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由ABCB28和ABCB29介导的叶绿体生长素外排微调盐和干旱胁迫响应

Chloroplast Auxin Efflux Mediated by ABCB28 and ABCB29 Fine-Tunes Salt and Drought Stress Responses in .

作者信息

Tamizhselvan Prashanth, Madhavan Sharmila, Constan-Aguilar Christian, Elrefaay Eman Ryad, Liu Jie, Pěnčík Aleš, Novák Ondřej, Cairó Albert, Hrtyan Mónika, Geisler Markus, Tognetti Vanesa Beatriz

机构信息

Mendel Centre for Plant Genomics and Proteomics, Central European Institute of Technology (CEITEC), Masaryk University, Kamenice 5, CZ-625 00 Brno, Czech Republic.

Department of Biology, University of Fribourg, CH-1700 Fribourg, Switzerland.

出版信息

Plants (Basel). 2023 Dec 19;13(1):7. doi: 10.3390/plants13010007.

Abstract

Photosynthesis is among the first processes negatively affected by environmental cues and its performance directly determines plant cell fitness and ultimately crop yield. Primarily sites of photosynthesis, chloroplasts are unique sites also for the biosynthesis of precursors of the growth regulator auxin and for sensing environmental stress, but their role in intracellular auxin homeostasis, vital for plant growth and survival in changing environments, remains poorly understood. Here, we identified two ATP-binding cassette (ABC) subfamily B transporters, ABCB28 and ABCB29, which export auxin across the chloroplast envelope to the cytosol in a concerted action in vivo. Moreover, we provide evidence for an auxin biosynthesis pathway in chloroplasts. The overexpression of ABCB28 and ABCB29 influenced stomatal regulation and resulted in significantly improved water use efficiency and survival rates during salt and drought stresses. Our results suggest that chloroplast auxin production and transport contribute to stomata regulation for conserving water upon salt stress. ABCB28 and ABCB29 integrate photosynthesis and auxin signals and as such hold great potential to improve the adaptation potential of crops to environmental cues.

摘要

光合作用是最早受到环境信号负面影响的过程之一,其性能直接决定植物细胞的健康状况,并最终决定作物产量。叶绿体作为光合作用的主要场所,也是生长调节因子生长素前体生物合成和感知环境胁迫的独特场所,但其在细胞内生长素稳态中的作用,这对植物在不断变化的环境中的生长和生存至关重要,目前仍知之甚少。在这里,我们鉴定了两个ATP结合盒(ABC)B亚家族转运蛋白,ABCB28和ABCB29,它们在体内协同作用,将生长素跨叶绿体包膜输出到细胞质中。此外,我们提供了叶绿体中生长素生物合成途径的证据。ABCB28和ABCB29的过表达影响气孔调节,并在盐胁迫和干旱胁迫期间显著提高了水分利用效率和存活率。我们的结果表明,叶绿体生长素的产生和运输有助于在盐胁迫下调节气孔以保持水分。ABCB28和ABCB29整合了光合作用和生长素信号,因此在提高作物对环境信号的适应潜力方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5815/10780339/85d92b699f8e/plants-13-00007-g001.jpg

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