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光照对玉米中胚轴中纤维素合酶样基因家族的调控

Regulation of the cellulose synthase-like gene family by light in the maize mesocotyl.

作者信息

van Erp Harrie, Walton Jonathan D

机构信息

Department of Energy-Plant Research Laboratory, Michigan State University, E. Lansing, MI 48824, USA.

出版信息

Planta. 2009 Mar;229(4):885-97. doi: 10.1007/s00425-008-0881-3. Epub 2009 Jan 7.

Abstract

The cellulose synthase-like (ZmCSL) gene family of maize was annotated and its expression studied in the maize mesocotyl. A total of 28 full-length CSL genes and another 13 partial sequences were annotated; four are predicted to be pseudogenes. Maize has all of the CSL subfamilies that are present in rice, but the CSLC subfamily is expanded from 6 in rice to 12 in maize, and the CSLH subfamily might be reduced from 3 to 1. Unlike rice, maize has a gene in the CSLG subfamily, based on its sequence similarity to two genes annotated as CSLG in poplar. Light regulation of glycan synthase enzyme activities and CSL gene expression were analyzed in the mesocotyl. A Golgi-localized glucan synthase activity is reduced by ~50% 12 h after exposure to light. beta-1,4-Mannan synthase activity is reduced even more strongly (>85%), whereas beta-1,4-xylan synthase, callose synthase, and latent IDPase activity respond only slightly, if at all, to light. At least 17 of the CSL genes (42%) are expressed in the mesocotyl, of which four are up-regulated at least twofold, seven are down-regulated at least twofold, and six are not affected by light. The results contribute to our understanding of the structure of the CSL gene family in an important food and biofuel plant, show that a large percentage of the CSL genes are expressed in the specialized tissues of the mesocotyl, and demonstrate that members of the CSL gene family are differentially subject to photobiological regulation.

摘要

对玉米的类纤维素合酶(ZmCSL)基因家族进行了注释,并研究了其在玉米中胚轴中的表达。总共注释了28个全长CSL基因和另外13个部分序列;预测有4个为假基因。玉米拥有水稻中存在的所有CSL亚家族,但CSLC亚家族从水稻中的6个扩展到玉米中的12个,而CSLH亚家族可能从3个减少到1个。与水稻不同,基于其与杨树中注释为CSLG的两个基因的序列相似性,玉米在CSLG亚家族中有一个基因。分析了中胚轴中聚糖合酶活性和CSL基因表达的光调节。暴露于光下12小时后,高尔基体定位的葡聚糖合酶活性降低了约50%。β-1,4-甘露聚糖合酶活性的降低更为强烈(>85%),而β-1,4-木聚糖合酶、胼胝质合酶和潜在的IDPase活性对光的反应即使有也很轻微。至少17个CSL基因(42%)在中胚轴中表达,其中4个上调至少两倍,7个下调至少两倍,6个不受光的影响。这些结果有助于我们了解一种重要的粮食和生物燃料作物中CSL基因家族的结构,表明很大一部分CSL基因在中胚轴的特化组织中表达,并证明CSL基因家族的成员受到不同的光生物学调节。

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