首页> 外文期刊>Journal of Plant Biology >Overexpression of stress-related genes, BrERF4 and AtMYB44, in Arabidopsis thaliana alters cell expansion but not cell proliferation during leaf growth
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Overexpression of stress-related genes, BrERF4 and AtMYB44, in Arabidopsis thaliana alters cell expansion but not cell proliferation during leaf growth

机译:拟南芥中与胁迫相关的基因BrERF4和AtMYB44的过表达改变了细胞的生长,但没有改变叶片生长过程中的细胞增殖

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We have previously shown that overexpression of BrERF4 (B rassicar apa E THYLENE- R ESPONSIVE F ACTOR4) increases salt and drought tolerance in Arabidopsis plants, and also retarded organ growth. In the present study, we investigated in detail the leaf growth retardation phenotype at the cellular level. Results showed that BrERF4-overexpressing Arabidopsis plants developed small leaves by reducing their cell size but not the cell number. Detailed kinematic analysis revealed that changes in cell size appeared from the very early stages of leaf development, directly affecting the size of leaf organs. RT-PCR analysis showed that expression of expansin genes was reduced in the overexpressors, whereas expression of the cell cycle gene, CYCB1;1, was not altered at all. In addition, overexpression of AtMYB44, another stress-related transcription factor gene, reduced leaf growth, which also resulted from reduction in cell size but not in cell number. These results suggest that overexpression of those transcription factors negatively affects cell expansion during leaf growth without altering cell number. We discuss about the advantages that the BrERF4- or AtMYB44-induced cell expansion retardation confers on plants under natural environmental adversity.
机译:先前我们已经证明,BrERF4(Brasassicar apa E THYLENE-R ESPONSIVE F ACTOR4)的过表达增加了拟南芥植物的耐盐和耐旱性,并且还阻碍了器官的生长。在本研究中,我们在细胞水平上详细研究了叶片生长延迟表型。结果表明,过量表达BrERF4的拟南芥植物通过减少细胞大小而不是细胞数量来发育小叶片。详细的运动学分析表明,细胞大小的变化是从叶片发育的早期开始出现的,直接影响叶片器官的大小。 RT-PCR分析表明,expansin基因的表达在过表达者中减少,而细胞周期基因CYCB1; 1的表达则完全没有改变。此外,另一个与胁迫相关的转录因子基因AtMYB44的过表达减少了叶片的生长,这也是由于细胞大小的减少而不是细胞数量的减少。这些结果表明,这些转录因子的过表达对叶片生长过程中的细胞扩增产生负面影响,而不会改变细胞数量。我们讨论了在自然环境逆境下,BrERF4-或AtMYB44诱导的细胞扩增延迟赋予植物的优势。

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