期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Requirement of KNAT1/BP for the Development of Abscission Zones in Arabidopsis thaliana 被引量:9
1
作者 Xiao-Qun Wang Wei-Hui Xu +4 位作者 li-geng ma Zhi-Ming Fu Xing-Wang Deng Jia-Yang Li Yong-Hong Wang 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2006年第1期15-26,共12页
The KNAT1 gene is a member of the Class I KNOXhomeobox gene family and is thought to play an important role in meristem development and leaf morphogenesis. Recent studies have demonstrated that KNAT1/BP regulates the ... The KNAT1 gene is a member of the Class I KNOXhomeobox gene family and is thought to play an important role in meristem development and leaf morphogenesis. Recent studies have demonstrated that KNAT1/BP regulates the architecture of the inflorescence by affecting pedicle development in Arabidopsis thaliana. Herein, we report the characterization of an Arabidopsis T-DNA insertion mutant that shares considerable phenotypic similarity to the previously identified mutant brevipedicle (bp). Molecular and genetic analyses showed that the mutant is allelic to bp and that the T-DNA is located within the first helix of the KNAT1 homeodomain (HD). Although the mutation causes a typical abnormality of short pedicles, propendent siliques, and semidwarfism, no obvious defects are observed in the vegetative stage. A study on cell morphology showed that asymmetrical division and inhibition of cell elongation contribute to the downward-pointing and shorter pedicle phenotype. Loss of KNAT/BPfunction results in the abnormal development of abscission zones. Mlcroarray analysis of gene expression profiling suggests that KNAT1/BP may regulate abscission zone development through hormone signaling and hormone metabolism in Arabidopsis. 展开更多
关键词 abscission zone Arabidopsis thaliana BP/KNAT1 MICROARRAY pedicle.
原文传递
A Genome-Wide Transcription Analysis Reveals a Close Correlation of Promoter INDEL Polymorphism and Heterotic Gene Expression in Rice Hybrids 被引量:25
2
作者 Hui-Yong Zhang Hang He +8 位作者 Liang-Bi Chen Lei Li man-Zhong Liang Xiang-Feng Wang Xi-Gang Liu Guang-Ming He Run-Sheng Chen li-geng ma Xing Wang Deng 《Molecular Plant》 SCIE CAS CSCD 北大核心 2008年第5期720-731,共12页
Heterosis, or hybrid vigor, refers to the phenomenon in which hybrid progeny of two inbred varieties exhibits enhanced growth or agronomic performance. Although a century-long history of research has generated several... Heterosis, or hybrid vigor, refers to the phenomenon in which hybrid progeny of two inbred varieties exhibits enhanced growth or agronomic performance. Although a century-long history of research has generated several hypotheses regarding the genetic basis of heterosis, the molecular mechanisms underlying heterosis and heterotic gene expression remain elusive. Here, we report a genome-wide gene expression analysis of two heterotic crosses in rice, taking advantage of its fully sequenced genomes. Approximately 7-9% of the genes were differentially expressed in the seedling shoots from two sets of heterotic crosses, including many transcription factor genes, and exhibited multiple modes of gene action. Comparison of the putative promoter regions of the ortholog genes between inbred parents revealed extensive sequence variation, particularly small insertions/deletions (INDELs), many of which result in the formation/disruption of putative cis-regulatory elements. Together, these results suggest that a combinatorial interplay between expression of transcription factors and polymorphic promoter cis-regulatory elements in the hybrids is one plausible molecular mechanism underlying heterotic gene action and thus heterosis in rice. 展开更多
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部