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The apple 14-3-3 protein MdGRF11 interacts with the BTB protein MdBT2 to regulate nitrate deficiency-induced anthocyanin accumulation 被引量:4
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作者 Yi-Ran Ren Qiang Zhao +4 位作者 Yu-Ying Yang tian-en zhang Xiao-Fei Wang Chun-Xiang You Yu-Jin Hao 《Horticulture Research》 SCIE 2021年第1期265-278,共14页
Nitrogen is an important factor that affects plant anthocyanin accumulation.In apple,the nitrate-responsive BTB/TAZ protein MdBT2 negatively regulates anthocyanin biosynthesis.In this study,we found that MdBT2 undergo... Nitrogen is an important factor that affects plant anthocyanin accumulation.In apple,the nitrate-responsive BTB/TAZ protein MdBT2 negatively regulates anthocyanin biosynthesis.In this study,we found that MdBT2 undergoes posttranslational modifications in response to nitrate deficiency.Yeast two-hybrid,protein pull-down,and bimolecular fluorescence complementation(BiFC)assays showed that MdBT2 interacts with MdGRF11,a 14-3-3 protein;14-3-3 proteins compose a family of highly conserved phosphopeptide-binding proteins involved in multiple physiological and biological processes.The interaction of MdGRF11 negatively regulated the stability of the MdBT2 protein via a 26S proteasome-dependent pathway,which increased the abundance of MdMYB1 proteins to activate the expression of anthocyanin biosynthesis-related genes.Taken together,the results demonstrate the critical role of 14-3-3 proteins in the regulation of nitrate deficiency-induced anthocyanin accumulation.Our results provide a novel avenue to elucidate the mechanism underlying the induction of anthocyanin biosynthesis in response to nitrate deficiency. 展开更多
关键词 NITRATE GRF BTB
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调控Pt_(3)Zn合金化程度改善酸性氧还原活性与稳定性
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作者 张天恩 颜雅妮 +3 位作者 张俊明 瞿希铭 黎燕荣 姜艳霞 《电化学》 CAS CSCD 北大核心 2022年第4期19-29,共11页
Pt基催化剂是氧还原反应的优良催化剂,改善其活性和稳定性是燃料电池商业化的关键。本文利用金属有机框架衍生的氮掺杂碳材料为载体,通过浸渍、冻干和简单热处理的方法合成了Pt/NC、Pt3Zn/NC-L和Pt3Zn/NC-H催化剂,平均粒径均在2 nm左右... Pt基催化剂是氧还原反应的优良催化剂,改善其活性和稳定性是燃料电池商业化的关键。本文利用金属有机框架衍生的氮掺杂碳材料为载体,通过浸渍、冻干和简单热处理的方法合成了Pt/NC、Pt3Zn/NC-L和Pt3Zn/NC-H催化剂,平均粒径均在2 nm左右。在Pt中引入Zn元素引起其晶格收缩,使Pt-Pt键变短,优化了Pt与含氧中间体的结合,增强氧还原反应的活性。在高合金化程度的Pt3Zn/NC-H催化剂上,氧还原反应的半波电位为0.903 V,较商业Pt/C正移57 mV。0.9 V下的质量活性和面积比活性分别是商业Pt/C的4.50倍和3.33倍。在O2饱和的0.1 mol·L^(-1) HClO4溶液,0.6~1.0 V(vs.RHE)进行10000周稳定性测试,商业Pt/C的质量活性和面积比活性分别衰减25.00%和23.80%,而在Pt3Zn/NC-H催化剂上未观察到衰减。 展开更多
关键词 金属有机框架 氮碳载体 电催化剂 Pt_(3)Zn合金 氧还原反应
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