陈赛华Saihua Chen

副高级

副高级 博士生导师

电子邮箱:

入职时间:2017-05-01

所在单位:农学院

职务:农学院作物遗传育种与应用生物技术系副主任

学历:博士研究生毕业

办公地点:扬州大学荷花池校区逸夫楼东楼308室

在职信息:在岗

主要任职:作物遗传育种系副主任

论文成果

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ESCRT‐III component OsSNF7.2 modulates leaf rolling by trafficking and endosomal degradation of auxin biosynthetic enzyme OsYUC8 in rice

发布时间:2024-03-10 点击次数:

DOI码:10.1111/jipb.13460
发表刊物:Journal of Integrative Plant biolgoy
关键字:bulliform cell, leaf rolling, OsSNF7.2, OsYUC8, rice (Oryza sativa), vacuolar degradation
摘要:he endosomal sorting complex required for transport (ESCRT) is highly conserved in eukaryotic cells and plays an essential role in the biogenesis of multivesicular bodies and cargo degradation to the plant vacuole or lysosomes. Although ESCRT components affect a variety of plant growth and development processes, their impact on leaf development is rarely reported. Here, we found that OsSNF7.2, an ESCRT‐III component, controls leaf rolling in rice (Oryza sativa). The Ossnf7.2 mutant rolled leaf 17 (rl17) has adaxially rolled leaves due to the decreased number and size of the bulliform cells. OsSNF7.2 is expressed ubiquitously in all tissues, and its protein is localized in the endosomal compartments. OsSNF7.2 homologs, including OsSNF7, OsSNF7.3, and OsSNF7.4, can physically interact with OsSNF7.2, but their single mutation did not result in leaf rolling. Other ESCRT complex subunits, namely OsVPS20, OsVPS24, and OsBRO1, also interact with OsSNF7.2. Further assays revealed that OsSNF7.2 interacts with OsYUC8 and aids its vacuolar degradation. Both Osyuc8 and rl17 Osyuc8 showed rolled leaves, indicating that OsYUC8 and OsSNF7.2 function in the same pathway, conferring leaf development. This study reveals a new biological function for the ESCRT‐III components, and provides new insights into the molecular mechanisms underlying leaf rolling.
论文类型:Research Atricle
文献类型:J
卷号:0
页面范围:0
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发表时间:2023-01-10
收录刊物:SCI