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玉米雌穗发育期基因差异表达与杂种优势的研究
引用本文:王新军,曹海河,张登峰,李波,贺岩,李建生,王守才.玉米雌穗发育期基因差异表达与杂种优势的研究[J].遗传学报,2007,34(2):160-170.
作者姓名:王新军  曹海河  张登峰  李波  贺岩  李建生  王守才
作者单位:中国农业大学农学与生物技术学院,北京,100094;国家玉米改良中心,北京,100094;教育部玉米育种工程研究中心,北京,100094
摘    要:杂种优势在提高粮食作物特别是玉米的产量方面具有重要的作用。然而,杂种优势的原理却仍然是一个世界性的难题。用12个玉米自交系及其按不完全双列杂交组配的33个杂交种为材料,分4个不同发育时期取杂交种及其亲本的雌穗组织,利用差异显示技术,分析杂种与亲本的基因差异表达类型及其与7个主要农艺性状的杂种表现和杂种优势的相关关系。发现1):在5种表达类型中单态表达(基因在杂交种和双亲中同时表达的类型)的数量最大,这说明杂种优势的形成不仅与基因的表达与否相关,还与大量基因的上调或下调表达相关;2):在玉米雌幼穗的发育初期杂交种与双亲的基因表达差异最大,这可能与雌穗发育初期器官的形成和发育相关,因此这一时期差异表达(在质的方面)的基因对产量性状和杂种优势的形成具有密切关系;3):综合各种基因表达类型与产量性状和杂种优势的关系,发现某些基因在杂种中的沉默表达可以促进籽粒的发育和抑制幼穗中小花的发育。

关 键 词:玉米  杂种优势  杂种表现  差异基因表达类型  差异显示
收稿时间:22 February 2006
修稿时间:2006-02-22

Relationship Between Differential Gene Expression and Heterosis During Ear Development in Maize (Zea mays L.)
Xinjun Wang,Haihe Cao,Dengfeng Zhang,Bo Li,Yan He,Jiansheng Li,Shoucai Wang.Relationship Between Differential Gene Expression and Heterosis During Ear Development in Maize (Zea mays L.)[J].Journal of Genetics and Genomics,2007,34(2):160-170.
Authors:Xinjun Wang  Haihe Cao  Dengfeng Zhang  Bo Li  Yan He  Jiansheng Li  Shoucai Wang
Institution:1. College of Agronomy and Biotechnology, China Agricultural University, Beijing 100094, China; 2. National Maize Improvement Center of China, Beijing 100094, China; 3. Maize Breeding Engineering Research Center of Education Ministry, Beijing 100094, China
Abstract:Maize (Zea mays L.) is one of the most important crops because of the remarkable properties of its hybrid, which is re- sponsible for the high commercial value of hybrid maize. The genetic basis of heterosis (hybrid vigor) is not well understood. A differential display technique was performed to identify genes with differential expression across twelve maize inbred lines and thirty-three hybrids during ear development. An incomplete diallel design was used to investigate the relationship between the global framework of differential gene expression and heterosis. It was found that the genes belonging to MONO pattern (i.e., genes expressed in both parental lines and in hybrid) was the highest in percentage among the total five patterns and illustrated that the properties of differentially expressed genes are not entirely responsible for heterosis. Furthermore,a larger number of differentially expressed genes in hybrid, which serves as a major reservoir for generating novel phenotypes that exhibit heterosis of certain agro- nomic traits during early development and differentiation of maize ear. Moreover, there were some silent genesin hybrids that are responsible for the arrest or abortion of spikelets and for the increase in kernels weight.
Keywords:ear  heterosis  performance of hybrid  differential gene expression pattern  differential display
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