Two ATP Binding Cassette G(ABCG)Transporters,OsABCG26 and OsABCG15,Collaboratively Regulate Rice Mal

来源 :2015全国植物生物学大会 | 被引量 : 0次 | 上传用户:xjtuzhanglei
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
  Male reproduction in higher plants requires the support of various metabolites including lipid molecules produced in the innermost anther wall layer,the tapetum,but how the molecules are allocated among different anther tissues remains largely unknown.Previously rice OsABCG15 and its Arabidopsis ortholog were shown to be required for pollen exine formation.Here,we report the significant role of OsABCG26 in regulating the development of anther cuticle and pollen exine together with OsABCG15 in rice.Cytological and chemical analysis indicate that osabcg26 shows reduced transport of lipidic molecules from tapetal cells for anther cuticle development.Supportively,the localization of OsABCG26 is on the plasma membrane of the anther wall layers.By contrast,OsABCG15 is polarly localized in tapetal plasma membrane facing anther locules.osabcg26 osabcg15 double mutant displays an almost complete absence of anther cuticle and pollen exine,similar to that of osabcg15 single mutant.Taken together,we propose that OsABCG26 and OsABCG15 collaboratively regulate rice male reproduction: OsABCG26 is mainly responsible for the transport of lipidic molecules from tapetal cells to anther wall layers,while OsABCG15 mainly is responsible for the export of lipidic molecules from the tapetal cells to anther locules for pollen exine development.
其他文献
  以库尔勒香梨(Pyrus bretschneideri Rehd.)为试验材料,选取花期夜晚平均气温有差异的两处果园,果园Ⅰ花期夜晚平均气温高于果园Ⅱ,在盛花期期间,对果园Ⅱ中香梨树体进行
会议
  细胞程序性死亡(Programmed Cell Death,PCD)不仅是一种特殊的细胞死亡类型,而且具有重要的生物学意义及复杂的分子生物学机制,植物PCD 在生长发育、器官形成和衰老、抗
会议
会议
会议
会议
  tRNA(Transfer RNA)是主要负责将mRNA 解码成相应的多肽序列的衔接分子.在所有生物体的tRNA 分子中,都存在核苷修饰现象,这些核苷修饰对于翻译的高效性和精确性非常重要,
会议
  Auxin,cytokinin(CK),and strigolactone(SL)interact to regulate shoot branching.CK has long been considered to be the only key phytohormone to promote lateral
会议
会议
  下胚轴顶钩(apical hook)的形成是双子叶植物适应生存环境的重要机制之一。当种子在土壤中萌发时,下胚轴顶钩起保护幼苗子叶和分生组织不受土粒机械伤害的功能,并能有效
会议
会议