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Developmental and Genotypic Variation in Leaf Wax Content and Composition and in Expression of Wax Biosynthetic Genes in Brassica oleracea var. capitata

机译:芸苔叶片蜡含量和组成以及蜡生物合成基因表达的发育和基因型变异。卡塔塔

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摘要

Cuticular waxes act as a protective barrier against environmental stresses. In the present study, we investigated developmental and genotypic variation in wax formation of cabbage lines, with a view to understand the related morphology, genetics and biochemistry. Our studies revealed that the relative expression levels of wax biosynthetic genes in the first-formed leaf of the highest-wax line remained constantly higher but were decreased in other genotypes with leaf aging. Similarly, the expression of most of the tested genes exhibited decrease from the inner leaves to the outer leaves of 5-month-old cabbage heads in the low-wax lines in contrast to the highest-wax line. In 10-week-old plants, expression of wax biosynthetic genes followed a quadratic function and was generally increased in the early developing leaves but substantially decreased at the older leaves. The waxy compounds in all cabbage lines were predominately C29-alkane, -secondary alcohol, and -ketone. Its deposition was increased with leaf age in 5-month-old plants. The high-wax lines had dense, prominent and larger crystals on the leaf surface compared to low-wax lines under scanning electron microscopy. Principal component analysis revealed that the higher expression of LTP2 genes in the lowest-wax line and the higher expression of CER3 gene in the highest-wax line were probably associated with the comparatively lower and higher wax content in those two lines, respectively. This study furthers our understanding of the relationships between the expression of wax biosynthetic genes and the wax deposition in cabbage lines.>Highlight: In cabbage, expression of wax-biosynthetic genes was generally decreased in older and senescing leaves, while wax deposition was increased with leaf aging, and C29-hydrocarbon was predominant in the wax crystals.
机译:表皮蜡可作为抵抗环境压力的保护性屏障。在本研究中,我们调查了甘蓝系蜡形成的发育和基因型变异,以了解相关的形态,遗传和生物化学。我们的研究表明,最高蜡系的第一片叶片中蜡生物合成基因的相对表达水平始终保持较高水平,但在其他基因型中随着叶片衰老而降低。类似地,与最高蜡线相比,在低蜡线中,大多数测试基因的表达在5个月大的甘蓝头上从内叶向外叶减少。在10周龄的植物中,蜡生物合成基因的表达遵循二次函数,并且在早期发育的叶片中通常增加,而在较老的叶片中则大幅下降。所有甘蓝系中的蜡状化合物主要是C29-烷烃,-仲醇和-酮。在5个月大的植物中,其沉积量随叶龄的增加而增加。在扫描电子显微镜下,与低蜡线相比,高蜡线在叶表面具有致密,突出和较大的晶体。主成分分析表明,最低蜡系中LTP2基因的较高表达和最高蜡系中CER3基因的较高表达可能分别与这两个系中蜡含量相对较低和较高有关。这项研究进一步加深了我们对蜡质生物合成基因表达与白菜系蜡沉积之间关系的理解。>亮点:在甘蓝中,蜡质生物合成基因的表达普遍在衰老和衰老的叶片中降低,而蜡的沉积随着叶龄的增加而增加,并且C29碳氢化合物在蜡晶体中占主导地位。

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