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首页> 外文期刊>Plant Molecular Biology >A member of the maize isopentenyl transferase gene family, Zea mays isopentenyl transferase 2 (ZmIPT2), encodes a cytokinin biosynthetic enzyme expressed during kernel development Cytokinin biosynthesis in maize
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A member of the maize isopentenyl transferase gene family, Zea mays isopentenyl transferase 2 (ZmIPT2), encodes a cytokinin biosynthetic enzyme expressed during kernel development Cytokinin biosynthesis in maize

机译:玉米异戊烯基转移酶基因家族的一个成员,玉米(Zea mays)异戊烯基转移酶2(ZmIPT2),编码玉米籽粒发育过程中表达的细胞分裂素生物合成酶。

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摘要

Cytokinins (CKs) are plant hormones that regulate a large number of processes associated with plant growth and development such as induction of stomata opening, delayed senescence, suppression of auxin-induced apical dominance, signaling of nitrogen availability, differentiation of plastids and control of sink strength. In maize, CKs are thought to play an important role in establishing seed size and increasing seed set under normal and unfavorable environmental conditions therefore influencing yield. In recent years, the discovery of isopentenyl transferase (IPT) genes in plants has shed light on the CK biosynthesis pathway in plants. In an effort to increase our understanding of the role played by CKs in maize development and sink-strength, we identified several putative IPT genes using a bioinformatics approach. We focused our attention on one gene in particular, ZmIPT2, because of its strong expression in developing kernels. The expression of the gene and its product overlays the change in CK levels in developing kernels suggesting a major role in CK biosynthesis for kernel development. We demonstrate that at 8–10 days after pollination (DAP) the endosperm and especially the basal transfer cell layer (BETL) is a major site of ZmIPT2 expression, and that this expression persists in the BETL and the developing embryo into later kernel development stages. We show that ectopic expression of ZmIPT2 in calli and in planta created phenotypes consistent with CK overproduction. We also show that ZmIPT2 preferentially uses ADP and ATP over AMP as the substrates for dimethylallyl diphosphate (DMAPP) IPT activity. The expression pattern of ZmIPT2 in the BETL, endosperm and embryo during kernel development will be discussed with an emphasis on the suggested role of CKs in determining sink-strength and grain production in crop plants.
机译:细胞分裂素(CKs)是一种植物激素,可调节与植物生长和发育相关的许多过程,例如诱导气孔开放,延缓衰老,抑制植物生长素诱导的根尖优势,信号传递氮素,质体分化和控制汇强度。在玉米中,CK被认为在正常和不利的环境条件下,在确定种子大小和增加结实率方面起着重要作用,从而影响产量。近年来,植物中异戊烯基转移酶(IPT)基因的发现为植物的CK生物合成途径提供了线索。为了加深我们对CK在玉米发育和库位强度中所发挥作用的理解,我们使用生物信息学方法鉴定了几种推定的IPT基因。我们特别关注一种基因,特别是ZmIPT2,因为它在正在发育的谷粒中表达强。该基因及其产物的表达覆盖了正在发育的玉米粒中CK水平的变化,表明在CK生物合成中玉米粒的发育中起着重要作用。我们证明,在授粉(DAP)后8–10天,胚乳,尤其是基底转移细胞层(BETL)是ZmIPT2表达的主要部位,并且该表达在BETL和发育中的胚胎中一直存在,直到后期的核发育阶段。我们表明,ZmIPT2在愈伤组织和植物中的异位表达创建与CK过量生产相符的表型。我们还显示ZmIPT2优先使用ADP和ATP而不是AMP作为二磷酸二甲基烯丙酯(DMAPP)IPT活性的底物。将讨论ZmIPT2在BETL,胚乳和胚胎在籽粒发育过程中的表达模式,并着重研究CKs在确定作物植物的库强度和谷物产量中的作用。

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