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Effects of Endogenous Salicylic Acid During Calcium Deficiency-Induced Tipburn in Chinese Cabbage (Brassica rapa L. ssp. pekinensis)

机译:内源水杨酸对白菜钙缺乏诱导的尖角烧伤的影响

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摘要

By cultivating tipburn-susceptible plants in modified Hoagland’s medium containing of gradient exogenous calcium (Ca2+), we have shown that Ca2+ deficiency is one of the main causes of tipburn in Chinese cabbage (Brassica rapa L. ssp. pekinensis). The effect of endogenous plant Ca2+ concentrations on tipburn was also studied in a doubled haploid (DH) population consisting of 100 individuals, but no correlation was found. We then examined the expression of 12 Ca2+ transporter genes that function in cytosolic Ca2+ homeostasis in both tipburn-susceptible and tipburn-resistant plants under normal and tipburn-inducing conditions. Expression patterns for most of these genes differed between the two types of plants. Salicylic acid (SA) accumulated in response to conditions of calcium deficiency in our study, and both total SA and SA β-glucoside (SAG) in tipburn-susceptible plants was ∼3-fold higher than it was in resistant plants following Ca2+ deficiency treatment. Also, the changes observed in SA levels correlated well with cell death patterns revealed by trypan blue staining. Therefore, we speculate that the cytoplasmic Ca2+ fluctuation-induced downstream signaling events, as well as SA signaling or other biological events, are involved in the plant defense response to tipburn in Chinese cabbage.Electronic supplementary materialThe online version of this article (doi:10.1007/s11105-015-0949-8) contains supplementary material, which is available to authorized users.
机译:通过在改良的Hoagland含有梯度外源钙(Ca 2 + )的改良培养基中培养易燃性植物,我们发现Ca 2 + 缺乏是引起这种情况的主要原因之一。大白菜(Brassica rapa L. ssp。pekinensis)的tipburn。还研究了内源性植物Ca 2 + 的浓度对由100个个体组成的双倍单倍体(DH)群体中尖角烧伤的影响,但未发现相关性。然后,我们研究了在正常和诱发尖刺的植物中,在对尖刺易感和耐尖刺的植物中,在胞质Ca 2 + 动态平衡中起作用的12个Ca 2 + 转运蛋白基因的表达条件。这些基因中大多数的表达模式在两种植物之间是不同的。在我们的研究中,水杨酸(SA)响应钙缺乏条件而积累,并且易受钙离子侵蚀的植株中总SA和SAβ-葡萄糖苷(SAG)均比抗性植株高约3倍。 > 2 + 缺陷治疗。而且,SA水平中观察到的变化与台盼蓝染色揭示的细胞死亡模式密切相关。因此,我们推测胞质Ca 2 + 波动引起的下游信号转导事件以及SA信号转导或其他生物学事件均参与了大白菜对tip叶的植物防御反应。本文的在线版本(doi:10.1007 / s11105-015-0949-8)包含补充材料,可供授权用户使用。

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