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草莓生长素合成关键酶FveTAA1保守氨基酸位点T111的生物学功能研究 被引量:1
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作者 杨丽媛 王倩 +2 位作者 王许会 徐通达 马军 《园艺学报》 CAS CSCD 北大核心 2021年第9期1695-1705,共11页
结合生物信息学、生物化学和遗传学等方法对森林草莓(Fragaria vesca)生长素合成通路色氨酸转氨酶TAA1(Tryptophan aminotransferase of Arabidopsis 1)进化过程中保守的氨基酸位点T111的生物学功能进行了研究。通过基因表达分析发现,草... 结合生物信息学、生物化学和遗传学等方法对森林草莓(Fragaria vesca)生长素合成通路色氨酸转氨酶TAA1(Tryptophan aminotransferase of Arabidopsis 1)进化过程中保守的氨基酸位点T111的生物学功能进行了研究。通过基因表达分析发现,草莓FveTAA1在果实膨大及果实成熟阶段均上调表达,暗示其在果实发育过程中可能具有重要的生物学功能。通过生物信息分析发现,FveTAA1蛋白的第111位苏氨酸(T111)在进化过程中高度保守,推测该位点可能具有重要的生物学功能。通过生物化学方法检测发现,该位点突变成模拟非磷酸化状态的丙氨酸T111A及模拟磷酸化状态的天冬氨酸T111D,其蛋白均丧失色氨酸转氨酶活性,因此推断该位点对其酶活性至关重要。通过遗传学方法发现,FveTAA1WT能够回补拟南芥TAA1/TAR突变体的遗传表型,而FveTAA1T111A与FveTAA1T111D均无法回补,进一步证明了FveTAA1 T111氨基酸位点在体内重要的生物学功能。本研究的结果不仅证明了生长素合成途径在进化上存在保守的调控机制,也为研究生长素合成在草莓果实发育和成熟过程中的调控机制提供了理论基础。 展开更多
关键词 草莓 生长素 taa1 转氨酶活性 果实生长发育
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TAA family contributes to auxin production during de novo regeneration of adventitious roots from Arabidopsis leaf explants 被引量:6
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作者 Beibei Sun Lyuqin Chen +4 位作者 Jingchun Liu Xuening Zhang Zhongnan Yang Wu Liu Lin Xu 《Science Bulletin》 SCIE EI CAS CSCD 2016年第22期1728-1731,共4页
Many differentiated plant organs have the ability to regenerate into a new plant after detachment via de novo organogenesis. During de novo root organogenesis from Arabidopsis thaliana leaf explants, wounding first in... Many differentiated plant organs have the ability to regenerate into a new plant after detachment via de novo organogenesis. During de novo root organogenesis from Arabidopsis thaliana leaf explants, wounding first induces endogenous auxin production in mesophyll cells. Auxin is then polar transported to, and accumulates in, regenerationcompetent cells near the wound to trigger the cell-fate transition. The TRYPTOPHAN AMINOTRANSFERASE OF ARABIDOPSIS(TAA) family proteins and the YUCCA(YUC) family proteins catalyze two successive biochemical steps in auxin biogenesis, and YUCs have been shown to be involved in auxin production in mesophyll cells during de novo root organogenesis. In thisstudy, we show that the TAA family is also required for adventitious rooting. Inhibition of TAA blocked adventitious root formation from leaf explants. Intriguingly,whereas YUC1 and YUC4 have been shown to be highly induced by wounding, TAA genes retained consistent expression levels before and after leaf detachment.Therefore, we suggest that TAAs and YUCs are both required for auxin biogenesis in leaf explants, but they play different roles in regeneration. While YUC1 and YUC4 function in response to wounding to catalyze the ratelimiting step in auxin biosynthesis, TAAs probably serve as abiding and basal enzymes during de novo root organogenesis from leaf explants. 展开更多
关键词 De novo organogenesis taa1 TAR2 植物新生 植物生长素生物的续生说 ARABIDOPSIS
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