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利用标记辅助选择对芸薹属植物中脂肪族硫代葡萄糖苷的同源 GSL-ELONG 基因替换。

Homoeologous GSL-ELONG gene replacement for manipulation of aliphatic glucosinolates in Brassica rapa L. by marker assisted selection.

机构信息

The Department of Plant Science, University of Manitoba Winnipeg, MB, Canada .

出版信息

Front Plant Sci. 2013 Mar 25;4:55. doi: 10.3389/fpls.2013.00055. eCollection 2013.

Abstract

Aliphatic glucosinolates are the predominant sulfur-rich plant secondary metabolites in economically important Brassica crops. Glucosinolates and their hydrolysis products are involved in plant-microbe, plant-insect, plant-animal, and plant-human interactions. It is, therefore, important to manipulate glucosinolate profiles and contents in Brassica species. In this study, aliphatic glucosinolates were genetically manipulated through homoeologous recombination in backcross lines followed by marker assisted selection in B. rapa. A resynthesized B. napus line, from a cross between B. rapa and B. oleracea, was backcrossed with Chinese cabbage doubled haploid line, RI16. Marker assisted selection for non-functional gene was performed in each backcross generations. Advanced backcross progenies (BC3F2) were developed to identify homoeologous gene replacement and/or introgression. Reduction in 5C aliphatic glucosinolates (gluconapoleiferin, glucoalyssin, and glucobrassicanapin) was observed in BC3F2 progenies of the recurrent parent that carried the GSL-ELONG (-) gene. The GSL-ELONG (-) positive backcross progenies were also screened by the A-genome and BraGSL-ELONG gene specific marker, which linked with 5C aliphatic glucosinolates. The A-genome specific marker was absent in the plants of advanced backcross progenies which showed reduction in 5C aliphatic glucosinolates. The results suggest that the functional allele had been replaced by the non-functional GSL-ELONG (-) allele from B. oleracea. Some advanced backcross progenies (BC3F2) positive for the GSL-ELONG (-) allele and the A-genome specific SCAR marker BraMAM1-1 did not show reduction in 5C aliphatic glucosinolates, suggesting that GSL-ELONG (-) allele is recessive. Replacement of the functional locus in the A-genome by non-functional counterpart in the C-genome reduced the content of 5C aliphatic glucosinolates in B. rapa seeds with 20 μmol/g.

摘要

脂肪族硫代葡萄糖苷是芸薹属作物中主要的含硫植物次生代谢物。硫代葡萄糖苷及其水解产物参与植物-微生物、植物-昆虫、植物-动物和植物-人类的相互作用。因此,操纵芸薹属物种中硫代葡萄糖苷的图谱和含量非常重要。在这项研究中,通过回交系中的同源重组以及在芸薹属植物中的标记辅助选择对脂肪族硫代葡萄糖苷进行了遗传操作。来自芸薹属和甘蓝型油菜杂交的合成油菜品系与白菜双单倍体系 RI16 回交。在每个回交世代中都对非功能基因进行了标记辅助选择。通过开发先进的回交后代(BC3F2)来鉴定同源基因替换和/或导入。在携带 GSL-ELONG(-)基因的轮回亲本的 BC3F2 后代中观察到 5C 脂肪族硫代葡萄糖苷(葡萄糖苷napoleiferin、葡萄糖苷alyssin 和葡萄糖苷 brassicanapin)的减少。还通过 A 基因组和 BraGSL-ELONG 基因特异性标记物对 GSL-ELONG(-)阳性回交后代进行了筛选,该标记物与 5C 脂肪族硫代葡萄糖苷相连。在表现出 5C 脂肪族硫代葡萄糖苷减少的植物中,没有 A 基因组特异性标记物。结果表明,功能等位基因已被来自甘蓝型油菜的非功能 GSL-ELONG(-)等位基因取代。一些 GSL-ELONG(-)等位基因和 A 基因组特异性 SCAR 标记物 BraMAM1-1 阳性的先进回交后代(BC3F2)没有表现出 5C 脂肪族硫代葡萄糖苷的减少,这表明 GSL-ELONG(-)等位基因是隐性的。在 A 基因组中的功能位点被 C 基因组中的非功能对应物取代,导致芸薹属种子中 5C 脂肪族硫代葡萄糖苷的含量减少到 20 μmol/g。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f57d/3607083/a8bbdb076f88/fpls-04-00055-g001.jpg

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