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枳壳缺硼诱导根细胞壁中果胶成分和组分结构的变化。

Boron Deficiency in Trifoliate Orange Induces Changes in Pectin Composition and Architecture of Components in Root Cell Walls.

作者信息

Wu Xiuwen, Riaz Muhammad, Yan Lei, Du Chenqing, Liu Yalin, Jiang Cuncang

机构信息

College of Resources and Environment, Huazhong Agricultural University, Wuhan, China.

出版信息

Front Plant Sci. 2017 Nov 8;8:1882. doi: 10.3389/fpls.2017.01882. eCollection 2017.

Abstract

Boron (B) is a micronutrient indispensable for citrus and B deficiency causes a considerable loss of productivity and quality in China. However, studies on pectin composition and architecture of cell wall components in trifoliate orange roots under B deficiency condition are not sufficient. In this study, we investigated the alteration in pectin characteristics and the architecture of cell wall components in trifoliate orange [ (L.) Raf.] roots under B starvation. The results showed that B-deficient roots resulted in a significant enlargement of root tips and an obvious decrease in cell wall B and uronic acid content in NaCO-soluble pectin compared with B-adequate roots. Meanwhile, they showed a decrease of 2-keto-3-deoxyoctanoic acid in CDTA-soluble and NaCO-soluble pectin in cell walls, while the degree of methylation (DM) of CDTA-soluble pectin was significantly increased under B deficiency. Transmission electron microscope (TEM) micrographs of B deficient plants showed a distinct thickening of the cell walls, with the thickness 1.82 times greater than that of control plant roots. The results from Fourier-transform infrared spectroscopy (FTIR) showed that B deficiency changed the mode of hydrogen bonding between protein and carbohydrates (cellulose and hemicellulose). The FTIR spectra exhibited a destroyed protein structure and accumulation of wax and cellulose in the cell walls under B starvation. The C nuclear magnetic resonance (C-NMR) spectra showed that B starvation changed the organic carbon structure of cell walls, and enhanced the contents of amino acid, cellulose, phenols, and lignin in the cell wall. The results reveal that the swelling and weakened structural integrity of cell walls, which induced by alteration on the network of pectin and cell wall components and structure in B-deficient roots, could be a major cause of occurrence of the rapid interruption of growth and significantly enlarged root tips in trifoliate orange roots under B-insufficient condition.

摘要

硼(B)是柑橘生长不可或缺的微量营养元素,在中国,缺硼会导致柑橘产量和品质大幅下降。然而,关于缺硼条件下枳橙根系果胶成分及细胞壁组分结构的研究尚不充分。在本研究中,我们调查了枳橙[(L.)Raf.]根系在硼饥饿条件下果胶特性及细胞壁组分结构的变化。结果表明,与硼充足的根系相比,缺硼根系根尖显著膨大,且细胞壁硼含量以及碳酸钠溶性果胶中的糖醛酸含量明显降低。同时,细胞壁中CDTA溶性和碳酸钠溶性果胶中的2-酮-3-脱氧辛酸含量降低,而缺硼条件下CDTA溶性果胶的甲基化程度显著增加。缺硼植株的透射电子显微镜(TEM)图像显示细胞壁明显增厚,厚度是对照植株根系的1.82倍。傅里叶变换红外光谱(FTIR)结果表明,缺硼改变了蛋白质与碳水化合物(纤维素和半纤维素)之间的氢键模式。FTIR光谱显示,硼饥饿条件下细胞壁中蛋白质结构遭到破坏,蜡质和纤维素积累。碳核磁共振(C-NMR)光谱表明,硼饥饿改变了细胞壁的有机碳结构,提高了细胞壁中氨基酸、纤维素、酚类和木质素的含量。结果表明,缺硼根系中果胶和细胞壁组分及结构网络的改变导致细胞壁膨胀和结构完整性减弱,这可能是缺硼条件下枳橙根系生长迅速受阻和根尖显著膨大的主要原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a93/5682329/c6da49fc386e/fpls-08-01882-g001.jpg

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