ZmDof3, a maize endosperm-specific Dof protein gene, regulates starch accumulation and aleurone development in maize endosperm
Key message To explore the function of Dof transcription factors during kernel development in maize, we first identified Dof genes in the maize genome. We found that ZmDof3 was exclusively expressed in the endosperm of maize kernel and had the features of a Dof transcription factor. Suppression of Z...
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Veröffentlicht in: | Plant molecular biology 2017, Vol.93 (1-2), p.7-20 |
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Sprache: | eng |
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To explore the function of Dof transcription factors during kernel development in maize, we first identified Dof genes in the maize genome. We found that ZmDof3 was exclusively expressed in the endosperm of maize kernel and had the features of a Dof transcription factor. Suppression of
ZmDof3
resulted in a defective kernel phenotype with reduced starch content and a partially patchy aleurone layer. The expression levels of starch synthesis-related genes and aleurone differentiation-associated genes were down-regulated in
ZmDof3
knockdown kernels, indicating that ZmDof3 plays an important role in maize endosperm development.
The maize endosperm, occupying a large proportion of the kernel, plays an important role in seed development and germination. Current knowledge regarding the regulation of endosperm development is limited. Dof proteins, a family of plant-specific transcription factors, play critical roles in diverse biological processes. In this study, an endosperm-specific Dof protein gene,
ZmDof3
, was identified in maize through genome-wide screening. Suppression of
ZmDof3
resulted in a defective kernel phenotype. The endosperm of
ZmDof3
knockdown kernels was loosely packed with irregular starch granules observed by electronic microscope. Through genome-wide expression profiling, we found that down-regulated genes were enriched in GO terms related to carbohydrate metabolism. Moreover, ZmDof3 could bind to the Dof core element in the promoter of starch biosynthesis genes
Du1
and
Su2
in vitro and in vivo. In addition, the aleurone at local position in mature
ZmDof3
knockdown kernels varied from one to three layers, which consisted of smaller and irregular cells. Further analyses showed that knockdown of
ZmDof3
reduced the expression of
Nkd1
, which is involved in aleurone cell differentiation, and that ZmDof3 could bind to the Dof core element in the
Nkd1
promoter. Our study reveals that ZmDof3 functions in maize endosperm development as a positive regulator in the signaling system controlling starch accumulation and aleurone development. |
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ISSN: | 0167-4412 1573-5028 |
DOI: | 10.1007/s11103-016-0543-y |