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国家自然科学基金(30870198)

作品数:3 被引量:36H指数:2
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DNA cytosine methylation in plant development被引量:28
2010年
Cytosine bases of the nuclear genome in higher plants are often extensively methylated.Cytosine methylation has been implicated in the silencing of both transposable elements (TEs) and endogenous genes,and loss of methylation may have severe functional consequences.The recent methylation profiling of the entire Arabidopsis genome has provided novel insights into the extent and pattern of cytosine methylation and its relationships with gene activity.In addition,the fresh studies also revealed the more dynamic nature of this epigenetic modification across plant development than previously believed.Cytosine methylation of gene promoter regions usually inhibits transcription,but methylation in coding regions (gene-body methylation) does not generally affect gene expression.Active demethylation (though probably act synergistically with passive loss of methylation) of promoters by the 5-methyl cytosine DNA glycosylase or DEMETER (DME) is required for the uni-parental expression of imprinting genes in endosperm,which is essential for seed viability.The opinion that cytosine methylation is indispensible for normal plant development has been reinforced by using single or combinations of diverse loss-of-function mutants for DNA methyltransferases,DNA glycosylases,components involved in siRNA biogenesis and chromatin remodeling factors.Patterns of cytosine methylation in plants are usually faithfully maintained across organismal generations by the concerted action of epigenetic inheritance and progressive correction of strayed patterns.However,some variant methylation patterns may escape from being corrected and hence produce novel epialleles in the affected somatic cells.This,coupled with the unique property of plants to produce germline cells late during development,may enable the newly acquired epialleles to be inherited to future generations,which if visible to selection may contribute to adaptation and evolution.
Meishan ZhangJosphert N.KimatuKezhang XuBao Liu
关键词:ALTERATIONIMPRINTING
干旱胁迫对西洋参叶片光合日变化的影响被引量:6
2009年
采用盆栽试验研究了正常供水(土壤含水量为最大持水量的85%)和干旱胁迫(土壤含水量为最大持水量的45%)条件下3年生西洋参叶片的光合日变化。结果表明,(1)干旱胁迫导致净光合速率(Pn)、气孔导度(Gs)、蒸腾速率(Tr)和水分利用效率(WUE)下降,分别比对照下降43.4%、17.4%、24.3%和25.7%。(2)开花期西洋参叶片Pn、Gs、Tr的日变化均表现为单峰型曲线。在干旱胁迫下,Pn、Gs和Tr均出现较大的日下降变化。(3)在干旱胁迫下胞间CO2浓度(Ci)升高,这说明在干旱胁迫下虽然Pn和Gs都呈下降趋势,但光合日下降以及胁迫导致的光合降低主要是由非气孔因素引起的。
张美善徐克章
关键词:西洋参干旱胁迫光合作用日变化
高粱DNA甲基化变异的分子杂交验证被引量:2
2009年
以2个高粱(Sorghum bicolor L.)亲本纯系及其F1杂交种为材料,利用甲基化敏感扩增多态性(MSAP)方法,对DNA甲基化水平和模式的遗传和变异进行了研究。结果表明:亲本纯系的大部分胞嘧啶甲基化位点稳定遗传给其F1杂交种,但3.94%的位点表现出了变异,即未从亲本遗传给杂交种,并通过Southern杂交方法进一步验证了杂交种和纯系亲本间的DNA甲基化模式的遗传和变异。
张美善于福胜阎鸿雁徐克章
关键词:高粱杂交种表观遗传变异分子杂交
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