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花序温度影响赤霞珠葡萄果实的坐果、物候和库强。

Inflorescence temperature influences fruit set, phenology, and sink strength of Cabernet Sauvignon grape berries.

作者信息

Keller Markus, Scheele-Baldinger Regula, Ferguson John C, Tarara Julie M, Mills Lynn J

机构信息

Department of Horticulture, Irrigated Agriculture Research and Extension Center, Washington State University, Prosser, WA, United States.

Department of Agricultural and Food Sciences, Swiss Federal Institute of Technology, Zürich, Switzerland.

出版信息

Front Plant Sci. 2022 Aug 15;13:864892. doi: 10.3389/fpls.2022.864892. eCollection 2022.

Abstract

The temperature during the bloom period leading up to fruit set is a key determinant of reproductive success in plants and of harvest yield in crop plants. However, it is often unclear whether differences in yield components result from temperature effects on the whole plant or specifically on the flower or fruit sinks. We used a forced-convection, free-air cooling and heating system to manipulate the inflorescence temperature of field-grown Cabernet Sauvignon grapevines during the bloom period. Temperature regimes included cooling (ambient -7.5°C), heating (ambient +7.5°C), an ambient control, and a convective control. Cooling significantly retarded the time to fruit set and subsequent berry development, and heating shortened the time to fruit set and accelerated berry development relative to the two controls. Fruit set was decreased in cooled inflorescences, but although the cooling regime resulted in the lowest berry number per cluster, it also decreased seed and berry weight at harvest while not affecting seed number. Cooling inflorescences slightly decreased fruit soluble solids and pH, and increased titratable acidity, but did not affect color density. The inflorescence temperature did not impact leaf gas exchange and shoot growth, and shoot periderm formation occurred independently of the timing of fruit ripening. These results suggest that the temperature experienced by grape flowers during bloom time impacts fruit set and subsequent seed and berry development. Suboptimal temperatures not only reduce the proportion of flowers that set fruit but also limit the sink strength of the berries that do develop after fruit set. Shoot vigor and maturation, and leaf physiology, on the other hand, may be rather insensitive to temperature-induced changes in reproductive development.

摘要

在坐果前的花期,温度是决定植物生殖成功以及作物收获产量的关键因素。然而,产量构成因素的差异究竟是源于温度对整株植物的影响,还是 specifically 对花或果实库的影响,往往并不明确。我们使用了强制对流、自由空气冷却和加热系统,在花期操控田间种植的赤霞珠葡萄藤的花序温度。温度处理包括冷却(环境温度 -7.5°C)、加热(环境温度 +7.5°C)、环境对照和对流对照。与两个对照相比,冷却显著延迟了坐果时间和随后的浆果发育,加热则缩短了坐果时间并加速了浆果发育。冷却的花序坐果率降低,尽管冷却处理导致每串浆果数量最少,但它也降低了收获时种子和浆果的重量,同时不影响种子数量。冷却花序会使果实可溶性固形物和pH值略有降低,可滴定酸度增加,但不影响颜色密度。花序温度不影响叶片气体交换和新梢生长,新梢周皮形成与果实成熟时间无关。这些结果表明,葡萄花在花期所经历的温度会影响坐果以及随后的种子和浆果发育。温度不适不仅会降低坐果的花的比例,还会限制坐果后发育的浆果的库强。另一方面,新梢活力和成熟度以及叶片生理机能可能对温度诱导的生殖发育变化相当不敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b992/9420974/c0e895f53232/fpls-13-864892-g001.jpg

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