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Senescence-Associated Gene Expression during Ozone-Induced Leaf Senescence in Arabidopsis

机译:拟南芥中臭氧诱导的叶片衰老过程中的衰老相关基因表达

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摘要

The expression patterns of senescence-related genes were determined during ozone (O3) exposure in Arabidopsis. Rosettes were treated with 0.15 μL L−1 O3 for 6 h d−1 for 14 d. O3-treated leaves began to yellow after 10 d of exposure, whereas yellowing was not apparent in control leaves until d 14. Transcript levels for eight of 12 senescence related genes characterized showed induction by O3. SAG13 (senescence-associated gene), SAG21, ERD1 (early responsive to dehydration), and BCB (blue copper-binding protein) were induced within 2 to 4 d of O3 treatment; SAG18, SAG20, and ACS6 (ACC synthase) were induced within 4 to 6 d; and CCH (copper chaperone) was induced within 6 to 8 d. In contrast, levels of photosynthetic gene transcripts, rbcS (small subunit of Rubisco) and cab (chlorophyll a/b-binding protein), declined after 6 d. Other markers of natural senescence, SAG12, SAG19, MT1 (metallothionein), and Atgsr2 (glutamine synthetase), did not show enhanced transcript accumulation. When SAG12 promoter-GUS (β-glucuronidase) and SAG13 promoter-GUS transgenic plants were treated with O3, GUS activity was induced in SAG13-GUS plants after 2 d but was not detected in SAG12-GUS plants. SAG13 promoter-driven GUS activity was located throughout O3-treated leaves, whereas control leaves generally showed activity along the margins. The acceleration of leaf senescence induced by O3 is a regulated event involving many genes associated with natural senescence.
机译:在拟南芥中暴露于臭氧期间确定衰老相关基因的表达模式。玫瑰花结被0.15μLL -1 O3处理6 h d -1 14 d。 O3处理的叶片在暴露10天后开始变黄,而对照叶片直到14天才开始变黄。表征为特征的12个衰老相关基因中有8个的转录本水平被O3诱导。在O3处理后的2到4 d内诱导出SAG13(衰老相关基因),SAG21,ERD1(对脱水反应较早)和BCB(蓝色铜结合蛋白)。 SAG18,SAG20和ACS6(ACC合酶)在4至6 d内被诱导;在6至8 d内诱导产生CCH(铜伴侣)。相比之下,光合基因转录本,rbcS(Rubisco的小亚基)和cab(叶绿素a / b结合蛋白)的水平在6天后下降。自然衰老的其他标记SAG12,SAG19,MT1(金属硫蛋白)和Atgsr2(谷氨酰胺合成酶)未显示出增强的转录物积累。当用O3处理SAG12启动子- GUS (β-葡萄糖醛酸苷酶)和 SAG13 启动子- GUS 转基因植物时,在SAG13-中诱导了GUS活性。 GUS植物在2天后但在SAG12-GUS植物中未检测到。 SAG13 启动子驱动的GUS活性遍及所有O3处理的叶片,而对照叶片通常沿边缘显示活性。 O3诱导的叶片衰老加速是一个受调控的事件,涉及许多与自然衰老相关的基因。

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