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dss1 突变体叶色突变机制研究 被引量:1
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作者 黄仁权 《耕作与栽培》 2023年第2期47-50,共4页
为了探究dss1突变体叶色深绿的突变机制,对其叶绿素含量及叶绿素合成途径中的前体物质进行测定,同时对叶绿素合成途径中的关键基因表达量进行分析。结果表明,dss1突变体叶绿素a和叶绿素b含量分别为野生型的1.4倍和1.3倍,光合色素含量比... 为了探究dss1突变体叶色深绿的突变机制,对其叶绿素含量及叶绿素合成途径中的前体物质进行测定,同时对叶绿素合成途径中的关键基因表达量进行分析。结果表明,dss1突变体叶绿素a和叶绿素b含量分别为野生型的1.4倍和1.3倍,光合色素含量比野生型增加25.6%。通过对叶绿素合成途径中前体物质测定发现,dss1突变体中原卟啉(ProtoⅨ)含量为野生型的47.5%,而镁原卟啉(Mg-Proto)含量为野生型的1.71倍。dss1突变体中编码叶绿素生物合成途径中关键酶(镁离子鳌合酶)的CHLH基因表达量较高,为野生型的4.1倍,其他关键基因的表达量和野生型无显著差异。说明dss1突变体叶色加深主要是编码镁离子鳌合酶的CHLH基因高表达导致前体物质合成增加而引起的。 展开更多
关键词 dss1突变体 CHLH基因 叶绿素
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DWARF and SMALL SEED1,a Novel Allele of OsDWARF,Controls Rice Plant Architecture,Seed Size,and Chlorophyll Biosynthesis
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作者 Yan Li Renquan Huang +3 位作者 Jianrong Li Xiaozhen Huang Xiaofang Zeng Degang Zhao 《Phyton-International Journal of Experimental Botany》 SCIE 2021年第1期111-127,共17页
Plant architecture is a vital agronomic trait to control yield in rice(Oryza sativa L.).A dwarf and small seed 1(dss1)mutant were obtained from the ethyl methanesulfonate(EMS)mutagenized progeny of a Guizhou glutinous... Plant architecture is a vital agronomic trait to control yield in rice(Oryza sativa L.).A dwarf and small seed 1(dss1)mutant were obtained from the ethyl methanesulfonate(EMS)mutagenized progeny of a Guizhou glutinous landrace cultivar,Lipingzabianhe.The dss1 mutant displayed phenotypes similar to those of brassinosteroid(BR)deficient mutants,such as dwarfing,dark green and rugose erect leaves,small seeds,and loner neck internode panicles with primary branching.In our previous study,the underlying DSS1 gene was isolated,a novel allele of OsDWARF(OsBR6ox)that encodes a cytochrome P450 protein involved in the BR biosynthetic pathway by MutMap technology.In this work,we confirmed that a Thr335Ile amino acid substitution residing in DSS1/OsDWARF was responsible for the dwarf,panicle architecture,and small seed phenotypes in the dss1 mutants by genetic transformation experiments.The overexpression of OsDWARF in the dss1 mutant background could not only recover dss1 to the normal plant height and panicle architecture but also rescued normal leaf angles,seed size,and leaf color.Thus,the specific mutation in DSS1/OsDWARF influenced plant architecture,seed size,and chlorophyll biosynthesis. 展开更多
关键词 BRASSINOSTEROID chlorophyll biosynthesis dss1 mutant OsDWARF gene panicle architecture
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