首页> 外文学位 >Identification of quantitative trait loci (QTL) affecting endoreduplication and characterization of cyclin dependent kinase inhibitors in developing maize (Zea mays L.) endosperm.
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Identification of quantitative trait loci (QTL) affecting endoreduplication and characterization of cyclin dependent kinase inhibitors in developing maize (Zea mays L.) endosperm.

机译:鉴定影响玉米胚乳胚乳内复制和细胞周期蛋白依赖性激酶抑制剂特征的数量性状基因座(QTL)。

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Endoreduplication is a process of genome duplication without mitosis. Although endoreduplication is common among plants and animals, the molecular mechanisms involved with this process are not fully understood. Two strategies were used to determine the genetic components involved with endoreduplication. One, based on QTL analysis and the other strategy involved identifying cell cycle candidate genes, and characterizing them in regard to endoreduplication.; To map genes influencing endoreduplication, four backcross populations were created from crosses between a high (Sg18) and a low (Mo17) endoreduplication inbred and their F1 (Sg18 x Mo17) progeny. In all, fourteen quantitative trait loci were identified that affect the degree of endoreduplication in maize endosperm. Six QTLs were mapped with a triploid mode of inheritance in the endosperm. Two QTLs were mapped with parent-of-origin effect inheritance. Six QTLs were mapped using a model that considers genetic interaction between embryo and endosperm.; Previous studies with maize endosperm showed that accumulation of a cyclin-dependent kinase (CDK) inhibitor is coincident with the onset of endoreduplication, but the identity of this inhibitor is unknown. We therefore tried to determine if cyclin-dependent kinase inhibitor (CKI) activity is required for the occurrence of endoreduplication in maize endosperm. The expression of two maize CKI genes, Zeama;CKI;1 and Zeama;CKI;2, were characterized in developing endosperm. The accumulation of Zeama;CKI;1 RNA is not developmentally regulated, and its expression encompasses the period in which endoreduplication takes place. In contrast, Zeama;CKI;2 gene expression is developmentally regulated in the endosperm, since its protein level decreases after 13 DAP. Both proteins were able to inhibit the maize Cdc2/CDK kinase activity associated with p13 Suc1. They also specifically inhibited cyclin A1;3/ and cyclin D5;1/-associated CDK activities, but not cyclin B1;3/CDK. Although Zeama;CKI;1 was found to be associated with the endosperm CKI activity, it did not account for all of the CDK inhibitor. Over-expression of ZeamaCKI1 in maize embryonic calli that ectopically expressed the wheat dwarf virus RepA protein, which counteracts retinoblastoma-related protein (RBR) function in the cell cycle, led to an additional round of DNA replication without nuclear division. However, a role for Zeama;CKI;1 in endoreduplication could not be demonstrated in maize endosperm.
机译:核内复制是没有有丝分裂的基因组复制过程。尽管内复制在植物和动物中很常见,但是与该过程有关的分子机制尚未完全了解。两种策略被用来确定与核内复制有关的遗传成分。一种基于QTL分析,另一种策略涉及鉴定细胞周期候选基因,并就内复制进行表征。为了定位影响内复制的基因,从高内复制(Sg18)和低内复制(Mo17)与其F1(Sg18 x Mo17)后代的杂交中创建了四个回交群体。总共确定了14个影响玉米胚乳内复制的程度的数量性状基因座。用胚乳中的三倍体遗传模式绘制了六个QTL。映射了两个具有原产地效应继承的QTL。使用考虑胚胎和胚乳之间遗传相互作用的模型对六个QTL进行了定位。以前对玉米胚乳的研究表明,细胞周期蛋白依赖性激酶(CDK)抑制剂的积累与核内复制的发生是一致的,但该抑制剂的身份尚不清楚。因此,我们试图确定玉米胚乳中核内复制的发生是否需要细胞周期蛋白依赖性激酶抑制剂(CKI)活性。在发育胚乳中鉴定了两个玉米CKI基因Zeama; CKI; 1和Zeama; CKI; 2的表达。 Zeama; CKI; 1 RNA的积累不受发育调节,其表达涵盖了核内复制发生的时期。相反,Zeama; CKI; 2基因的表达在胚乳中受到发育调节,因为其蛋白质水平在13 DAP后下降。两种蛋白都能够抑制与p13 Suc1相关的玉米Cdc2 / CDK激酶活性。它们还特异性抑制细胞周期蛋白A1; 3 /和细胞周期蛋白D5; 1 /相关的CDK活性,但不抑制细胞周期蛋白B1; 3 / CDK。尽管发现Zeama; CKI; 1与胚乳的CKI活性有关,但它并不能解释所有的CDK抑制剂。玉米胚愈伤组织中过表达ZeamaCKI1的异位表达小麦矮病毒RepA蛋白,该蛋白抵消了细胞周期中视网膜母细胞瘤相关蛋白(RBR)的功能,导致了另一轮DNA复制而没有核分裂。然而,玉米胚乳中未证明Zeama; CKI; 1在核内复制中的作用。

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