采用SDS-PAGE电泳和切胶比色进行亚基定量的方法,研究施氮量对2个小麦品种籽粒HMW-GS和GMP积累的影响。结果表明,高蛋白小麦品种徐州26在花后14 d HMW-GS就开始形成,低蛋白品种宁麦9号在花后21 d才开始形成。增施氮肥对小麦灌浆前期HMW...采用SDS-PAGE电泳和切胶比色进行亚基定量的方法,研究施氮量对2个小麦品种籽粒HMW-GS和GMP积累的影响。结果表明,高蛋白小麦品种徐州26在花后14 d HMW-GS就开始形成,低蛋白品种宁麦9号在花后21 d才开始形成。增施氮肥对小麦灌浆前期HMW-GS的形成作用不明显,而有利于徐州26 HMW-GS积累速度的提高和HMW-GS快速积累期的延长,及宁麦9号灌浆后期HMW-GS的积累,导致成熟期徐州26 HMW-GS和GMP含量随施氮量增加而提高;但施氮过多则降低宁麦9号籽粒HMW-GS和GMP含量。相同氮素水平下,籽粒HMW-GS各亚基含量徐州26均高于宁麦9号,表明籽粒HMW-GS亚基含量与小麦品质性状密切相关。展开更多
Size distribution of glutenin macropolymer (GMP) particles significantly affects the quality of final products in wheat. Six wheat varieties in eastern China were used for investigating the GMP content, particle siz...Size distribution of glutenin macropolymer (GMP) particles significantly affects the quality of final products in wheat. Six wheat varieties in eastern China were used for investigating the GMP content, particle size distribution and their relation. The results showed that the particle diameter of GMP changed from 0.38 μm to 269 μm. A typical bimodal curve of volume distribution of particles with peak values ranged from 4.44 μm to 5.36 μm and from 45.76 μm to 116.30 μm, respectively. Number distribution of particles showed the typical population with peak values in the range of 0.57-1.00 p.m. Proportions of granules 〈12μm, 12-80 μm and 〉80 μm were in the range of 17.1%-47.8%, 32.1%-50.3% and 10.2%-38.1% of total volume, respectively. The content of GMP was negatively correlated with the volume of GMP particles 〈12μm, but positively correlated with the volume of particles 〉80μm. The results suggested that the greater percentage of larger GMP particles is, the more GMP content there is in wheat grain.展开更多
基金Supported by the National Key Research and Development Program of China(2016YFD0300408)the Anhui Provincial Natural Science Foundation(1408085MC48)
文摘Size distribution of glutenin macropolymer (GMP) particles significantly affects the quality of final products in wheat. Six wheat varieties in eastern China were used for investigating the GMP content, particle size distribution and their relation. The results showed that the particle diameter of GMP changed from 0.38 μm to 269 μm. A typical bimodal curve of volume distribution of particles with peak values ranged from 4.44 μm to 5.36 μm and from 45.76 μm to 116.30 μm, respectively. Number distribution of particles showed the typical population with peak values in the range of 0.57-1.00 p.m. Proportions of granules 〈12μm, 12-80 μm and 〉80 μm were in the range of 17.1%-47.8%, 32.1%-50.3% and 10.2%-38.1% of total volume, respectively. The content of GMP was negatively correlated with the volume of GMP particles 〈12μm, but positively correlated with the volume of particles 〉80μm. The results suggested that the greater percentage of larger GMP particles is, the more GMP content there is in wheat grain.