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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Expression and interaction of small heat shock proteins (sHsps) in rice in response to heat stress.
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Expression and interaction of small heat shock proteins (sHsps) in rice in response to heat stress.

机译:水稻对热胁迫的响应和小的热激蛋白(sHsps)的表达和相互作用。

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摘要

The inherent immobility of rice (Oryza sativa L.) limited their abilities to avoid heat stress and required them to contend with heat stress through innate defense abilities in which heat shock proteins played important roles. In this study, Hsp26.7, Hsp23.2, Hsp17.9A, Hsp17.4 and Hsp16.9A were up-regulated in Nipponbare during seedling and anthesis stages in response to heat stress. Subsequently, the expressing levels of these five sHsps in the heat-tolerant rice cultivar, Co39, were all significantly higher than that in the heat-susceptible rice cultivar, Azucena. This indicated that the expressive level of these five sHsps was positively related to the ability of rice plants to avoid heat stress. Thus, the expression level of these five sHsps can be regarded as bio-markers for screening rice cultivars with different abilities to avoid heat stress. Hsp18.1, Hsp17.9A, Hsp17.7 and Hsp16.9A, in the three rice cultivars under heat stress were found to be involved in one protein complex by Native-PAGE, and the interactions of Hsp18.1 and Hsp 17.7, Hsp18.1 and Hsp 17.9A, and Hsp17.7 and Hsp16.9A were further validated by yeast 2-hybridization. Pull down assay also confirmed the interaction between Hsp17.7 and Hsp16.9A in rice under heat stress. In conclusion, the up-regulation of the 5 sHsps is a key step for rice to tolerate heat stress, after that some sHsps assembled into a large hetero-oligomeric complex. In addition, through protein-protein interaction, Hsp101 regulated thiamine biosynthesis, and Hsp82 homology affected nitrogen metabolism, while Hsp81-1 were involved in the maintenance of sugar or starch synthesis in rice plants under heat stress. These results provide new insight into the regulatory mechanism of sHsps in rice.
机译:水稻固有的固定性限制了它们避免热应激的能力,并要求它们通过先天防御能力与热应激抗衡,其中先天防御能力在其中发挥了重要作用。在这项研究中,Hsp26.7,Hsp23.2,Hsp17.9A,Hsp17.4和Hsp16.9A在Nipponbare的苗期和花期响应热胁迫而上调。随后,这五个sHsps在耐热水稻品种Co39中的表达水平均显着高于在热敏水稻品种Azucena中的表达水平。这表明这五个sHsps的表达水平与水稻植物避免热胁迫的能力呈正相关。因此,这5种sHsps的表达水平可被认为是筛选具有不同避免热胁迫能力的水稻品种的生物标记。通过Native-PAGE,发现3个受热胁迫的水稻品种中的Hsp18.1,Hsp17.9A,Hsp17.7和Hsp16.9A与一种蛋白质复合物有关,并且Hsp18.1与Hsp17.7,Hsp18的相互作用.1和Hsp 17.9A,以及Hsp17.7和Hsp16.9A通过酵母2-杂交进一步验证。下拉分析还证实了热胁迫下水稻中Hsp17.7和Hsp16.9A之间的相互作用。总之,在一些sHsps组装成一个大的异聚寡聚体之后,5 sHsps的上调是水稻耐受热胁迫的关键步骤。此外,通过蛋白-蛋白相互作用,Hsp101调节硫胺素的生物合成,Hsp82同源性影响氮代谢,而Hsp81-1参与维持热胁迫下水稻中糖或淀粉的合成。这些结果提供了对水稻中sHsps调控机制的新见解。

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