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番茄根毛中氮素和叶片中光照对三个功能性铵转运蛋白基因的差异调控。

Differential regulation of three functional ammonium transporter genes by nitrogen in root hairs and by light in leaves of tomato.

作者信息

von Wirén N, Lauter F R, Ninnemann O, Gillissen B, Walch-Liu P, Engels C, Jost W, Frommer W B

机构信息

Zentrum für Molekularbiologie der Pflanzen Tübingen (ZMBP), Tübingen.

出版信息

Plant J. 2000 Jan;21(2):167-75. doi: 10.1046/j.1365-313x.2000.00665.x.

Abstract

To elucidate the role of NH4+ transporters in N nutrition of tomato, two new NH4+ transporter genes were isolated from cDNA libraries of root hairs or leaves of tomato. While LeAMT1;2 is closely related to LeAMT1;1 (75.6% amino acid identity), LeAMT1;3 is more distantly related (62.8% identity) and possesses two short upstream open reading frames in the 5' end of the mRNA and a particularly short N-terminus of the protein as unique features. When expressed in yeast mutants defective in NH4+ uptake, all three genes complemented NH4+ uptake. In roots of hydroponically grown plants, transcript levels of LeAMT1;2 increased after NH4+ or NO3- supply, while LeAMT1;1 was induced by N deficiency coinciding with low glutamine concentrations, and LeAMT1;3 was not detected. In aeroponic culture, expression of LeAMT1;1 and LeAMT1;2 was higher in root hairs than in the remaining root fraction. Growth of plants at elevated CO2 slightly decreased expression of LeAMT1;2 and LeAMT1;3 in leaves, but strongly repressed transcript levels of chloroplast glutamine synthetase and photorespiratory serine hydroxymethyl-transferase. Expression of LeAMT1;2 and LeAMT1;3 showed a reciprocal diurnal regulation with highest transcript levels of LeAMT1;3 in darkness and highest levels of LeAMT1;2 after onset of light. These results indicate that in tomato at least two high-affinity NH4+ transporters, LeAMT1;1 and LeAMT1;2, are differentially regulated by N and contribute to root hair-mediated NH4+ acquisition from the rhizosphere. In leaves, the reciprocally expressed transporters LeAMT1;2 and LeAMT1;3 are supposed to play different roles in N metabolism, NH4+ uptake and/or NH3 retrieval during photorespiration.

摘要

为阐明铵转运蛋白在番茄氮营养中的作用,从番茄根毛或叶片的cDNA文库中分离出两个新的铵转运蛋白基因。LeAMT1;2与LeAMT1;1密切相关(氨基酸同一性为75.6%),而LeAMT1;3的相关性较远(同一性为62.8%),其独特特征是在mRNA的5'端拥有两个短的上游开放阅读框以及蛋白质特别短的N端。当在铵吸收缺陷的酵母突变体中表达时,所有这三个基因都能补充铵吸收。在水培植物的根中,供应铵或硝酸盐后LeAMT1;2的转录水平升高,而LeAMT1;1由低谷氨酰胺浓度伴随的氮缺乏诱导,且未检测到LeAMT1;3。在气培中,LeAMT1;1和LeAMT1;2在根毛中的表达高于根的其余部分。在高二氧化碳浓度下生长的植物,叶片中LeAMT1;2和LeAMT1;3的表达略有下降,但强烈抑制了叶绿体谷氨酰胺合成酶和光呼吸丝氨酸羟甲基转移酶的转录水平。LeAMT1;2和LeAMT1;3的表达呈现相反的昼夜调节,LeAMT1;3在黑暗中的转录水平最高,而LeAMT1;2在光照开始后的水平最高。这些结果表明,在番茄中至少有两个高亲和力铵转运蛋白LeAMT1;1和LeAMT1;2受氮的差异调节,并有助于根毛介导的从根际获取铵。在叶片中,相互表达的转运蛋白LeAMT1;2和LeAMT1;3在光呼吸期间的氮代谢、铵吸收和/或氨回收中可能发挥不同作用。

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