Author:
Cheng Teng,Zheng Xingwen,Xie Keqiang,Liu Jiangdong,Zheng Xingfei,Jin Surong,Diao Ying,Hu Zhongli,Wang Jianxiong
Abstract
AbstractIt have been significantly demonstrated that Hexokinase (HXK), Granule-bound starch synthase (GBSS) and ADP-glucose pyrophosphorylase (AGPase) are three critical enzymes in the starch biosynthetic pathway and are related to starch (amylose, amylopectin and total starch) content in lotus. It is important to develop functional markers in marker-assisted selection of lotus breeding. So far there have been few reports about lotus functional markers. In this study, based on insertion-deletions (INDELs) and single-nucleotide polymorphisms (SNPs), we developed three functional markers, FMHXK-E1, FMGBSS-I8 and FMAGPL-I1. FMHXK-E1 was developed based on polymorphisms of two haplotypes of NnHXK. 26 lotus cultivars that the 320-bp fragment presented in NnHXK had a lower content of amylose and a higher content of amylopectin. FMGBSS-I8 was developed based on polymorphisms of two haplotypes of NnGBSS. The group containing 32 lotus cultivars with the 210-bp fragment had less amylose content and more amylopectin content. FMAGPL-I1 was developed based on polymorphisms of two haplotypes of NnAGPL (ADP-glucose pyrophosphorylase large subunit gene). The group containing 40 lotus cultivars with the 362-bp fragment had less amylopectin, total starch content and more amylose content. According to the study, FMHXK-E1, FMGBSS-I8 and FMAGPL-I1 are closely related to lotus starch content. It could be provided research basis for molecular assisted selection of lotus starch content improve breeding efficiency.
Funder
Technology Innovation Project of Hubei Provice of China
Publisher
Springer Science and Business Media LLC
Reference36 articles.
1. Guo, H. Cultivation of lotus (Nelumbo nucifera Gaertn. ssp. nucifera) and its utilization in China. Genetic Resources and Crop Evolution 56, 323–330 (2009).
2. Liangjun, L., Xiaodong, Z. & Enchao, P. Relationship of starch synthesis with it’s related enzymes’ activities during rhizome development of lotus (Nelumbo nucifera Gaertn). Scientia Agricultura Sinica 11, 020 (2006).
3. Sridhar, K. & Bhat, R. Lotus-A potential nutraceutical source. Journal of Agricultural Technology 3, 143–155 (2007).
4. Martin, C. & Smith, A. M. Starch biosynthesis. The plant cell 7, 971 (1995).
5. Takeda, Y., Hizukuri, S., Takeda, C. & Suzuki, A. Structures of branched molecules of amyloses of various origins, and molar fractions of branched and unbranched molecules. Carbohydrate Research 165, 139–145 (1987).
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