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Analysis of cuticular wax constituents and genes that contribute to the formation of 'glossy Newhall', a spontaneous bud mutant from the wild-type 'Newhall' navel orange.分析表皮蜡质成分和基因,这些成分和基因有助于形成“光亮纽荷尔”,这是一个自发芽突变体,来自野生型“纽荷尔”脐橙。
Plant Mol Biol. 2015 Aug;88(6):573-90. doi: 10.1007/s11103-015-0343-9. Epub 2015 Jul 16.
2
The formation and function of plant cuticles.植物角质层的形成与功能。
Plant Physiol. 2013 Sep;163(1):5-20. doi: 10.1104/pp.113.222737. Epub 2013 Jul 26.
3
ABCG15 encodes an ABC transporter protein, and is essential for post-meiotic anther and pollen exine development in rice.ABCG15 编码一个 ABC 转运蛋白,是水稻减数分裂后花粉外壁发育所必需的。
Plant Cell Physiol. 2013 Jan;54(1):138-54. doi: 10.1093/pcp/pcs162. Epub 2012 Dec 5.
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Plant Physiol. 2013 Jan;161(1):81-96. doi: 10.1104/pp.112.202325. Epub 2012 Nov 21.
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Arabidopsis cuticular waxes: advances in synthesis, export and regulation.拟南芥表皮蜡质:在合成、输出和调控方面的进展。
Prog Lipid Res. 2013 Jan;52(1):110-29. doi: 10.1016/j.plipres.2012.10.002. Epub 2012 Oct 26.
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Reconstitution of plant alkane biosynthesis in yeast demonstrates that Arabidopsis ECERIFERUM1 and ECERIFERUM3 are core components of a very-long-chain alkane synthesis complex.在酵母中重建植物烷烃生物合成表明,拟南芥 ECERIFERUM1 和 ECERIFERUM3 是非常长链烷烃合成复合物的核心组成部分。
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The glossyhead1 allele of ACC1 reveals a principal role for multidomain acetyl-coenzyme A carboxylase in the biosynthesis of cuticular waxes by Arabidopsis.ACC1 的光亮头 1 等位基因揭示了多结构域乙酰辅酶 A 羧化酶在拟南芥角质层蜡生物合成中的主要作用。
Plant Physiol. 2011 Nov;157(3):1079-92. doi: 10.1104/pp.111.185132. Epub 2011 Sep 23.
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Biological origins of normal-chain hydrocarbons: a pathway model based on cuticular wax analyses of maize silks.生物正常链烃的起源:基于玉米丝表皮蜡分析的途径模型。
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Nanoridges that characterize the surface morphology of flowers require the synthesis of cutin polyester.纳米脊是花朵表面形态的特征,需要合成角质聚酯。
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The Arabidopsis DCR encoding a soluble BAHD acyltransferase is required for cutin polyester formation and seed hydration properties.拟南芥 DCR 基因编码一个可溶性 BAHD 酰基转移酶,对于角质聚酯的形成和种子保水特性是必需的。
Plant Physiol. 2009 Dec;151(4):1773-89. doi: 10.1104/pp.109.143388. Epub 2009 Oct 14.

酰基去饱和酶CER17参与蜡质不饱和伯醇和角质单体的生成。

The Acyl Desaturase CER17 Is Involved in Producing Wax Unsaturated Primary Alcohols and Cutin Monomers.

作者信息

Yang Xianpeng, Zhao Huayan, Kosma Dylan K, Tomasi Pernell, Dyer John M, Li Rongjun, Liu Xiulin, Wang Zhouya, Parsons Eugene P, Jenks Matthew A, Lü Shiyou

机构信息

Key Laboratory of Plant Germplasm Enhancement and Specialty Agriculture, Wuhan Botanical Garden (X.Y., R.L., X.L., Z.W., S.L.), Sino-Africa Joint Research Center (S.L.), Chinese Academy of Sciences, Wuhan 430074, China.

Applied Biotechnology Center, Wuhan Institute of Bioengineering, Wuhan, 430415, China (H.Z.).

出版信息

Plant Physiol. 2017 Feb;173(2):1109-1124. doi: 10.1104/pp.16.01956. Epub 2017 Jan 9.

DOI:10.1104/pp.16.01956
PMID:28069670
原文链接:
https://pmc.ncbi.nlm.nih.gov/articles/PMC5291053/
Abstract

We report n-6 monounsaturated primary alcohols (C, C, and C homologs) in the cuticular waxes of Arabidopsis (Arabidopsis thaliana) inflorescence stem, a class of wax not previously reported in Arabidopsis. The Arabidopsis cer17 mutant was completely deficient in these monounsaturated alcohols, and CER17 was found to encode a predicted ACYL-COENZYME A DESATURASE LIKE4 (ADS4). Studies of the Arabidopsis cer4 mutant and yeast variously expressing CER4 (a predicted fatty acyl-CoA reductase) with CER17/ADS4, demonstrated CER4's principal role in synthesis of these monounsaturated alcohols. Besides unsaturated alcohol deficiency, cer17 mutants exhibited a thickened and irregular cuticle ultrastructure and increased amounts of cutin monomers. Although unsaturated alcohols were absent throughout the cer17 stem, the mutation's effects on cutin monomers and cuticle ultrastructure were much more severe in distal than basal stems, consistent with observations that the CER17/ADS4 transcript was much more abundant in distal than basal stems. Furthermore, distal but not basal stems of a double mutant deficient for both CER17/ADS4 and LONG-CHAIN ACYL-COA SYNTHETASE1 produced even more cutin monomers and a thicker and more disorganized cuticle ultrastructure and higher cuticle permeability than observed for wild type or either mutant parent, indicating a dramatic genetic interaction on conversion of very long chain acyl-CoA precursors. These results provide evidence that CER17/ADS4 performs n-6 desaturation of very long chain acyl-CoAs in both distal and basal stems and has a major function associated with governing cutin monomer amounts primarily in the distal segments of the inflorescence stem.

摘要

我们报道了拟南芥(Arabidopsis thaliana)花序茎角质层蜡质中的n-6单不饱和伯醇(C、C和C同系物),这是一类此前未在拟南芥中报道过的蜡质。拟南芥cer17突变体完全缺乏这些单不饱和醇,并且发现CER17编码一种预测的酰基辅酶A去饱和酶样4(ADS4)。对拟南芥cer4突变体以及分别与CER17/ADS4共同表达CER4(一种预测的脂肪酰辅酶A还原酶)的酵母的研究,证明了CER4在这些单不饱和醇合成中的主要作用。除了不饱和醇缺乏外,cer17突变体还表现出角质层超微结构增厚且不规则以及角质单体含量增加。尽管在整个cer17茎中都不存在不饱和醇,但该突变对角质单体和角质层超微结构的影响在茎的远端比基部更为严重,这与CER17/ADS4转录本在茎的远端比基部丰富得多的观察结果一致。此外,CER17/ADS4和长链酰基辅酶A合成酶1双缺陷的双突变体的远端而非基部茎产生了比野生型或任何一个突变亲本更多的角质单体、更厚且更无序的角质层超微结构以及更高的角质层通透性,这表明在超长链酰基辅酶A前体的转化过程中存在显著的基因相互作用。这些结果提供了证据,表明CER17/ADS4在茎的远端和基部都对超长链酰基辅酶A进行n-6去饱和,并且主要在花序茎的远端节段具有与控制角质单体含量相关的主要功能。