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研究多功能豆科植物——豇豆(Lablab purpureus(L.)Sweet)在东非小农户生产中的多种潜力。

Investigating the diverse potential of a multi-purpose legume, Lablab purpureus (L.) Sweet, for smallholder production in East Africa.

机构信息

Plant, Soil and Microbial Sciences Department, Michigan State University, East Lansing, Michigan, United States of America.

Canadian Foodgrains Bank, Arusha, Tanzania.

出版信息

PLoS One. 2020 Jan 27;15(1):e0227739. doi: 10.1371/journal.pone.0227739. eCollection 2020.

Abstract

Climate change is posing severe challenges in Africa, where resilient crops are urgently needed to withstand drought periods and unreliable rainfall. Multi-purpose legume species, such as lablab (Lablab purpureus (L.) Sweet), have been under-utilized yet have the potential to overcome climate challenges. While lablab is native to Africa, there are few characterized varieties and it is under-utilized by smallholder farmers due to a lack of information and access to varieties. Knowledge is especially lacking on the performance of this crop by genotype, management, and environment. We conducted a two-year field study at two sites to evaluate 29 lablab cultivars under sole and maize intercrop management, with 14 cultivars selected for in-depth study. Cultivars were evaluated on vegetative biomass and grain yield production, with N fixation assessed for one site year. Biomass and grain production differed across environments and cultivars, with only biomass affected by intercropping. Average grain yield was substantially reduced to only 37 kg ha-1 in environments with maximum temperatures greater than 33°C, but biomass production yielded comparable amounts across high temperatures and in dry (<500 mm rainfall) environments. Tradeoffs were found between biomass and grain yield across high yielding cultivars, with the top three grain accessions averaging 612 kg ha-1 of grain and 1.97 Mg ha-1 biomass whereas the top three biomass accessions produced 327 kg ha-1 grain and 2.52 Mg ha-1 biomass across all environments. In a comparison of production and N fixation measurements, cultivars were identified which may have high performance in both. Suitability of lablab for grain and biomass production were visualized across Tanzania in a map comparing max temperature thresholds for grain and biomass against average regional livestock populations. This provides a way forward for identifying potential areas for lablab cultivation as a novel means to enhance fodder and pulse production with smallholder farmers.

摘要

气候变化给非洲带来了严峻挑战,非洲急需能够抵御干旱期和不稳定降雨的抗逆作物。多功能豆科植物,如兵豆(Lablab purpureus (L.) Sweet),尚未得到充分利用,但具有克服气候挑战的潜力。尽管兵豆原产于非洲,但由于缺乏信息和品种资源,小农户对其利用不足。关于该作物的基因型、管理和环境对其性能的影响,人们知之甚少。我们在两个地点进行了为期两年的田间研究,评估了 29 个兵豆品种在单作和玉米间作管理下的表现,其中 14 个品种进行了深入研究。对品种的营养体生物量和籽粒产量进行了评估,对一个地点的一年进行了固氮评估。生物量和籽粒产量因环境和品种而异,间作仅影响生物量。在最高温度大于 33°C 的环境中,籽粒产量平均降低到仅 37 公斤/公顷,但在高温和干旱(<500 毫米降雨量)环境中,生物量产量相当。在高产品种中发现了生物量和籽粒产量之间的权衡,前三名籽粒品种的平均籽粒产量为 612 公斤/公顷,生物量为 1.97 吨/公顷,而前三名生物量品种在所有环境中的籽粒产量为 327 公斤/公顷,生物量为 2.52 吨/公顷。在对产量和固氮测量的比较中,确定了一些品种在这两方面都可能具有较高的表现。在一张将籽粒和生物量的最大温度阈值与平均区域牲畜数量进行比较的坦桑尼亚地图上,可视化了兵豆在籽粒和生物量生产方面的适宜性。这为识别兵豆种植的潜在地区提供了一种方法,作为提高小农户饲料和豆类产量的一种新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1de8/6984688/3a5e123f0f93/pone.0227739.g001.jpg

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