4.7 Article

Hormones in wheat kernels during embryony

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JOURNAL OF PLANT PHYSIOLOGY
卷 159, 期 4, 页码 379-386

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ELSEVIER GMBH, URBAN & FISCHER VERLAG
DOI: 10.1078/0176-1617-00718

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development; ELISA; embryology; plant growth regulators; seed fill

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Abscisic acid (ABA), indole-3-acetic acid (IAA) and six cytokinins in wheat (Triticum aestivum L.) grain components were extracted, from 0 to 25 d post anthesis (DPA), and quantified by noncompetitive indirect ELISA. At 3 DPA, which coincides with early embryo and endosperm cell divisions, whole kernel hormone levels in mumol kg(-1) dry mass (DM) were: zeatin (Z) 30, IAA 4, zeatin riboside 1.8, ABA 1.0, other cytokinins < 0.6. Endosperm Z content declined from about 13 mumol kg(-1) DM at 6 DPA to 0.1 mumol kg(-1) DIM by 9 DPA and remained low thereafter. Generally by 9 IDPA, embryo differentiation is nearly complete, and the endosperm mitotic index has decreased to near zero. At 13 IDPA, Z content in embryos was 0.9 mumol kg(-1) DIM, and then decreased to 0.3 mumol kg(-1) DM by 25 DPA. Endosperm IAA content remained low through 9 DPA (about 6 mumol kg(-1) DM) and then increased sharply to about 38 mumol kg(-1) DM by 19 and 25 DPA. In contrast, embryo IAA content decreased from about 34 mumol kg(-1) DM at 13 DPA to about 15 mumol kg(-1) DIM at 19 and 25 IDPA. Endosperm ABA content fluctuated between 1.0 and 4.5 mumol kg(-1) DM between 6 and 25 DPA while embryo ABA content fluctuated between 3.4 and 4.8 mumol kg(-1) DM between 13 and 25 IDPA. These hormone changes may be involved in the coordinated development of embryos in ovulo.

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