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玉米中蔗糖酶基因家族的全基因组分析。

Genome-wide analysis of the invertase gene family from maize.

机构信息

Departamento de Ingeniería Genética, Unidad Irapuato, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional (CINVESTAV), Km 9.6 Libramiento Norte, Irapuato, C.P. 36824, Guanajuato, Mexico.

KWS Group, Grimsehlstrasse 31, 37574, Einbeck, Germany.

出版信息

Plant Mol Biol. 2018 Jul;97(4-5):385-406. doi: 10.1007/s11103-018-0746-5. Epub 2018 Jun 11.

Abstract

The recent release of the maize genome (AGPv4) contains annotation errors of invertase genes and therefore the enzymes are bestly curated manually at the protein level in a comprehensible fashion The synthesis, transport and degradation of sucrose are determining factors for biomass allocation and yield of crop plants. Invertase (INV) is a key enzyme of carbon metabolism in both source and sink tissues. Current releases of the maize genome correctly annotates only two vacuolar invertases (ivr1 and ivr2) and four cell wall invertases (incw1, incw2 (mn1), incw3, and incw4). Our comprehensive survey identified 21 INV isogenes for which we propose a standard nomenclature grouped phylogenetically by amino acid similarity: three vacuolar (INVVR), eight cell wall (INVCW), and ten alkaline/neutral (INVAN) isogenes which form separate dendogram branches due to distinct molecular features. The acidic enzymes were curated for the presence of the DPN tripeptide which is coded by one of the smallest exons reported in plants. Particular attention was placed on the molecular role of INV in vascular tissues such as the nodes, internodes, leaf sheath, husk leaves and roots. We report the expression profile of most members of the maize INV family in nine tissues in two developmental stages, R1 and R3. INVCW7, INVVR2, INVAN8, INVAN9, INVAN10, and INVAN3 displayed the highest absolute expressions in most tissues. INVVR3, INVCW5, INVCW8, and INVAN1 showed low mRNA levels. Expressions of most INVs were repressed from stage R1 to R3, except for INVCW7 which increased significantly in all tissues after flowering. The mRNA levels of INVCW7 in the vegetative stem correlated with a higher transport rate of assimilates from leaves to the cob which led to starch accumulation and growth of the female reproductive organs.

摘要

最近发布的玉米基因组(AGPv4)中含有蔗糖转化酶基因的注释错误,因此最好在蛋白质水平上以可理解的方式手动对酶进行精心编辑。蔗糖的合成、运输和降解是决定作物生物质分配和产量的关键因素。蔗糖转化酶(INV)是源和库组织中碳代谢的关键酶。目前发布的玉米基因组仅正确注释了两个液泡蔗糖转化酶(ivr1 和 ivr2)和四个细胞壁蔗糖转化酶(incw1、incw2(mn1)、incw3 和 incw4)。我们的全面调查确定了 21 个 INV 同系物,我们根据氨基酸相似性进行了系统发育分组,并为它们提出了一个标准命名法:三个液泡(INVVR)、八个细胞壁(INVCW)和十个碱性/中性(INVAN)同系物,由于具有独特的分子特征,它们形成了单独的系统发育分支。酸性酶经过精心编辑,以存在 DPN 三肽为特征,该三肽由植物中报道的最小外显子之一编码。特别关注 INV 在血管组织(如节点、节间、叶鞘、苞叶和根)中的分子作用。我们报告了玉米 INV 家族的大多数成员在两个发育阶段 R1 和 R3 的九个组织中的表达谱。在大多数组织中,INVCW7、INVVR2、INVAN8、INVAN9、INVAN10 和 INVAN3 表现出最高的绝对表达量。INVVR3、INVCW5、INVCW8 和 INVAN1 表现出低的 mRNA 水平。除了开花后所有组织中 INVCW7 显著增加外,大多数 INVs 的表达从 R1 期到 R3 期受到抑制。营养茎中的 INVCW7 mRNA 水平与从叶片到果穗的同化物转运率较高相关,这导致淀粉积累和雌性生殖器官的生长。

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