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OsWR2-RNAi对水稻角质层生物合成和耐旱性的影响 被引量:2
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作者 王莎 贺勇 +4 位作者 罗光宇 姚敏 张旭 陈信波 周小云 《作物学报》 CAS CSCD 北大核心 2017年第3期315-323,共9页
植物的角质层在干旱胁迫下对降低植物的非气孔性失水起重要作用。对水稻蜡质相关转录因子基因OsWR2过表达研究发现,OsWR2对水稻表皮蜡质和角质的含量和组分构成以及非气孔性失水均有影响,推测OsWR2是植物角质层代谢途径中重要的调控基... 植物的角质层在干旱胁迫下对降低植物的非气孔性失水起重要作用。对水稻蜡质相关转录因子基因OsWR2过表达研究发现,OsWR2对水稻表皮蜡质和角质的含量和组分构成以及非气孔性失水均有影响,推测OsWR2是植物角质层代谢途径中重要的调控基因。本研究通过构建OsWR2-RNAi载体并转入水稻获得抑制OsWR2表达的突变转基因植株,发现OsWR2-RNAi水稻叶片角质层组成和含量明显变化,其蜡质组分中醛类、醇类和烷烃类的减少导致表皮蜡质晶体的积累和表皮蜡质总量减少14.8%,角质单体中C16:0ω-OH、C18:1ω-OH脂肪酸和di-OH脂肪酸等角质组分含量的显著降低导致OsWR2-RNAi水稻叶片中角质单体总量减少36.2%。幼苗干旱处理前后,OsWR2-RNAi植株自由脯氨酸含量与野生型相比变化不大,但其表皮通透性、水分散失率和MAD含量显著增加,幼苗耐旱性降低。本研究结果进一步证实OSWR2对水稻蜡质和角质生物合成及对非气孔性失水的调控作用,有望为水稻耐旱性状的改良提供重要基因资源。 展开更多
关键词 oswr2 RNAI 植物角质层 干旱胁迫 非气孔性失水
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OsWR2 recruits HDA704 to regulate the deacetylation of H4K8ac in the promoter of OsABI5 in response to drought stress 被引量:1
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作者 Yalu Guo Yiqing Tan +7 位作者 Minghao Qu Kai Hong Longjun Zeng Lei Wang Chuxiong Zhuang Qian Qian Jiang Hu Guosheng Xiong 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2023年第7期1651-1669,共19页
Drought stress is a major environmental factor that limits the growth, development, and yield of rice(Oryza sativa L.). Histone deacetylases(HDACs) are involved in the regulation of drought stress responses. HDA704 is... Drought stress is a major environmental factor that limits the growth, development, and yield of rice(Oryza sativa L.). Histone deacetylases(HDACs) are involved in the regulation of drought stress responses. HDA704 is an RPD3/HDA1 class HDAC that mediates the deacetylation of H4K8(lysine 8of histone H4) for drought tolerance in rice. In this study, we show that plants overexpressing HDA704(HDA704-OE) are resistant to drought stress and sensitive to abscisic acid(ABA), whereas HDA704 knockout mutant(hda704) plants displayed decreased drought tolerance and ABA sensitivity.Transcriptome analysis revealed that HDA704 regulates the expression of ABA-related genes in response to drought stress. Moreover, HDA704 was recruited by a drought-resistant transcription factor,WAX SYNTHESIS REGULATORY 2(Os WR2), and co-regulated the expression of the ABA biosynthesis genes NINE-CIS-EPOXYCAROTENOID DIOXYGENASE 3(NCED3), NCED4, and NCED5 under drought stress. HDA704 also repressed the expression of ABA-INSENSITIVE 5(Os ABI5) and DWARF AND SMALL SEED 1(Os DSS1) by regulating H4K8ac levels in the promoter regions in response to polyethylene glycol 6000 treatment. In agreement, the loss of Os ABI5 function increased resistance to dehydration stress in rice. Our results demonstrate that HDA704 is a positive regulator of the drought stress response and offers avenues for improving drought resistance in rice. 展开更多
关键词 drought stress HDA704 histone acetylation OsABI5 oswr2 RICE
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