نتایج جستجو برای: mads box genes

تعداد نتایج: 505196  

Journal: :Journal of the Japanese Society for Horticultural Science 2014

2016
Ye Ai Qinghua Zhang Weining Wang Chunling Zhang Zhe Cao Manzhu Bao Yanhong He

Tagetes erecta is an important commercial plant of Asteraceae family. The male sterile (MS) and male fertile (MF) two-type lines of T. erecta have been utilized in F1 hybrid production for many years, but no report has been made to identify the genes that specify its male sterility that is caused by homeotic conversion of floral organs. In this study, transcriptome assembly and digital gene exp...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 1998
M Hasebe C K Wen M Kato J A Banks

The MADS genes encode a family of transcription factors, some of which control the identities of floral organs in flowering plants. To understand the role of MADS genes in the evolution of floral organs, five MADS genes (CMADS1, 2, 3, 4, and 6) were cloned from the fern Ceratopteris richardii, a nonflowering plant. A gene tree of partial amino acid sequences of seed plant and fern MADS genes sh...

Journal: :Genetics 2005
Laura M Zahn Hongzhi Kong James H Leebens-Mack Sangtae Kim Pamela S Soltis Lena L Landherr Douglas E Soltis Claude W Depamphilis Hong Ma

Members of the SEPALLATA (SEP) MADS-box subfamily are required for specifying the "floral state" by contributing to floral organ and meristem identity. SEP genes have not been detected in gymnosperms and seem to have originated since the lineage leading to extant angiosperms diverged from extant gymnosperms. Therefore, both functional and evolutionary studies suggest that SEP genes may have bee...

2012
Edouard I. Severing Aalt D. J. van Dijk Giuseppa Morabito Jacqueline Busscher-Lange Richard G. H. Immink Roeland C. H. J. van Ham

Several genome-wide studies demonstrated that alternative splicing (AS) significantly increases the transcriptome complexity in plants. However, the impact of AS on the functional diversity of proteins is difficult to assess using genome-wide approaches. The availability of detailed sequence annotations for specific genes and gene families allows for a more detailed assessment of the potential ...

Journal: :Molecular biology and evolution 2007
Chaoying He Hans Sommer Britta Grosardt Peter Huijser Heinz Saedler

MADS-domain proteins serve as regulators of plant development and often form dimers and higher order complexes to function. Heterotopic expression of MPF2, a MADS-box gene, in reproductive tissues is a key component in the evolution of the inflated calyx syndrome in Physalis, but RNAi studies demonstrate that MPF2 has also acquired a role in male fertility in Physalis floridana. Using the yeast...

Journal: :Plants 2023

Transcriptomic and gene expression analysis have greatly facilitated the identification characterization of transcriptional regulatory factors effectors involved in dormancy progression other physiological processes orchestrated during bud development peach temperate fruit species. Gene measurements are most usually based on average values from several or many individual buds. We performed sing...

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