气候变化对最佳夏威夷果果仁质量的挑战。

IF 2.7 4区 生物学 Q2 PLANT SCIENCES
Suzy Y Rogiers, Kevin P Quinlan, Jeremy D Bright
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引用次数: 0

摘要

澳洲坚果(澳洲坚果属)因其风味和营养特性而备受欢迎。尽管在它们的原生栖息地进行种植,但不可预测的极端天气事件给澳大利亚的夏威夷果产业带来了压力,以保持高质量的果仁的生产。近年来,由于降雨时间和降雨量的变化,该行业的产量和质量都有所下降,这表明需要对果园农艺实践进行转型变革。本文讨论了影响籽粒含油量、籽粒回收率、籽粒整体和籽粒外观的采收前条件。综述了采收和贮藏条件对籽粒品质的影响。我们提出了进一步研究的机会,以优化农场实践和保障收获后的内核质量。这包括在现有研究的基础上推进我们对基因与植物对气候变化的反应之间相互作用的理解。它还需要创新,以促进以环境敏感的方式在空间和时间上进行精确管理的技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Challenges to optimal macadamia (Macadamia spp.) kernel quality in a changing climate.

Macadamias (Macadamia spp.) are highly desired for their flavour and nutritional characteristics. Despite cultivation in their native habitat, unpredictable and extreme weather events are applying pressure on the Australian macadamia industry to maintain the production of high-quality kernels. The industry has experienced losses in yield and quality due to shifts in the timing and volume of rain in recent years, and this has identified the requirement for transformational changes in orchard agronomic practices. Pre-harvest conditions that impinge on kernel oil content, kernel recovery, whole kernels and kernel appearance are discussed in this review. The impact of harvest and storage conditions on kernel quality are also reviewed. We propose opportunities for further research to optimise on-farm practices and to safeguard kernel quality post-harvest. This includes building on existing research to advance our understanding of the interaction of genetics with plant response to climate change. It also requires innovation to advance technologies that foster precision management, both spatially and temporally, in an environmentally sensitive manner.

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来源期刊
Functional Plant Biology
Functional Plant Biology 生物-植物科学
CiteScore
5.50
自引率
3.30%
发文量
156
审稿时长
1 months
期刊介绍: Functional Plant Biology (formerly known as Australian Journal of Plant Physiology) publishes papers of a broad interest that advance our knowledge on mechanisms by which plants operate and interact with environment. Of specific interest are mechanisms and signal transduction pathways by which plants adapt to extreme environmental conditions such as high and low temperatures, drought, flooding, salinity, pathogens, and other major abiotic and biotic stress factors. FPB also encourages papers on emerging concepts and new tools in plant biology, and studies on the following functional areas encompassing work from the molecular through whole plant to community scale. FPB does not publish merely phenomenological observations or findings of merely applied significance. Functional Plant Biology is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science. Functional Plant Biology is published in affiliation with the Federation of European Societies of Plant Biology and in Australia, is associated with the Australian Society of Plant Scientists and the New Zealand Society of Plant Biologists.
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