SlMBP3基因敲除/下调在番茄:正常大小的果实通过改变细胞壁形成的非液化室组织增加干物质含量。

Ji-Seong Kim, Jeongeun Lee, Hiroshi Ezura
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引用次数: 3

摘要

利用转移DNA (T-DNA)标记的SlMBP3突变体和SlMBP3- rna干扰系,研究了番茄AGAMOUS分支MADS-box基因SlMBP3的敲除/敲出的表型效应。SlMBP3优先表达于果实的房室组织和种皮与内胚层结合的组织中。与SlMBP3的表达位点一致,SlMBP3敲除/下调系显示出非液化的室组织,并且比野生型(WT)的种子毛数量增加。在slmbp3敲除/缺失系的果实中未观察到细胞早期的室组织降解,细胞像胎盘细胞一样拉长,导致室组织未液化。结果表明,SlMBP3敲除/下调系果实的干物质含量和可滴定酸度高于WT系果实。在SlMBP3敲除/下调系环境下,细胞扩增相关基因(β -扩张素基因SlEXPB1和内切-1,4- d -葡聚糖酶基因Cel8)和果胶酶抑制相关基因(果胶酯酶抑制基因PE抑制剂和聚半乳糖醛酸酶抑制基因PG抑制剂)表达上调,果胶酶编码基因(聚半乳糖醛酸酶基因qrt3样和果胶裂解酶基因PL2)表达下调。在slmbp3敲除/下调系种皮中,含有R2和R3重复序列(R2R3-MYB)转录因子SlMYB75、b型细胞周期蛋白SlCycB2和同源结构域亮氨酸拉链(HD-Zip) IV转录因子Woolly的MYB基因等番茄毛状体形成相关基因下调。我们的研究结果表明,SlMBP3通过改变番茄果实的细胞发育和降解过程以及种子毛的形成,参与了番茄小室组织的液化,SlMBP3敲除/下调导致正常大小的果实中干物质含量增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SlMBP3 Knockout/down in Tomato: Normal-Sized Fruit with Increased Dry Matter Content through Non-Liquefied Locular Tissue by Altered Cell Wall Formation.

The phenotypic effect of the knockdown/out of AGAMOUS clade MADS-box gene SlMBP3 in tomato was evaluated using a transferred DNA (T-DNA)-tagged mutant of SlMBP3 and SlMBP3-RNA interference lines. SlMBP3 was preferentially expressed in the locular tissue of fruit and the seed coat combined with the endoderm. Consistent with where SlMBP3 is expressed, the SlMBP3-knockout/down lines showed non-liquefied locular tissues and increased number of seed hairs than the wild type (WT). The early cell degradation of the locular tissue was not observed in the fruits of the SlMBP3-knockout/down lines, and the cells were elongated like placental cells resulting in non-liquefied locular tissues. As the result, the fruits of the SlMBP3-knockout/down lines exhibited higher dry matter contents and titratable acidity than those of the WT. During locular tissue cell development under the SlMBP3 knockout/down, the expression of cell-enlargement-related genes (beta-expansin gene SlEXPB1 and endo-beta-1,4-D-glucanase gene Cel8) and pectinase-inhibitor-related genes (pectin esterase inhibitor gene PE inhibitor and polygalacturonase inhibitor gene PG inhibitor) was upregulated and that of pectinase-encoding genes (polygalacturonase gene QRT3-like and pectin lyase gene PL2) was downregulated. In the seed coat of the SlMBP3-knockout/down lines, tomato trichome-formation-related genes such as MYB genes containing R2 and R3 repeats (R2R3-MYB) transcription factor SlMYB75, B-type cyclin SlCycB2 and Homeodomain Leucine Zipper (HD-Zip) IV transcription factor Woolly were downregulated. Our results demonstrate that SlMBP3 is involved in the liquefaction of the locular tissue through the modification of cell development and degradation processes and seed hair formation in tomato fruits, and the SlMBP3 knockout/down results in normal-sized fruit with increased dry matter content.

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