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The amino acid permease AAP8 is important for early seed development in Arabidopsis thaliana

机译:氨基酸渗透酶AAP8对拟南芥种子的早期发育很重要

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The development of seeds depends on the import of carbohydrates and amino acids supplied by the maternal tissue via the phloem. Several amino acid transporters have been reported to be expressed during seed and silique development in Arabidopsis thaliana (L.) Heynh. Here we show that mutants lacking the high affinity amino acid permease 8 (At1g10010) display a severe seed phenotype. The overall number of seeds and the number of normally developed seed is reduced by ~50% in siliques of the Ataap8 T-DNA insertion mutant. This result could be reproduced in plants where expression of AtAAP8 is targeted with an RNAi approach. The seed phenotype is correlated with a specifically altered amino acid composition of young siliques. Aspartic acid and glutamic acid are significantly reduced in young siliques of the mutants. In correlation with the fact that AAP8 is a high affinity transporter for acidic amino acids, translocation of 14C-labelled aspartate fed via the root system to seeds of the mutants is reduced. AAP8 plays a crucial role for the uptake of amino acids into the endosperm and supplying the developing embryo with amino acids during early embryogenesis.
机译:种子的发育取决于母体组织通过韧皮部提供的碳水化合物和氨基酸的进口。据报道,在拟南芥(L.)Heynh的种子和长角果发育过程中表达了几种氨基酸转运蛋白。在这里我们显示缺少高亲和力氨基酸通透酶8(At1g10010)的突变体表现出严重的种子表型。在Ataap8 T-DNA插入突变体中,种子总数和正常发育的种子数减少了约50%。该结果可以在其中RNAi方法靶向AtAAP8表达的植物中复制。种子表型与幼小角果的氨基酸组成发生了特定变化。在突变体的年轻角果中,天冬氨酸和谷氨酸显着降低。与AAP8是酸性氨基酸的高亲和力转运蛋白这一事实有关,通过根系统向突变体种子补入的14 C-标记天冬氨酸的转运减少了。 AAP8在胚乳早期吸收氨基酸并为发育中的胚胎提供氨基酸方面起着至关重要的作用。

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