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Physiological and genetic analysis of Arabidopsis thaliana anthocyanin biosynthesis mutants under chronic adverse environmental conditions

机译:慢性不利环境条件下拟南芥花色苷生物合成突变体的生理和遗传分析

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摘要

Anthocyanin production is a characteristic response of flowering plants to unfavourable environmental conditions. The potential roles of flavonoids and anthocyanins in plant growth were investigated by growing Arabidopsis thaliana anthocyanin production mutants (transparent testa) under limiting nitrogen and high light conditions. Inability to produce kaempferol or subsequent intermediate compounds by some transparent testa lines was correlated with less biomass accumulation in mature plants compared with wild-type control plants under all growth conditions tested. However, under both limiting nitrogen and high light chronic stress conditions, mutant lines defective in later steps of the anthocyanin production pathway produced the same or more biomass than wild-type plants. No difference in senescence between transparent testa and wild-type plants was found using chlorophyll catabolism and SAG12 expression measurements, and no mutants were impaired in the ability to remobilize nutrients from the vegetative to reproductive tissues. Moreover, the absence of anthocyanin and/or upstream flavonoids does not affect the ability of plants to respond to limiting nitrogen by reducing photosynthetic capacity. These results support a role for kaempferol and quercetin accumulation in normal plant growth and development. Further, the absence of anthocyanins has no effect on plant growth under the chronic stress conditions tested.
机译:花青素的产生是开花植物对不利环境条件的特​​征响应。通过在有限的氮和强光条件下生长拟南芥花色苷生产突变体(透明种皮)研究了类黄酮和花色苷在植物生长中的潜在作用。在所有测试的生长条件下,与野生型对照植物相比,一些透明的睾丸品系无法生产山emp酚或随后的中间体化合物与成熟植物中较少的生物量积累相关。然而,在极限氮和高光慢性胁迫条件下,在花色苷生产途径的后续步骤中有缺陷的突变品系产生的生物量与野生型植物相同或更多。使用叶绿素分解代谢和SAG12表达测量,未发现透明睾丸和野生型植物之间的衰老差异,并且没有突变体将营养物从营养组织转移到生殖组织的能力受到损害。此外,不存在花色素苷和/或上游类黄酮不影响植物通过降低光合能力来响应限制氮的能力。这些结果支持山emp酚和槲皮素在正常植物生长和发育中的作用。此外,在所测试的慢性胁迫条件下,花色苷的缺乏对植物生长没有影响。

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