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Variable content and distribution of arabinogalactan proteins in banana (Musa spp.) under low temperature stress

机译:低温胁迫下香蕉(Musa spp。)中阿拉伯半乳聚糖蛋白含量和分布的变化

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摘要

Information on the spatial distribution of arabinogalactan proteins (AGPs) in plant organs and tissues during plant reactions to low temperature (LT) is limited. In this study, the extracellular distribution of AGPs in banana leaves and roots, and their changes under LT stress were investigated in two genotypes differing in chilling tolerance, by immuno-techniques using 17 monoclonal antibodies against different AGP epitopes. Changes in total classical AGPs in banana leaves were also tested. The results showed that AGP epitopes recognized by JIM4, JIM14, JIM16, and CCRC-M32 antibodies were primarily distributed in leaf veins, while those recognized by JIM8, JIM13, JIM15, and PN16.4B4 antibodies exhibited predominant sclerenchymal localization. Epitopes recognized by LM2, LM14, and MAC207 antibodies were distributed in both epidermal and mesophyll cells. Both genotypes accumulated classical AGPs in leaves under LT treatment, and the chilling tolerant genotype contained higher classical AGPs at each temperature treatment. The abundance of JIM4 and JIM16 epitopes in the chilling-sensitive genotype decreased slightly after LT treatment, and this trend was opposite for the tolerant one. LT induced accumulation of LM2- and LM14-immunoreactive AGPs in the tolerant genotype compared to the sensitive one, especially in phloem and mesophyll cells. These epitopes thus might play important roles in banana LT tolerance. Different AGP components also showed differential distribution patterns in banana roots. In general, banana roots started to accumulate AGPs under LT treatment earlier than leaves. The levels of AGPs recognized by MAC207 and JIM13 antibodies in the control roots of the tolerant genotype were higher than in the chilling sensitive one. Furthermore, the chilling tolerant genotype showed high immuno-reactivity against JIM13 antibody. These results indicate that several AGPs are likely involved in banana tolerance to chilling injury.
机译:植物对低温(LT)的反应过程中,阿拉伯半乳聚糖蛋白(AGP)在植物器官和组织中的空间分布信息有限。在这项研究中,通过使用17种针对不同AGP表位的单克隆抗体的免疫技术,研究了两种耐寒性不同的基因型在香蕉叶和根中AGP的细胞外分布及其在低温胁迫下的变化。还测试了香蕉叶中总经典AGP的变化。结果表明,JIM4,JIM14,JIM16和CCRC-M32抗体识别的AGP表位主要分布在叶静脉中,而JIM8,JIM13,JIM15和PN16.4B4抗体识别的AGP表位则表现出主要的硬化定位。 LM2,LM14和MAC207抗体识别的表位分布在表皮和叶肉细胞中。两种基因型在LT处理下均在叶片中积累了经典AGP,而耐冷基因型在每次温度处理下均包含较高的经典AGP。低温处理后,冷敏感基因型中JIM4和JIM16表位的丰度略有下降,而对于耐受基因型,这种趋势是相反的。与敏感的相比,LT诱导了耐性基因型中LM2和LM14免疫反应性AGP的积累,尤其是在韧皮部和叶肉细胞中。因此,这些表位可能在香蕉LT耐受性中起重要作用。不同的AGP成分在香蕉根中也表现出不同的分布模式。通常,在低温处理下,香蕉根比叶早开始积累AGP。在耐性基因型的对照根中,MAC207和JIM13抗体识别的AGP的水平高于低温敏感的对照。此外,耐冷基因型对JIM13抗体表现出高免疫反应性。这些结果表明,几种AGP可能参与了香蕉对寒冷伤害的耐受性。

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