氨基酸渗透酶 OsAAP12 通过转运特定氨基酸来影响氮素和细胞分裂素途径,从而对水稻分蘖和谷物产量产生负向调节作用。

IF 4.2 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Plant Science Pub Date : 2024-07-26 DOI:10.1016/j.plantsci.2024.112202
Feng Jin , Weiting Huang , Pengfei Xie , Bowen Wu, Quanzhi Zhao, Zhongming Fang
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引用次数: 0

摘要

氨基酸是水稻生长所必需的营养物质,它可以通过氨基酸转运体介导;然而,我们对这些转运体的了解仍然有限。本研究发现,氨基酸渗透酶基因 OsAAP12 的表达水平在籼稻和粳稻之间存在差异。OsAAP12表达的改变对转基因水稻品系的分蘖和产量有负向调节作用。亚细胞定位显示,OsAAP12主要定位于质膜。此外,通过酵母异源互补、荧光氨基酸吸收和氨基酸含量测定等实验表明,OsAAP12转运天冬酰胺(Asn)、苏氨酸(Thr)和丝氨酸(Ser)等极性中性氨基酸。此外,与野生型 ZH11 相比,外源施加氨基酸 Asn、Thr 和 Ser 会抑制 OsAAP12 过表达株的腋芽生长。相反,在CRISPR突变株中观察到了相反的趋势。RNA-seq 分析表明,在 OsAAP12 改造株系中,氮素和细胞分裂素通路相关基因的表达模式普遍发生了改变。激素测定表明,OSAAP12突变株在水稻基部积累了细胞分裂素,而过表达株则产生了相反的效果。综上所述,OsAAP12的CRISPR突变体通过协调氨基酸和细胞分裂素的含量促进了水稻的分蘖和籽粒产量,在水稻高产育种中具有潜在的应用价值。
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Amino acid permease OsAAP12 negatively regulates rice tillers and grain yield by transporting specific amino acids to affect nitrogen and cytokinin pathways

Amino acids are necessary nutrients for the growth of Oryza sativa (rice), which can be mediated by amino acid transporter; however, our understanding of these transporters is still limited. This study found that the expression levels of amino acid permease gene OsAAP12 differed between indica and japonica rice. Altered expression of OsAAP12 negatively regulated tillering and yield in transgenic rice lines. Subcellular localization revealed that OsAAP12 was primarily localized to the plasma membrane. Moreover, it was indicated that OsAAP12 transported polar neutral amino acids asparagine (Asn), threonine (Thr), and serine (Ser) through experiments involving yeast heterologous complementation, fluorescence amino acid uptake, and amino acid content determination. Additionally, exogenous application of amino acids Asn, Thr, and Ser suppressed axillary buds outgrowth in OsAAP12 overexpression lines compared with wild-type ZH11. Conversely, the opposite trend was observed in CRISPR mutant lines. RNA-seq analysis showed that the expression patterns of genes involved in the nitrogen and cytokinin pathways were generally altered in OsAAP12 modified lines. Hormone assays indicated that OsAAP12 mutant lines accumulated cytokinins in the basal part of rice, whereas overexpression lines had the opposite effect. In summary, CRISPR mutant of OsAAP12 boosted rice tillering and grain yield by coordinating the content of amino acids and cytokinins, which has potential application value in high-yield rice breeding.

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来源期刊
Plant Science
Plant Science 生物-生化与分子生物学
CiteScore
9.10
自引率
1.90%
发文量
322
审稿时长
33 days
期刊介绍: Plant Science will publish in the minimum of time, research manuscripts as well as commissioned reviews and commentaries recommended by its referees in all areas of experimental plant biology with emphasis in the broad areas of genomics, proteomics, biochemistry (including enzymology), physiology, cell biology, development, genetics, functional plant breeding, systems biology and the interaction of plants with the environment. Manuscripts for full consideration should be written concisely and essentially as a final report. The main criterion for publication is that the manuscript must contain original and significant insights that lead to a better understanding of fundamental plant biology. Papers centering on plant cell culture should be of interest to a wide audience and methods employed result in a substantial improvement over existing established techniques and approaches. Methods papers are welcome only when the technique(s) described is novel or provides a major advancement of established protocols.
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