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低聚原花青素通过维持能量稳态赋予水稻耐寒性。

Oligomeric Proanthocyanidins Confer Cold Tolerance in Rice through Maintaining Energy Homeostasis.

作者信息

Li Juncai, Feng Baohua, Yu Pinghui, Fu Weimeng, Wang Wenting, Lin Jie, Qin Yebo, Li Hubo, Chen Tingting, Xu Chunmei, Tao Longxing, Wu Zhihai, Fu Guanfu

机构信息

Agronomy College, Jilin Agricultural University, Changchun 130118, China.

National Key Laboratory of Rice Biology, China National Rice Research Institute, Hangzhou 310006, China.

出版信息

Antioxidants (Basel). 2022 Dec 29;12(1):79. doi: 10.3390/antiox12010079.

Abstract

Oligomeric proanthocyanidins (OPCs) are abundant polyphenols found in foods and botanicals that benefit human health, but our understanding of the functions of OPCs in rice plants is limited, particularly under cold stress. Two rice genotypes, named Zhongzao39 (ZZ39) and its recombinant inbred line RIL82, were subjected to cold stress. More damage was caused to RIL82 by cold stress than to ZZ39 plants. Transcriptome analysis suggested that OPCs were involved in regulating cold tolerance in the two genotypes. A greater increase in OPCs content was detected in ZZ39 than in RIL82 plants under cold stress compared to their respective controls. Exogenous OPCs alleviated cold damage of rice plants by increasing antioxidant capacity. ATPase activity was higher and poly (ADP-ribose) polymerase (PARP) activity was lower under cold stress in ZZ39 than in RIL82 plants. Importantly, improvements in cold tolerance were observed in plants treated with the OPCs and 3-aminobenzamide (PARP inhibitor, 3ab) combination compared to the seedling plants treated with HO, OPCs, or 3ab alone. Therefore, OPCs increased ATPase activity and inhibited PARP activity to provide sufficient energy for rice seedling plants to develop antioxidant capacity against cold stress.

摘要

低聚原花青素(OPCs)是在有益于人类健康的食物和植物中大量存在的多酚类物质,但我们对OPCs在水稻植株中的功能了解有限,尤其是在低温胁迫下。对两个水稻基因型,即中早39(ZZ39)及其重组自交系RIL82进行了低温胁迫处理。低温胁迫对RIL82造成的损害比对ZZ39植株造成的更大。转录组分析表明,OPCs参与调控这两个基因型的耐冷性。与各自的对照相比,在低温胁迫下,ZZ39中检测到的OPCs含量增幅大于RIL82植株。外源OPCs通过提高抗氧化能力减轻了水稻植株的冷害。在低温胁迫下,ZZ39中ATP酶活性高于RIL82植株,而聚(ADP - 核糖)聚合酶(PARP)活性低于RIL82植株。重要的是,与单独用HO、OPCs或3 - 氨基苯甲酰胺(PARP抑制剂,3ab)处理的幼苗植株相比,用OPCs和3 - 氨基苯甲酰胺(3ab)组合处理的植株耐冷性有所提高。因此,OPCs提高了ATP酶活性并抑制了PARP活性,为水稻幼苗植株发展抗冷胁迫的抗氧化能力提供了足够的能量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddd0/9854629/fcc99edc343d/antioxidants-12-00079-g001.jpg

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