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典型文献
Cyclin gene SlCycB1 alters plant architecture in association with histone H3.2 in tomato
文献摘要:
Cell cycle regulation plays a critical role in plant growth and development. In this study, the role of a tomato cell cycle gene SlCycB1 has been characterized. Expression analysis revealed that SlCycB1 was mostly expressed in stem, root, and leaves, with relative lower expression in flower and fruit. Tomato plants overexpressing SlCycB1 exhibited a reduction in cell number and increased cell size leading to the growth retar-dation. Furthermore, yeast two-hybrid analysis and bimolecular fluorescence complementation revealed that SlCycB1 interacted with histone H3.2, an essential component of the nucleosome. Histone H3.2 was transcriptionally up-regulated in the SlCycB1 overexpressing tomato lines. Furthermore, the overexpression of histone H3.2 in transgenic plants showed similar phenotypes to SlCycB1 overexpressing lines. Based on these findings, we concluded that SlCycB1 overexpression altered tomato architecture in association with histone H3.2.
文献关键词:
作者姓名:
Tingyan Zhang;Yaru Wang;Shoaib Munir;Taotao Wang;Zhibiao Ye;Junhong Zhang;Yuyang Zhang
作者机构:
Key Laboratory of Horticultural Plant Biology(Ministry of Education),College of Horticulture and Forestry Science,Huazhong Agricultural University,Wuhan 430070,China;Hubei Hongshan Laboratry,Wuhan 430070,China
引用格式:
[1]Tingyan Zhang;Yaru Wang;Shoaib Munir;Taotao Wang;Zhibiao Ye;Junhong Zhang;Yuyang Zhang-.Cyclin gene SlCycB1 alters plant architecture in association with histone H3.2 in tomato)[J].园艺学报(英文版),2022(03):341-350
A类:
SlCycB1,retar
B类:
Cyclin,gene,alters,architecture,association,histone,H3,tomato,Cell,cycle,regulation,plays,critical,role,growth,development,In,this,study,cell,has,been,characterized,Expression,analysis,revealed,that,was,mostly,expressed,stem,root,leaves,relative,flower,fruit,Tomato,plants,overexpressing,exhibited,reduction,number,increased,size,leading,dation,Furthermore,yeast,two,hybrid,bimolecular,fluorescence,complementation,interacted,essential,component,nucleosome,Histone,transcriptionally,up,regulated,lines,overexpression,transgenic,showed,similar,phenotypes,Based,these,findings,concluded,altered
AB值:
0.522875
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