Dorado Christina, Bowman Kim D, Cameron Randall G, Manthey John A, Bai Jinhe, Ferguson Kyle L
U.S. Horticultural Research Laboratory, United States Department of Agriculture, Agricultural Research Service, Fort Pierce, FL 34945, USA.
Biology (Basel). 2021 Dec 7;10(12):1285. doi: 10.3390/biology10121285.
Florida citrus production has declined 75% due to Huanglongbing (HLB), a disease caused by the pathogenic bacterium Liberibacter asiaticus (CLas). Methods to combat CLas are costly and only partially effective. The cross-compatible species and some of its hybrids are known to be highly tolerant to CLas, and thus can potentially serve as an alternative feedstock for many citrus products. To further investigate the commercial potential of citrus hybrids, three citrus hybrids, US-802, US-897, and US-942, were studied for their potential as feedstocks for citrus co-products using steam explosion (STEX) followed by water extraction. Up to 93% of sugars were recovered. US-897 and US-942 have similar volatile profiles to that of the commercial citrus fruit types and as much as 85% of these volatiles could be recovered. Approximately 80% of the pectic hydrocolloids present in all three hybrids could be obtained in water washes of STEX material. Of the phenolics identified, the flavanone glycosides, i.e., naringin, neohesperidin, and poncirin were the most abundant quantitatively in these hybrids. The ability to extract a large percentage of these compounds, along with their inherent values, make US-802, US-897, and US-942 potentially viable feedstock sources for citrus co-products in the current HLB-blighted environment.
由于黄龙病(HLB),佛罗里达州的柑橘产量下降了75%,黄龙病是由致病性细菌亚洲韧皮杆菌(CLas)引起的一种疾病。对抗CLas的方法成本高昂且效果有限。已知一些与之交叉亲和的物种及其部分杂交种对CLas具有高度耐受性,因此有可能作为许多柑橘产品的替代原料。为了进一步研究柑橘杂交种的商业潜力,对三个柑橘杂交种US-802、US-897和US-942进行了研究,考察它们作为柑橘副产品原料的潜力,采用蒸汽爆破(STEX)然后水提取的方法。糖分回收率高达93%。US-897和US-942的挥发性成分与商业柑橘果实类型相似,其中高达85%的挥发性成分能够被回收。在STEX材料的水洗过程中,可以获得所有三个杂交种中约80%的果胶类水胶体。在所鉴定的酚类物质中,黄烷酮糖苷,即柚皮苷、新橙皮苷和枳属苷,在这些杂交种中含量最为丰富。能够提取这些化合物的很大一部分,以及它们本身的价值,使得US-802、US-897和US-942在当前受黄龙病影响的环境中成为柑橘副产品潜在可行的原料来源。