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首页> 外文期刊>Plant Molecular Biology >EGY1 plays a role in regulation of endodermal plastid size and number that are involved in ethylene-dependent gravitropism of light-grown Arabidopsis hypocotyls
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EGY1 plays a role in regulation of endodermal plastid size and number that are involved in ethylene-dependent gravitropism of light-grown Arabidopsis hypocotyls

机译:EGY1在调节内在质体的大小和数量方面发挥作用,这些蛋白和轻质拟南芥下胚轴的乙烯依赖性引力作用

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摘要

Egy1 was isolated as an ethylene-dependent gravitropism-deficient Arabidopsis mutant. Molecular studies reveal that EGY1 gene encodes a 59-kDa plastid-targeted metalloprotease. It is actively expressed in hypocotyl tissue and targets to endodermal and cortex plastid. Its protein level is up-regulated by both ethylene and light. CAB protein accumulation and chlorophyll level is severely reduced in hypocotyls and endodermal cells, respectively. Sucrose is able to restore the severely reduced starch and lipid contents as well as the deficient endodermal plastid size found in light-grown egy1 hypocotyls yet it fails to rescue the reduced plastid number and chlorophyll level in egy1 endodermal cells. The loss-of-function egy1 mutation results in a smaller size (1.9 +/- 0.3 mu m in diameter) and less number (5 +/- 1) of plastids in endodermal cells, which are nearly 50% of the wild-type. EGY1 is specially required for the development of full-size endodermal plastid in seedlings that are grown on sucrose-free media under light. It plays a direct role in controlling the light-induced chlorophyll production, grana formation and plastid replication in endodermal cell. However, it plays an indirect role in regulation of endodermal plastid size. It is likely that the ethylene-dependent gravitropism-deficient phenotype of egy1 hypocotyls may result from the smaller size and less number of endodermal plastids. Gravicurvature assays performed on ethylene-insensitive mutants, etr1-1, etr2-1, ers2-1, ein4-1 and ein2-5, have clearly demonstrated the necessary role for ethylene in vigorous gravitropism of light-grown hypocotyls. The degree of ethylene-dependent gravicurvature is positively correlated with the combined state of endodermal plastid mass and number. Neither ethylene nor EGY1-regulated full-size endodermal plastid is sufficient for promotion of vigorous hypocotyl gravitropism. Presence of 4 full-size plastids per endodermal cell together with ethylene pretreatment of hypocotyls becomes sufficient to trigger vigorous gravicurvature in light-grown seedlings. A model is therefore proposed to address the role of EGY1 in regulation of endodermal plastid size and number as well as the stimulatory effect of ethylene on hypocotyl gravitropism.
机译:Egy1被分离为乙烯依赖性重力缺陷拟南芥突变体。分子研究表明,EGY1基因编码一个59 kDa的质体靶向金属蛋白酶。它在下胚轴组织中活跃表达,并靶向内胚层和皮质质体。乙烯和光都会上调蛋白质水平。下胚轴和内胚层细胞中的CAB蛋白积累和叶绿素水平分别大大降低。蔗糖能够恢复在轻度生长的egy1下胚轴中发现的严重降低的淀粉和脂质含量,以及不足的内胚层质体大小,但它无法挽救egy1内胚层细胞中降低的质体数量和叶绿素水平。丧失功能的egy1突变导致内胚层细胞中较小的质体(直径1.9 +/- 0.3微米)和较少数量的质子体(5 +/- 1),几乎是野生型的50% 。 EGY1是在无蔗糖培养基上光照下生长的幼苗中发育全尺寸内胚层质体的特别要求。它在控制内胚层细胞中光诱导的叶绿素生成,颗粒形成和质体复制中起直接作用。但是,它在调节内胚层质体大小中起间接作用。 egy1下胚轴的乙烯依赖性引力缺陷型表型可能是由较小的内皮质体数量和较少的数量导致的。在对乙烯不敏感的突变体etr1-1,etr2-1,ers2-1,ein4-1和ein2-5上进行的重力曲面分析清楚地证明了乙烯在轻度生长的下胚轴强重力作用中的必要作用。乙烯依赖性引渡的程度与内胚层质体质量和数量的组合状态正相关。乙烯或EGY1调节的全尺寸内胚层质体都不足以促进剧烈的下胚轴引力。每个内胚层细胞存在4个全尺寸质体以及乙烯对下胚轴的预处理足以触发轻生苗木的剧烈重力弯曲。因此,提出了一个模型来解决EGY1在调节内胚层质体大小和数量以及乙烯对下胚轴引力的刺激作用中的作用。

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