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整合镉积累、亚细胞分布及生理响应以了解苹果砧木对镉的耐受性

Integration of Cadmium Accumulation, Subcellular Distribution, and Physiological Responses to Understand Cadmium Tolerance in Apple Rootstocks.

作者信息

Zhou Jiangtao, Wan Huixue, He Jiali, Lyu Deguo, Li Huifeng

机构信息

College of Horticulture, Shenyang Agricultural UniversityShenyang, China.

Key Lab of Fruit Quality Development and Regulation of Liaoning ProvinceShenyang, China.

出版信息

Front Plant Sci. 2017 Jun 7;8:966. doi: 10.3389/fpls.2017.00966. eCollection 2017.

Abstract

Cadmium (Cd) is a nonessential and highly toxic element causing agricultural problems. However, little information is available about the variation in Cd tolerance among apple rootstocks and its underlying physiological regulation mechanisms. This study investigated Cd accumulation, subcellular distribution, and chemical forms as well as physiological changes among four apple rootstocks exposed to either 0 or 300 μM CdCl. The results showed that variations in Cd tolerance existed among these rootstocks. Cd exposure caused decline in photosynthesis, chlorophyll and biomass in four apple rootstocks, which was less pronounced in , indicating its higher Cd tolerance. This finding was corroborated with higher Cd tolerance indexes (TIs) of the whole plant in than those in the other three apple rootstocks. Among the four apple rootstocks, displayed the lowest Cd concentrations in roots, wood, and leaves, the smallest total Cd amounts as well as the lowest BCF. In apple rootstocks, it was found that to immobilize Cd in cell wall and soluble fraction (most likely in vacuole) and to convert it into pectate- or protein- integrated forms and undissolved Cd phosphate forms may be the primary strategies to reduce Cd mobility and toxicity. The physiological changes including ROS, carbohydrates and antioxidants were in line with the variations of Cd tolerance among four apple rootstocks. In comparison with the other three apple rootstocks, had lower concentrations of ROS in roots and bark, HO in roots and leaves and MDA in roots, wood and bark, but higher concentrations of soluble sugars in bark and starch in roots and leaves, and enhanced antioxidants. These results indicate that are more tolerant to Cd stress than the other three apple rootstocks under the current experiment conditions, which is probably related to Cd accumulation, subcellular partitioning and chemical forms of Cd and well-coordinated antioxidant defense mechanisms.

摘要

镉(Cd)是一种非必需的高毒元素,会引发农业问题。然而,关于苹果砧木对镉耐受性的差异及其潜在生理调节机制的信息却很少。本研究调查了四种苹果砧木在0或300μM CdCl₂处理下的镉积累、亚细胞分布、化学形态以及生理变化。结果表明,这些砧木对镉的耐受性存在差异。镉处理导致四种苹果砧木的光合作用、叶绿素和生物量下降,[具体砧木名称]的下降程度较小,表明其对镉的耐受性较高。这一发现得到了[具体砧木名称]整株植物比其他三种苹果砧木更高的镉耐受性指数(TIs)的证实。在四种苹果砧木中,[具体砧木名称]在根、木质部和叶片中的镉浓度最低,总镉含量最小,生物富集系数(BCF)也最低。在苹果砧木中,发现将镉固定在细胞壁和可溶性部分(最有可能在液泡中),并将其转化为果胶酸盐或蛋白质结合形式以及不溶性镉磷酸盐形式,可能是降低镉迁移率和毒性的主要策略。包括活性氧(ROS)、碳水化合物和抗氧化剂在内的生理变化与四种苹果砧木对镉耐受性的差异一致。与其他三种苹果砧木相比,[具体砧木名称]根和树皮中的ROS浓度、根和叶中的H₂O₂以及根、木质部和树皮中的丙二醛(MDA)浓度较低,但树皮中的可溶性糖以及根和叶中的淀粉浓度较高,且抗氧化剂增强。这些结果表明,在当前实验条件下,[具体砧木名称]比其他三种苹果砧木对镉胁迫更具耐受性,这可能与镉的积累、亚细胞分配、镉的化学形态以及协调良好的抗氧化防御机制有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffc9/5461368/63703232a553/fpls-08-00966-g0001.jpg

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