子 2 样基因)。为了阐明 BnGRF2 基因在种子油生产中的可能作用,分离了油菜 GRF2 基因的 cDNA 序列。Blastn 结果表明,油菜含有 BnGRF2a/2b,它们分别位于 A 基因组(A1 和 A3)和 C 基因组(C1 和 C6)中,显性表达基因 BnGRF2a 被选为转基因研究。对 35S-BnGRF2a 转基因拟南芥的分析表明,过表达 BnGRF2a 导致种子油产量增加>50%。此外,BnGRF2a 还通过增加叶绿素含量,使伸长叶片增大>20%,光合作用效率提高>40%。此外,转录组分析表明,一些与细胞增殖、光合作用和油脂合成相关的基因上调,这表明细胞数量和植物光合作用有助于增加种子重量和含油量。由于 35S-BnGRF2a 转基因系中雌蕊较长导致自交效率降低,进一步使用 Napin-BnGRF2a 转基因系来鉴定 BnGRF2 的功能,结果表明与野生型对照相比,种子油产量也可增加>40%。这些结果表明,通过操纵 GRF2 表达水平,可能实现对油料作物重要经济性状的改良。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8dec/3388832/3cba2165629a/jexboters066f01_3c.jpg

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