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番茄子房到果实的转变的特征是细胞壁转化酶及其抑制剂的 mRNA 发生空间转移,编码蛋白定位于筛管分子。

Tomato ovary-to-fruit transition is characterized by a spatial shift of mRNAs for cell wall invertase and its inhibitor with the encoded proteins localized to sieve elements.

机构信息

School of Environmental and Life Sciences, The University of Newcastle, NSW 2308, Callaghan, Australia; Australia-China Research Centre for Crop Improvement, The University of Newcastle, NSW 2308, Callaghan, Australia.

Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 300 Fenglin Road, Shanghai 200032, China.

出版信息

Mol Plant. 2015 Feb;8(2):315-28. doi: 10.1016/j.molp.2014.12.019. Epub 2014 Dec 31.

Abstract

Central to understanding fruit development is to elucidate the processes mediating a successful transition from pre-pollination ovaries to newly set fruit, a key step in establishing fruit yield potential. In tomato, cell wall invertase (CWIN) LIN5 and its inhibitor INH1 are essential for fruit growth. However, the molecular and cellular basis by which they exert their roles in ovary-to-fruit transition remains unknown. To address this issue, we conducted a study focusing on ovaries and fruitlets at 2 days before and 2 days after anthesis, respectively. In situ hybridization analyses revealed that LIN5 and INH1 exhibited a dispersed expression in ovaries compared with their phloem-specific expression in fruitlets. Remarkably, LIN5 and INH1 proteins were immunologically co-localized to cell walls of sieve elements (SEs) in ovaries immediately prior to anthesis and in young fruitlets, but were undetectable in provascular bundles of younger ovaries. A burst in CWIN activity occurred during ovary-to-fruit transition. Interestingly, the ovaries, but not the fruitlets, exhibited high expression of a defective invertase, SldeCWIN1, an ortholog of which is known to enhance inhibition of INH on CWIN activity in tobacco. Imaging of a fluorescent symplasmic tracer indicated an apoplasmic phloem unloading pathway operated in ovaries, contrary to the previously observed symplasmic unloading pathway in fruit pericarp. These new data indicate that (1) a phloem-specific patterning of the CWIN and INH mRNAs is induced during ovary-to-fruit transition, and (2) LIN5 protein functions specifically in walls of SEs and increases its activity during ovary-to-fruit transition, probably to facilitate phloem unloading and to generate a glucose signal positively regulating cell division, hence fruit set.

摘要

了解果实发育的关键是阐明介导授粉前卵巢向新形成果实成功转变的过程,这是建立果实产量潜力的关键步骤。在番茄中,细胞壁转化酶(CWIN)LIN5 及其抑制剂 INH1 对果实生长是必不可少的。然而,它们在卵巢到果实转变中发挥作用的分子和细胞基础仍然未知。为了解决这个问题,我们进行了一项研究,分别集中在授粉前 2 天和授粉后 2 天的卵巢和幼果上。原位杂交分析显示,LIN5 和 INH1 在卵巢中的表达呈弥散状,而在幼果中的表达则具有韧皮部特异性。值得注意的是,LIN5 和 INH1 蛋白在授粉前立即和幼果中免疫共定位于筛管(SE)细胞壁上,但在较年轻卵巢的维管束中无法检测到。CWIN 活性在卵巢到果实转变过程中爆发。有趣的是,卵巢而不是幼果表现出高表达缺陷型转化酶 SldeCWIN1,其同源物已知在烟草中增强 INH 对 CWIN 活性的抑制作用。荧光共质体示踪剂的成像表明,在卵巢中存在质外体韧皮部卸出途径,与之前在果实果皮中观察到的共质体卸出途径相反。这些新数据表明:(1)在卵巢到果实转变过程中,CWIN 和 INH mRNA 呈现韧皮部特异性模式;(2)LIN5 蛋白特异性地在 SE 细胞壁中发挥作用,并在卵巢到果实转变过程中增加其活性,可能有助于韧皮部卸出并产生正向调节细胞分裂的葡萄糖信号,从而促进果实形成。

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