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首页> 外文期刊>Crop Science >Hormonal Changes Caused by the Xenia Effect during Grain Filling of Normal Corn and High-Oil Corn Crosses
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Hormonal Changes Caused by the Xenia Effect during Grain Filling of Normal Corn and High-Oil Corn Crosses

机译:普通玉米和高油玉米杂交中籽粒充实过程中Xenia效应引起的激素变化

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The xenia effect results from the cross-fertilization of nonrelated lines of crops, which causes a grain to produce a germ or embryo that is much larger than average. It is a significant genetic component in TopCross grain production systems, which can affect grain yield and quality. This study measured hormone variations during grain filling of normal corn (Zea mays L.) hybrids, and normal corn crossed with a high-oil corn. Two normal corn hybrids, Nongda 108 (ND108) and Liaoyu 20 (LY20), were used as the females. A high-oil corn hybrid, HOC115, was used as the male. Compared with self-fertilization, the cross between ND108 and HOC115 resulted in higher yield, while the cross of LY20 with HOC115 had lower yield. The changes in grain yield were mainly due to grain weight. Both hormone levels and endosperm cell division rates increased rapidly during the early stage of grain development, and then declined gradually until maturity. The levels of indole-3-acetic acid, gibberellin (GA(3)), zeatin riboside, and abscisic acid at an early developmental stage were closely related to the grain weight at maturity. Higher endosperm cell division rates and cell numbers were associated with lower levels of GA(3), and higher filling rates were associated with higher GA(3). The xenia effect was mainly mediated through changes of hormone contents, which affected endosperm cell division, grain sink strength, and, therefore, changed grain weight and grain yield.
机译:Xenia效应是由不相关的作物系互作导致的,这导致谷物产生的胚芽或胚芽比平均值大得多。它是TopCross谷物生产系统中的重要遗传成分,会影响谷物的产量和质量。这项研究测量了普通玉米(Zea mays L.)杂种和普通玉米与高油玉米杂交后籽粒充填过程中的激素变化。两个正常的玉米杂交种,农大108(ND108)和辽豫20(LY20),用作雌性。高油玉米杂交种HOC115用作雄性。与自施相比,ND108和HOC115的杂交产量较高,而LY20和HOC115的杂交产量较低。谷物产量的变化主要归因于谷物重量。在谷物发育的早期,激素水平和胚乳细胞分裂速率都迅速增加,然后逐渐下降直至成熟。吲哚-3-乙酸,赤霉素(GA(3)),玉米蛋白核糖苷和脱落酸在发育早期与成熟时的谷粒重量密切相关。较高的胚乳细胞分裂率和细胞数量与较低的GA(3)相关,而较高的填充率与较高的GA(3)相关。 Xenia效应主要是通过激素含量的变化来介导的,激素含量的变化影响胚乳细胞的分裂,籽粒的沉陷强度,进而影响籽粒的重量和籽粒的产量。

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