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在干旱期间,番茄优先考虑生殖供水。

Reproductive water supply is prioritized during drought in tomato.

机构信息

School of Natural Sciences, University of Tasmania, Hobart, Tasmania, Australia.

出版信息

Plant Cell Environ. 2022 Jan;45(1):69-79. doi: 10.1111/pce.14206. Epub 2021 Nov 18.

Abstract

Reproductive success largely defines the fitness of plant species. Understanding how heat and drought affect plant reproduction is thus key to predicting future plant fitness under rising global temperatures. Recent work suggests reproductive tissues are highly vulnerable to water stress in perennial plants where reproductive sacrifice could preserve plant survival. However, most crop species are annuals where such a strategy would theoretically reduce fitness. We examined the reproductive strategy of tomato (Solanum lycopersicum var. Rheinlands Ruhm) to determine whether water supply to fruits is prioritized above vegetative tissues during drought. Using optical methods, we mapped xylem cavitation and tissue shrinkage in vegetative and reproductive organs during dehydration to determine the priority of water flow under acute water stress. Stems and peduncles of tomato showed significantly greater xylem cavitation resistance than leaves. This maintenance of intact water supply enabled tomato fruit to continue to expand during acute water stress, utilizing xylem water made available by tissue collapse and early cavitation of leaves. Here, tomato plants prioritize water supply to reproductive tissues, maintaining fruit development under drought conditions. These results emphasize the critical role of water transport in shaping life history and suggest a broad relevance of hydraulic prioritization in plant ecology.

摘要

生殖成功在很大程度上决定了植物物种的适合度。因此,了解高温和干旱如何影响植物繁殖,对于预测未来全球气温上升下植物的适合度至关重要。最近的研究表明,在多年生植物中,生殖组织对水分胁迫高度敏感,生殖组织的牺牲可以保存植物的生存。然而,大多数作物物种都是一年生植物,从理论上讲,这种策略会降低其适合度。我们研究了番茄(Solanum lycopersicum var. Rheinlands Ruhm)的生殖策略,以确定在干旱期间,果实的水分供应是否优先于营养组织。我们使用光学方法,在脱水过程中绘制了营养组织和生殖器官的木质部空化和组织收缩图,以确定在急性水分胁迫下水流的优先级。番茄的茎和花梗的木质部抗空化能力明显强于叶片。这种完整的供水维持使番茄果实能够在急性水分胁迫下继续扩张,利用叶片组织崩溃和早期空化产生的木质部水分。在这里,番茄植物优先为生殖组织供水,在干旱条件下维持果实发育。这些结果强调了水分运输在塑造生活史中的关键作用,并表明水力优先在植物生态学中具有广泛的相关性。

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