首页> 外文期刊>The Plant Cell >The MADS29 transcription factor regulates the degradation of the nucellus and the nucellar projection during rice seed development.
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The MADS29 transcription factor regulates the degradation of the nucellus and the nucellar projection during rice seed development.

机译:MADS29 转录因子调节水稻种子发育过程中细胞核的降解和细胞核的投射。

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摘要

The MADS box transcription factors are critical regulators of rice (Oryza sativa) reproductive development. Here, we here report the functional characterization of a rice MADS box family member, MADS29, which is preferentially expressed in the nucellus and the nucellar projection. Suppressed expression of MADS29 resulted in abnormal seed development; the seeds were shrunken, displayed a low grain-filling rate and suppressed starch biosynthesis, and contained abnormal starch granules. Detailed analysis indicated that the abnormal seed development is due to defective programmed cell death (PCD) of the nucellus and nucellar projection, which was confirmed by a TUNEL assay and transcriptome analysis. Further studies showed that expression of MADS29 is induced by auxin and MADS29 protein binds directly to the putative promoter regions of genes that encode a Cys protease and nucleotide binding site-Leu-rich repeat proteins, thereby stimulating the PCD. This study identifies MADS29 as a key regulator of early rice seed development by regulating the PCD of maternal tissues. It provides informative clues to elucidate the regulatory mechanism of maternal tissue degradation after fertilization and to facilitate the studies of endosperm development and seed filling.
机译:MADS盒转录因子是水稻(oryza sativa )生殖发育的关键调节因子。在这里,我们在此报告水稻MADS盒家族成员 MADS29 的功能特征,该特征优先在细胞核和细胞核突起中表达。 MADS29 的表达受抑制导致种子发育异常;种子萎缩,籽粒填充率低,淀粉的生物合成受到抑制,并且含有异常的淀粉颗粒。详细的分析表明,异常的种子发育是由于细胞核和细胞核投射的缺陷性程序性细胞死亡(PCD)造成的,这一点已通过TUNEL分析和转录组分析得到了证实。进一步的研究表明,生长素诱导了 MADS29 的表达,MADS29蛋白直接与编码Cys蛋白酶和富含核苷酸结合位点-Leu的重复蛋白的基因的推定启动子区域结合,从而刺激PCD。 。这项研究通过调节母体组织的PCD,将MADS29鉴定为水稻早期种子发育的关键调节剂。它提供了有益的线索,阐明了受精后母体组织降解的调控机制,并有助于研究胚乳发育和种子填充。

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