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豆类中交替氧化酶基因的基因组结构和表达。

Genomic structure and expression of alternative oxidase genes in legumes.

机构信息

Australian Research Council Industrial Transformation Research Hub, Legumes for Sustainable Agriculture, College of Science and Engineering, Flinders University of South Australia, Adelaide, South Australia, GPO Box 2001, Australia.

出版信息

Plant Cell Environ. 2019 Jan;42(1):71-84. doi: 10.1111/pce.13161. Epub 2018 Jun 1.

Abstract

Mitochondria isolated from chickpea (Cicer arietinum) possess substantial alternative oxidase (AOX) activity, even in non-stressed plants, and one or two AOX protein bands were detected immunologically, depending on the organ. Four different AOX isoforms were identified in the chickpea genome: CaAOX1 and CaAOX2A, B and D. CaAOX2A was the most highly expressed form and was strongly expressed in photosynthetic tissues, whereas CaAOX2D was found in all organs examined. These results are very similar to those of previous studies with soybean and siratro. Searches of available databases showed that this pattern of AOX genes and their expression was common to at least 16 different legume species. The evolution of the legume AOX gene family is discussed, as is the in vivo impact of an inherently high AOX capacity in legumes on growth and responses to environmental stresses.

摘要

从小豆(Cicer arietinum)中分离出的线粒体即使在非胁迫植物中也具有相当大的交替氧化酶(AOX)活性,并且根据器官的不同,免疫学检测到一个或两个 AOX 蛋白带。在鹰嘴豆基因组中鉴定出了四种不同的 AOX 同工型:CaAOX1 和 CaAOX2A、B 和 D。CaAOX2A 是表达量最高的形式,在光合组织中强烈表达,而 CaAOX2D 存在于所有检查的器官中。这些结果与以前对大豆和银叶相思的研究非常相似。对现有数据库的搜索表明,这种 AOX 基因及其表达模式至少在 16 种不同的豆科植物中是常见的。讨论了豆科植物 AOX 基因家族的进化,以及豆科植物固有的高 AOX 能力对生长和对环境胁迫反应的体内影响。

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