首页> 美国卫生研究院文献>The Plant Cell >Meristem-localized inducible expression of a UDP-glycosyltransferase gene is essential for growth and development in pea and alfalfa.
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Meristem-localized inducible expression of a UDP-glycosyltransferase gene is essential for growth and development in pea and alfalfa.

机译:UDP-糖基转移酶基因的分生组织定位的诱导表达对于豌豆和苜蓿的生长发育至关重要。

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摘要

PsUGT1, which encodes a microsomal UDP-glucuronosyltransferase, was cloned from root tips of Pisum sativum. PsUGT1 expression is correlated with mitosis and strongly induced in dividing cells. A region at the C terminus of the encoded protein is closely related to the UDP-glucuronic acid binding site consensus sequence, and the protein encoded by PsUGT1 catalyzes conjugation of UDP-glucuronic acid to an unknown compound. Overexpression of PsUGT1 sense mRNA has no detectable effect on transgenic pea hairy root cultures or regenerated alfalfa. However, inhibiting PsUGT1 expression by the constitutive expression of antisense mRNA (under the control of the cauliflower mosaic virus 35S promoter) markedly retards growth and development of transgenic alfalfa. Cell structure and organization in the antisense plants are similar to those of controls, but plant growth is reduced and development is delayed. This inhibition in growth is correlated with a twofold delay in the time required for completion of a cell cycle and with a >99% inhibition of border cell production. Inhibition of PsUGT1 expression by meristem-localized inducible expression of PsUGT1 antisense mRNA (under the control of its own promoter) is lethal both in pea hairy roots and in transgenic alfalfa plants. These results indicate that PsUGT1 expression is required for normal plant growth and development, and they are consistent with the hypothesis that this UDP-glycosyltransferase regulates activity of a ligand(s) needed for cell division.
机译:从Pisum sativum的根尖克隆了编码微粒体UDP-葡萄糖醛酸转移酶的PsUGT1。 PsUGT1表达与有丝分裂相关,并在分裂细胞中强烈诱导。编码蛋白C末端的区域与UDP-葡萄糖醛酸结合位点共有序列紧密相关,PsUGT1编码的蛋白催化UDP-葡萄糖醛酸与未知化合物的结合。 PsUGT1有义mRNA的过表达对转基因豌豆毛状根培养物或再生苜蓿没有可检测的作用。但是,通过反义mRNA的组成型表达来抑制PsUGT1表达(在花椰菜花叶病毒35S启动子的控制下)显着阻碍了转基因苜蓿的生长和发育。反义植物中的细胞结构和组织与对照相似,但是植物的生长减少并且发育延迟。这种生长抑制与完成细胞周期所需时间的两倍延迟以及与> 99%的边界细胞产生抑制相关。分生组织定位的PsUGT1反义mRNA的诱导表达(在其自身启动子的控制下)对PsUGT1表达的抑制在豌豆毛状根和转基因苜蓿植物中均具有致命性。这些结果表明PsUGT1表达是正常植物生长和发育所必需的,并且与这种UDP-糖基转移酶调节细胞分裂所需配体活性的假设是一致的。

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