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远红光增强顶端优势会刺激甜椒花果脱落。

Far-red light-enhanced apical dominance stimulates flower and fruit abortion in sweet pepper.

机构信息

Horticulture and Product Physiology, Wageningen University and Research, Droevendaalsesteeg 1, 6708 PB Wageningen, The Netherlands.

Plant Developmental Genetics, Institute of Biology Leiden, Leiden University, Sylviusweg 72, 2333 BE Leiden, The Netherlands.

出版信息

Plant Physiol. 2024 May 31;195(2):924-939. doi: 10.1093/plphys/kiae088.

Abstract

Far-red radiation affects many plant processes, including reproductive organ abortion. Our research aimed to determine the role of apical dominance in far-red light-induced flower and fruit abortion in sweet pepper (Capsicum annuum L.). We conducted several climate room experiments where plants were grown under white- or red-rich LED light, with or without additional far-red light. Additional far-red light enhanced apical dominance: it increased auxin levels in the apices of dominant shoots, and caused a greater difference in internode length and apical auxin levels between dominant and subordinate shoots. Additional far-red light stimulated fruit abortion in intact plants but not in decapitated plants, suggesting a crucial role of shoot apices in this effect. However, reducing basipetal auxin transport in the stems with N-1-naphthylphthalamic acid did not influence far-red light-stimulated fruit abortion, although auxin levels in the stem were largely reduced. Applying the synthetic auxin 1-naphthaleneacetic acid on decapitated apices did not influence fruit abortion. However, applying the auxin biosynthesis inhibitor yucasin to shoot apices reduced fruit abortion regardless of the light conditions, accompanied by slight shoot growth retardation. These findings suggest that the basipetal auxin stream does not mediate far-red light-stimulated fruit abortion. Far-red light-stimulated fruit abortion was associated with reduced sucrose accumulation and lower invertase activities in flowers. We suggest that under additional far-red light conditions, increased auxin levels in shoot apices promote fruit abortion probably through enhanced competition for assimilates between apices and flowers, which limits assimilate import into flowers.

摘要

远红辐射影响许多植物过程,包括生殖器官败育。我们的研究旨在确定顶端优势在甜椒(Capsicum annuum L.)远红光诱导花和果实败育中的作用。我们进行了几项气候室实验,在这些实验中,植物在白光或富含红光的 LED 光下生长,有或没有额外的远红光。额外的远红光增强了顶端优势:它增加了顶端优势枝条顶端的生长素水平,并导致优势和劣势枝条之间节间长度和顶端生长素水平的差异更大。额外的远红光刺激完整植株的果实败育,但不刺激去顶植株的果实败育,表明枝条顶端在这种效应中起着关键作用。然而,用 N-1-萘基邻苯二甲酰胺减少茎中的向基生长素运输并没有影响远红光刺激的果实败育,尽管茎中的生长素水平大大降低。将合成生长素 1-萘乙酸应用于去顶顶端并没有影响果实败育。然而,将生长素生物合成抑制剂 yucasin 应用于枝条顶端,无论光照条件如何,都能减少果实败育,同时伴有轻微的枝条生长迟缓。这些发现表明,向基生长素流不介导远红光刺激的果实败育。远红光刺激的果实败育与花朵中蔗糖积累减少和转化酶活性降低有关。我们认为,在额外的远红光条件下,枝条顶端生长素水平的升高可能通过增强顶端和花朵之间对同化产物的竞争来促进果实败育,从而限制同化产物向花朵的输入。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bee/11142340/15a485280c46/kiae088f1.jpg

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