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一个对铝毒敏感的水稻突变体在根外部细胞层的特化过程中存在缺陷。

A rice mutant sensitive to Al toxicity is defective in the specification of root outer cell layers.

作者信息

Huang Chao-Feng, Yamaji Naoki, Nishimura Minoru, Tajima Shigeyuki, Ma Jian Feng

机构信息

Research Institute for Bioresources, Okayama University, Chuo 2-20-1, Kurashiki 710-0046, Japan.

出版信息

Plant Cell Physiol. 2009 May;50(5):976-85. doi: 10.1093/pcp/pcp050. Epub 2009 Apr 1.

Abstract

Outer cell layers of rice roots, which comprise epidermis, exodermis and sclerenchyma, have been proposed to protect the roots from various stresses in soil. Here, we report a mutant which is defective in the specification of outer cell layers, and examined the role of these layers in Al and other metal resistance. Morphological and histochemical observations revealed that the mutant isolated based on Al sensitivity frequently showed a disordered pattern of periclinal cell division in the epidermal layers at a region close to the root apical meristem. The lateral root caps in the mutant became difficult to peel off from the epidermis, and epidermal cells became smaller and irregular with far fewer root hairs. Furthermore, some exodermal cells were transformed into additional sclerenchyma cells. However, there was no difference in the inner cell layers between the wild-type rice and the mutant. The mutant showed similar root growth to the wild-type rice in the absence of Al, but greater inhibition of root elongation by Al was found in the mutant. Morin staining showed that Al penetrated into the inner cortical cells in the mutant. Furthermore, the mutant was also sensitive to other metals including Cd and La. Taken together, our results indicate that root outer cell layers protect the roots against the toxicity of Al and other metals by preventing metal penetration into the inner cells. Genetic analysis showed that the mutant phenotypes were controlled by a single recessive gene, which was located on the short arm of rice chromosome 2.

摘要

水稻根的外层细胞包括表皮、外皮层和厚壁组织,被认为可以保护根部免受土壤中各种胁迫。在此,我们报道了一个在外层细胞层特化方面存在缺陷的突变体,并研究了这些细胞层在铝及其他金属抗性中的作用。形态学和组织化学观察表明,基于铝敏感性分离出的突变体在靠近根尖分生组织的区域,其表皮层平周细胞分裂模式经常紊乱。突变体的侧根冠难以从表皮上剥离,表皮细胞变小且不规则,根毛数量也少得多。此外,一些外皮层细胞转化为额外的厚壁组织细胞。然而,野生型水稻和突变体的内层细胞层没有差异。在没有铝的情况下,突变体的根生长与野生型水稻相似,但在突变体中发现铝对根伸长的抑制作用更强。桑色素染色表明铝渗透到突变体的内层皮层细胞中。此外,该突变体对包括镉和镧在内的其他金属也敏感。综上所述,我们的结果表明,根外层细胞层通过阻止金属渗透到内层细胞中,保护根部免受铝和其他金属的毒性影响。遗传分析表明,突变体表型由一个位于水稻第2号染色体短臂上的单隐性基因控制。

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