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番茄 EAR 基序阻遏子 SlERF36 通过调控 GA 水平和响应加速生长转变并缩短植物生命周期。

The tomato EAR-motif repressor, SlERF36, accelerates growth transitions and reduces plant life cycle by regulating GA levels and responses.

机构信息

Plant Gene Expression Lab, CSIR-National Botanical Research Institute (Council of Scientific and Industrial Research), Lucknow, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, India.

出版信息

Plant Biotechnol J. 2024 Apr;22(4):848-862. doi: 10.1111/pbi.14228. Epub 2023 Dec 21.

Abstract

Faster vegetative growth and early maturity/harvest reduce plant life cycle time and are important agricultural traits facilitating early crop rotation. GA is a key hormone governing developmental transitions that determine growth speed in plants. An EAR-motif repressor, SlERF36 that regulates various growth transitions, partly through regulation of the GA pathway and GA levels, was identified in tomato. Suppression of SlERF36 delayed germination, slowed down organ growth and delayed the onset of flowering time, fruit harvest and whole-plant senescence by 10-15 days. Its over-expression promoted faster growth by accelerating all these transitions besides increasing organ expansion and plant height substantially. The plant life cycle and fruit harvest were completed 20-30 days earlier than control without affecting yield, in glasshouse as well as net-house conditions, across seasons and generations. These changes in life cycle were associated with reciprocal changes in expression of GA pathway genes and basal GA levels between suppression and over-expression lines. SlERF36 interacted with the promoters of two GA2 oxidase genes, SlGA2ox3 and SlGA2ox4, and the DELLA gene, SlDELLA, reducing their transcription and causing a 3-5-fold increase in basal GA/GA levels. Its suppression increased SlGA2ox3/4 transcript levels and reduced GA/GA levels by 30%-50%. SlERF36 is conserved across families making it an important candidate in agricultural and horticultural crops for manipulation of plant growth and developmental transitions to reduce life cycles for faster harvest.

摘要

更快的营养生长和早期成熟/收获减少了植物的生命周期时间,是促进早期作物轮作的重要农业特性。GA 是一种关键激素,控制着决定植物生长速度的发育转变。在番茄中,发现了一种 EAR 基序抑制剂 SlERF36,它通过调节 GA 途径和 GA 水平来调节各种生长转变。SlERF36 的抑制延迟了发芽,减缓了器官生长,并使开花时间、果实收获和整个植株衰老的时间推迟了 10-15 天。其过表达通过加速所有这些转变,除了显著增加器官扩张和株高外,还促进了更快的生长。在温室和网室条件下,跨越季节和世代,植物的生命周期和果实收获比对照提前了 20-30 天完成,而不影响产量。在抑制和过表达系之间,GA 途径基因和基础 GA 水平的表达呈相反变化,与这些生命周期变化相关。SlERF36 与两个 GA2 氧化酶基因 SlGA2ox3 和 SlGA2ox4 以及 DELLA 基因 SlDELLA 的启动子相互作用,降低了它们的转录,导致基础 GA/GA 水平增加了 3-5 倍。其抑制增加了 SlGA2ox3/4 的转录水平,并降低了 30%-50%的 GA/GA 水平。SlERF36 在家族间是保守的,使其成为农业和园艺作物中用于操纵植物生长和发育转变以缩短生命周期以实现更快收获的重要候选基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4842/11374052/c3f6ab7b04be/PBI-22-848-g003.jpg

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