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针对北极地区种植的豌豆(L.)遗传资源的性状表达与环境响应

Trait Expression and Environmental Responses of Pea ( L.) Genetic Resources Targeting Cultivation in the Arctic.

作者信息

Carlson-Nilsson Ulrika, Aloisi Karolina, Vågen Ingunn M, Rajala Ari, Mølmann Jørgen B, Rasmussen Søren K, Niemi Mari, Wojciechowska Ewelina, Pärssinen Pertti, Poulsen Gert, Leino Matti W

机构信息

NordGen, Nordic Genetic Resource Center, Alnarp, Sweden.

Division of Food Production and Society, Norwegian Institute of Bioeconomy Research NIBIO, Ås, Norway.

出版信息

Front Plant Sci. 2021 Jul 29;12:688067. doi: 10.3389/fpls.2021.688067. eCollection 2021.

Abstract

In the Arctic part of the Nordic region, cultivated crops need to specifically adapt to adverse and extreme climate conditions, such as low temperatures, long days, and a short growing season. Under the projected climate change scenarios, higher temperatures and an earlier spring thaw will gradually allow the cultivation of plants that could not be previously cultivated there. For millennia, Pea ( L.) has been a major cultivated protein plant in Nordic countries but is currently limited to the southern parts of the region. However, response and adaptation to the Arctic day length/light spectrum and temperatures are essential for the productivity of the pea germplasm and need to be better understood. This study investigated these factors and identified suitable pea genetic resources for future cultivation and breeding in the Arctic region. Fifty gene bank accessions of peas with a Nordic landrace or cultivar origin were evaluated in 2-year field trials at four Nordic locations in Denmark, Finland, Sweden, and Norway (55° to 69° N). The contrasting environmental conditions of the trial sites revealed differences in expression of phenological, morphological, crop productivity, and quality traits in the accessions. The data showed that light conditions related to a very long photoperiod partly compensated for the lack of accumulated temperature in the far north. A critical factor for cultivation in the Arctic is the use of cultivars with rapid flowering and maturation times combined with early sowing. At the most extreme site (69°N), no accession reached full maturation. Nonetheless several accessions, predominantly landraces of a northern origin, reached a green harvest state. All the cultivars reached full maturation at the sub-Arctic latitude in northern Sweden (63°N) when plants were established early in the season. Seed yield correlated positively with seed number and aboveground biomass, but negatively with flowering time. A high yield potential and protein concentration of dry seed were found in many garden types of pea, confirming their breeding potential for yield. Overall, the results indicated that pea genetic resources are available for breeding or immediate cultivation, thus aiding in the northward expansion of pea cultivation. Predicted climate changes would support this expansion.

摘要

在北欧地区的北极部分,种植作物需要特别适应不利和极端的气候条件,如低温、长日照和短生长季节。在预计的气候变化情景下,气温升高和春季解冻提前将逐渐使得以前无法在那里种植的植物得以种植。数千年来,豌豆一直是北欧国家主要的种植蛋白作物,但目前仅限于该地区的南部。然而,豌豆种质对北极日照长度/光谱和温度的响应及适应性对于其生产力至关重要,需要更好地了解。本研究调查了这些因素,并确定了适合在北极地区未来种植和育种的豌豆遗传资源。对50份具有北欧地方品种或栽培品种起源的豌豆种质资源在丹麦、芬兰、瑞典和挪威(北纬55°至69°)的四个北欧地点进行了为期两年的田间试验。试验地点截然不同的环境条件揭示了这些种质在物候、形态、作物生产力和品质性状表达上的差异。数据表明,与极长光周期相关的光照条件部分弥补了最北部地区积温的不足。在北极地区种植的一个关键因素是使用开花和成熟时间快且结合早播的品种。在最极端的地点(北纬69°),没有种质达到完全成熟。尽管如此,几个种质,主要是北方起源的地方品种,达到了绿色收获状态。当在季节早期种植时,所有品种在瑞典北部的亚北极纬度(北纬63°)都达到了完全成熟。种子产量与种子数量和地上生物量呈正相关,但与开花时间呈负相关。在许多豌豆园艺类型中发现了较高的产量潜力和干种子蛋白质浓度,证实了它们在产量方面的育种潜力。总体而言,结果表明有豌豆遗传资源可用于育种或直接种植,从而有助于豌豆种植向北扩展。预测的气候变化将支持这一扩展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63f6/8358656/8a14975ab57c/fpls-12-688067-g0001.jpg

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